CA2432872C - Pyrazole compounds useful as protein kinase inhibitors - Google Patents

Pyrazole compounds useful as protein kinase inhibitors Download PDF

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CA2432872C
CA2432872C CA002432872A CA2432872A CA2432872C CA 2432872 C CA2432872 C CA 2432872C CA 002432872 A CA002432872 A CA 002432872A CA 2432872 A CA2432872 A CA 2432872A CA 2432872 C CA2432872 C CA 2432872C
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ring
optionally substituted
membered
aliphatic
pyrazol
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CA2432872A1 (en
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Julian Golec
Francoise Pierard
Jean-Damien Charrier
David Bebbington
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Vertex Pharmaceuticals Inc
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Vertex Pharmaceuticals Inc
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Abstract

This invention describes novel pyrazole compounds of formula (II ):wherein Z1 is nitrogen or CR8; Q is -S-, -O-, -N(R4)-, or -CH (R6)-; R1 is T-Ring D, wherein Ring D is a 5-7 membered monocyclic ring or 8-10 membered bicyclic ring selected from aryl, heteroaryl, heterocyclyl or carbocyclyl; and Ry, R2, and R2' are as described in the specification. The compounds are useful as protein kinase inhibitors, especially as inhibitors of Aurora-2 and GSK-3, for treating diseases such as cancer, diabetes and Alzeimer's disease.

Description

PYRAZOLE COMPOUNDS USEFUL AS PROTEIN KINASE INHIBITORS
FIELD OF THE INVENTION
The present invention is in the field of medicinal chemistry and relates to compounds that are protein kinase inhibitors, compositions containing such compounds and methods of use. More particularly, this invention relates to compounds that are inhibitors of Aurora-2 protein kinase. The invention also relates to methods of treating diseases associated with protein kinases, especially diseases associated with Aurora-2, such as cancer.

BACKGROUND OF THE INVENTION
The search for new therapeutic agents has been greatly aided in recent years by better understanding of the structure of enzymes and other biomolecules associated with target diseases. One important class' of enzymes that has been the subject of extensive study is the protein kinases.
Protein kinases mediate intracellular signal transduction. They do this by effecting a phosphoryl transfer from a nucleoside triphosphate to a protein acceptor that is involved in a signaling pathway. There are a number of kinases and pathways through which extracellular and other stimuli cause a variety of cellular responses to occur inside the cell. Examples of such stimuli include environmental and chemical stress signals (e.g. osmotic shock, heat shock, ultraviolet radiatidn, bacterial endotoxin, Hx02), cytokines (e.g.
interleukin-1 (IL-i) and tumor necrosis factor (c (TNF-06)), and growth factors (e.g. granulocyte macrophage-colony-stimulating factor (GM-CSF), and fibroblast growth factor (FGF). An extracellular stimulus may effect one or more cellular responses related to cell growth, migration, differentiation, secretion of hormones, activation of transcription factors, muscle contraction, glucose metabolism, control of protein synthesis and regulation of cell cycle.

Many diseases are associated with abnormal cellular responses triggered by protein kinase-mediated events. These diseases include auto.immune diseases, inflammatory diseases, neurological and neurodegenerative diseases, cancer, cardiovascular diseases, allergies and asthma, Alzheimer's disease or hormone-related diseases.
Accordingly, there has been a substantial effort in medicinal chemistry to find protein kinase inhibitors that are effective as therapeutic agents.

Aurora-2 is a serine/threonine protein kinase that has been implicated in human cancer, such as colon, breast and other solid tumors. This kinase is believed to be involved in protein phosphorylation events that regulate the cell cycle. Specifically, Aurora-2 may play a role in controlling the accurate segregation of chromosomes during mitosis. Misregulation of the cell cycle can lead to cellular proliferation and other abnormalities. In human colon cancer tissue, the aurora-2 protein has been found to be overexpressed. See Bischoff et al., EMBO J., 1998, 17, 3052-3065; Schumacher et al., J. Cell Biol., 1998, 143, 1635-1646; Kimura et al., J. Biol. Chem., 1997, 272, 13766-13771.

Glycogen synthase kinase-3 (GSK-3) is a serine/threonine protein kinase comprised of a and (3 isoforms that are each encoded by distinct genes [Coghlan et al., Chemistry & Biology, 7, 793-803 (2000); Kim and Kimmel, Curr. Opinion Genetics Dev., 10, 508-514 (2000)].
GSK-3 has been implicated in various diseases including diabetes, Alzheimer's disease, CNS disorders such as manic depressive disorder and neurodegenerative diseases, and cardiomyocete hypertrophy [WO 99/65897; WO 00/38675;
and Haq et al., J. Cell Biol. (2000) 151, 1171. These diseases may be caused by, or result in, the abnormal operation of certain cell signaling pathways in which GSK-3 plays a role. GSK-3 has been found to phosphorylate and modulate the activity of a number of regulatory proteins. These proteins include glycogen synthase which is the rate limiting enzyme necessary for glycogen synthesis, the microtubule associated protein Tau, the gene transcription factor (3-catenin, the translation initiation factor e1F2B, as well as ATP
citrate lyase, axin, heat shock factor-1, c-Jun, c-Myc, c-Myb, CREB, and CEPBa. These diverse protein targets implicate GSK-3 in many aspects of cellular metabolism, proliferation, differentiation and development.

In a GSK-3 mediated pathway that is relevant for the treatment of type II diabetes, insulin-induced signaling leads to cellular glucose uptake and glycogen synthesis. Along this pathway, GSK-3 is a negative regulator of the insulin-induced signal. Normally, the presence of insulin causes inhibition of GSK-3 mediated phosphorylation and deactivation of glycogen synthase.
The inhibition of GSK-3 leads to increased glycogen synthesis and glucose uptake [Klein et al., PNAS, 93, 8455-9 (1996); Cross et al., Bi.ochem. J., 303, 21-26 (1994); Cohen, Biochem. Soc. Trans., 21, 555-567 (1993);
Massillon et al., Biochem J. 299, 123-128 (1994)].
However, in a diabetic patient where the insulin response is impaired, glycogen synthesis and glucose uptake fail to increase despite the presence of relatively high blood levels of insulin. This leads to abnormally high blood levels of glucose with acute and long term effects that may ultimately result in cardiovascular disease, renal failure and blindness. In such patients, the normal insulin-induced inhibition of GSK-3 fails to occur. It has also been reported that in patients with type II
diabetes, GSK-3 is overexpressed [WO 00/38675].
Therapeutic inhibitors of GSK-3 are therefore potentially useful for treating diabetic patients suffering from an impaired response to insulin.
GSK-3 activity has also been associated with Alzheimer's disease. This disease is characterized by the well-known P-amyloid peptide and the formation of intracellular neurofibrillary tangles. The neurofibrillary tangles contain hyperphosphorylated Tau protein where Tau is phosphorylated on abnormal sites.
GSK-3 has been shown to phosphorylate these abnormal sites in cell and animal models. Furthermore, inhibition of GSK-3 has been shown to prevent hyperphosphorylation of Tau in cells [Lovestone et al., Current Biology 4, 1077-86 (1994); Brownlees et al., Neuroreport 8, 3251-55 (1997)]. Therefore, it is believed that GSK-3 activity may promote generation of the neurofibrillary tangles and the progression of Alzheimer's disease.
Another substrate of GSK-3 is (3-catenin which is degradated after phosphorylation by GSK-3. Reduced levels of 0-catenin have been reported in schizophrenic patients and have also been associated with other diseases related to increase in neuronal cell death [Zhong et al., Nature, 395, 698-702 (1998); Takashima et al., PNAS, 90, 7789-93 (1993); Pei et al., J.
Neuropathol. Exp, 56, 70-78 (1997)].

As a result of the biological importance of GSK-3, there is current interest in therapeutically effective GSK-3 inhbitors. Small molecules that inhibit GSK-3 have recently been reported [WO 99/65897 (Chiron) and WO 00/38675 (SmithKline Beecham)].

For many of the aforementioned diseases associated with abnormal GSK-3 activity, other protein kinases have also been targeted for treating the same diseases. However, the various protein kinases often act through different biological pathways. For example, certain quinazoline derivatives have been reported recently as inhibitors of p38 kinase (WO 00/12497 to Scios). The compounds are reported to be useful for treating conditions characterized by enhanced p38-a activity and/or enhanced TGF-0 activity. While p38 activity has been implicated in a wide variety of diseases, including diabetes, p38 kinase is not reported to be a constituent of an insulin signaling pathway that regulates glycogen synthesis or glucose uptake.
Therefore, unlike GSK-3, p38 inhibition would not be expected to enhance glycogen synthesis and/or glucose uptake.

There is a continued need to find new therapeutic agents to treat human diseases. The protein kinases Aurora-2- and GSK-3 are especially attractive targets for the discovery of new therapeutics due to their important roles in cancer and diabetes, respectively.

According to one aspect of the present invention, there is provided a compound of formula II:

2' R
NH
~ i N
HN

N N
R IZl" ' ~ Q
y -Rl H

or a pharmaceutically acceptable derivative or prodrug thereof, wherein: Z1 is nitrogen or CR8; Ry is Z-R3' or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms, or R}' and R8 are taken together to form a fused, optionally substituted 5-7 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur; Q is selected from -N(R4) -, -0-, -S-, or -CH(R6) -; R' is T-(Ring D); Ring D is a 5-7 membered monocyclic ring or 8-10 membered bicyclic ring selected from aryl, heteroaryl, heterocyclyl or carbocyclyl, said heteroaryl or heterocyclyl ring having 1-4 ring heteroatoms selected from nitrogen, oxygen or sulfur, wherein each substitutable ring carbon of Ring D is independently substituted by oxo, T-R5, or V-Z-RS, and each substitutable ring nitrogen of Ring D is -6a-independently substituted by -R4; T is a valence bond or a Cl_4 alkylidene chain, wherein when Q is -CH (R6) -, a methylene unit of said C1_4 alkylidene chain is optionally replaced by -0-, -S-, -N(R4)-, -CO-, -CONH-, -NHCO-, -SO2-, -SO2NH-, -NHSO2-, -C02-, -OC(0) -, -OC(O)NH-, or -NHCO2-; Z is a C1_4 alkylidene chain; L is -0-, -S-, -SO-, -SO2-, -N(R6)S02-, -S02N(R6) -, -N(R6) -, -CO-, -CO2-, -N(R6)CO-, -N(R6)C(O)O-, -N(R6)CON(R6) -, -N(R6) SOZN(R6) -, -N(R6)N(R6) -, -C(0)N(R6) -, -OC (O) N (R6) -, -C (R6) 20-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2S02-, -C (R6) ZSOzN (R6) -, -C (R6) 2N (R6) -, -C (R6) 2N (R6) C (O) -, -C (R6) 2N (R6) C (0) 0-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C (R6) 2N (R6) N (R6) -, -C (R6) 2N (R6) SO2N (R6) -, or -C (R6) 2N (R6) CON (R6) -; R2 and Rz' are independently selected from -R, -T-W-R6, or R2 and RZ' are taken together with their intervening atoms to form a fused, 5-8 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur, wherein each substitutable ring carbon of said fused ring formed by R 2 and R2' is independently substituted by halo, oxo, -CN, -NOZ, -R', or -V-R6, and each substitutable ring nitrogen of said ring formed by R 2 and R2' is independently substituted by R4; R3' is selected from -halo, -OR, -C(=O)R, -CO2R, -COCOR, -COCH2COR, -NOz, -CN, -S (O) R, -S (0) 2R, -SR, -N (R4) 2, -CON (R7 ) 2, -SO2N (R') 2, -OC (=0) R, -N (R') COR, -N (R') C02 (C1_6 aliphatic), -N (R4) N (R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R7) CON (R7 ) 2, -N (R') S02N (R') 2, -N (R4) S02R, -OC (=O) N(R') 2r or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms; each R is independently selected from hydrogen or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms; each R4 is independently selected from -R', ' -COR, -COz (optionally substituted C1_6 aliphatic) , -CON(R')2, -6b-or -S02R7 ; each R5 is independently selected from -R, halo, -OR, -C (=0) R, -C02R, -COCOR, -N02r -CN, -S (O) R, -S02R, -SR, -N ( R4 ) 2, -CON ( R9 ) 2, -S02N ( R4 ) 2, -OC ( =0 ) R, -N ( R4 ) COR, -N ( R4 ) C02 (optionally substituted C1_6 aliphatic) ,-N (R4) N(R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R4) CON (R4) 2, -N (R4) SO2N (R4) 2, -N (R4) S02R, or -OC (=0) N (R9) 2; V is -0-, -S-, -SO-, -SO2-, -N (R6) S02-, -SO2N (R6) -, -N (R6) -, -CO-, -C02-, -N (R6) CO-, -N (R6) C (0) 0-, -N (R6) CON (R6) -, -N (R6) S02N (R6) -, -N (R6) N (R6) -, -C (0) N (R6) -, -OC (0) N (R6) -, -C (R6) 20-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2S02-, -C (R6) 2SO2N (R6) - , -C (R6) 2N (R6) - , -C (R6) 2N (R6) C
(0) -, -C (R6) 2N (R6) C (O) 0-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C (R6) 2N (R6) N (R6) - ' -C (R6) 2N (R6) SOzN (R6) -, or -C (R6) 2N (R6) CON (R6) -; W is -C (R6) 20-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2SO2-, -C (R6) 2S02N (R6) -, -C (R6) 2N (R6) -, -CO-, -C02-, -C (R6) OC ( 0 ) - , -C (R6) OC (0) N (R6) -, -C (R6) 2N (R6) CO-, -C (R6) 2N (R6) C (0) 0-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C (R6) 2N (R6) N (R6) -, -C (R6) 2N (R6) SO2N (R6) -. -C (R6) 2N (R6) CON
(R6) -~
or -CON(R6)-; each R6 is independently selected from hydrogen or an optionally substituted C1_4 aliphatic group, or two R6 groups on the same nitrogen atom are taken together with the nitrogen atom to form a 5-6 membered heterocyclyl or heteroaryl ring; each R' is independently selected from hydrogen or an optionally substituted C1_6 aliphatic group, or two R' on the same nitrogen are taken together with the nitrogen to form a 5-8 membered heterocyclyl or heteroaryl ring; and R8 is selected from -R, halo, -OR, -C(=O)R, -C02R, -COCOR, -N02r -CN, -S (O) R, -SOzR, -SR, -N (R4) 2, -CON (R4) 2, -S02N (R4) zr -OC (=O) R, -N (R4) COR, -N (R4) C0Z (optionally substituted C1-6 aliphatic),-N (R4) N(R4) 2r -C=NN (R4) 2, -C=N-OR, -N (R4) CON (R4) 2r -N (R4) SOzN (R4) 2, -N (R4) S02R, or -OC (=0) N (R4) 2;
provided that when Q is -NH- and R$' and R8 are taken together, R1 is other than pyrazol-3-yl or a pyrazol-3-yl-containing bicyclic ring system, with the proviso the compound is not 4-(3,4-dimethoxyphenethoxy)-N--6c-(3-(furan-2-yl)-lH-pyrazol-5-yl)-6-morpholino-1,3,5-triazin-2-amine, 4-(3,4-dimethoxyphenethoxy)-N-(1-methyl-5-(thiophen-2-yl)-1H-pyrazol-3-yl)-6-morpholino-1,3,5-triazin-2-amine or N-(5-(1H-benzo[d]imidazol-2-yl)-1H-pyrazol-3-yl)-4-(3,4-dimethoxyphenethoxy)-6-morpholino-1,3,5-triazin-2-amine.

According to another aspect of the present invention, there is provided a compound selected from the group consisting of: 6-Benzyl-N-(1H-indazol-6-yl)-N'-(5-methyl-lH-pyrazol-3-yl)-[1,3,5]-triazine-2,4-diamine; 6-Methyl-N-(5-methyl-lH-pyrazol-3-yl)-N'-pyridine-3-ylmethyl-[1,3,5]-triazine-2,4-diamine; N-(4-{4-(5-Methyl-1H-pyrazol-3-ylamino)-6-[(pyridine-3-ylmethyl)-amino]-[1,3,5]-triazine-2-ylamino}-phenyl)-methanesulfonamide; N-{4-[4-(2-Methoxy-ethylamino)-6-(5-methyl-lH-pyrazol-3-ylamino)-[1,3,5]-triazine-2-ylsulfanyl]-phenyl}-acetamide; [4-(3-Dimethylamino-propoxy)-6-(thiophen-2-ylmethylsulfanyl)-[1, 3,5]-triazine-2-yl]-(5-methyl-lH-pyrazol-3-yl)-amine; [4-(Benzothiazol-6-ylsulfanyl)-6-phenylsulfanyl-[1,3,5]-triazine-2-yl]-(5-methyl-lH-pyrazol-3-yl)-amine; N-(5-Cyclopropyl-lH-pyrazol-3-yl) -N'- (1H-indazol-6-yl) -6- (1-methyl-piperidin-4-yloxy)-[1,3,5]-triazine-2,4-diamine; (4-{4-(5-Cyclopropyl-lH-pyrazol-3-ylamino)-6-[(pyridine-3-ylmethyl)-amino]-[1,3,5]-triazine-2-yloxy}-phenyl)-acetonitrile; (4-Benzyl-6-methyl-[1,3,5]-triazine-2-yl)-(5-cyclopropyl-lH-pyrazol-3-yl)-amine; N-(5-Cyclopropyl-lH-pyrazol-3-yl)-N'-(2-methoxyethyl)-6-(thiophen-2-ylmethylsulfanyl)-[1,3,5]-triazine-2,4-diamine; [4-(Benzothiazol-6-ylsulfanyl)-6-(3-dimethylamino-propoxy)-[1,3,5]-triazine-2-yl]-(5-cyclopropyl-lH-pyrazol-3-yl)-amine; N-{4-[4-(5-Cyclopropyl-lH-pyrazol-3-ylamino)-6-(1-methyl-piperidin-4-yloxy)-[1,3,5]-triazine-2-yl-sulfanyl]-phenyl}-acetamide; {4-[4-Benzyl-6-(1H-indazol-3-ylamino)--6d-[1,3,5]-triazine-2-yloxy]-phenyl}-acetonitrile; (4-Benzyloxy-6-methyl-[1,3,5]-triazine-2-yl)-(1H-indazol-3-yl)-amine; 6-Benzyl-N4- (1H-indazol-6-yl ) -N2- (5-methyl-lH-pyrazol-3-yl)-pyrimidine-2,4-diamine; 6-Methyl-N2-(5-methyl-lH-pyrazol-3-yl)-N4-pyridine-3-ylmethyl-pyrimidine-2,4-diamine;
N-(4-{2-(5-Methyl-lH-pyrazol-3-ylamino)-6-[(pyridin-3-ylmethyl)-amino]-pyrimidin-4-ylamino}-phenyl)-methanesulfonamide; N2-(5-Cyclopropyl-lH-pyrazol-3-yl)-N4-(2-methoxy-ethyl)-6-(thiophen-2-ylmethylsulfanyl)-pyrimidine-2,4-diamine; [4-(Benzothiazol-6-ylsulfanyl)-6-(3-dimethylamino-propoxy)-pyrimidin-2-yl]-(5-cyclopropyl-lH-pyrazol-3-yl)-amine; N-(4-{[2-(5-Cyclopropyl-ZH-pyrazol-3-ylamino)-6-(1-methyl-piperidin-4-yloxy)-pyrimidin-4-ylsulfanyl]-phenyl}-acetamide; N-{4-[2-(5-Methyl-1H-pyrazol-3-ylamino)-quinazolin-4-ylsulfanyl]-phenyl}-acetamide; [4-(Benzothiazol-6-ylsulfanyl)-quinazolin-2-yl-(5-methyl-lH-pyrazol-3-yl)-amine; {4-[2-(5-Cyclopropyl-lH-pyrazol-3-ylamino)-quinazolin-4-yloxy]-phenyl}-acetonitrile; (5-Cyclopropyl-lH-pyrazol-3-yl)-[4-(3-methoxy-benzyl)-quinazolin-2-yl] -amine; NZ- (1H-Indazol-6-yl) -N4-pyridin-3-ylmethyl-quinazoline-2,4-diamine; and (4-(Benzyloxy-quinazolin-2-yl-(1H-indazol-3-yl)-amine.

According to still another aspect of the present invention, there is provided a method of inhibiting Aurora-2 or glycogen synthase kinase-3 (GSK-3) activity in a biological sample comprising the step of contacting said biological sample with a compound as described herein.
According to yet another aspect of the present invention, there is provided a use for inhibiting Aurora-2 activity in a patient of the compound as described herein.

-6e-According to a further aspect of the present invention, there is provided a use for inhibiting Aurora-2 activity in a patient of the compound as described herein.

According to yet a further aspect of the present invention, there is provided a use of a therapeutically effective amount of the compound as described herein for treating an Aurora-2-mediated disease in a patient in need of such a treatment.

According to still a further aspect of the present invention, there is provided a use of inhibiting glycogen synthase kinase-3 (GSK-3) activity in a patient of the compound as described herein.

According to another aspect of the present invention, there is provided a use of a therapeutically effective amount of the compound as described herein for treating a glycogen synthase kinase-3 (GSK-3)-mediated disease in a patient in need of such a treatment.
According to yet another aspect of the present invention, there is provided a use of a therapeutically effective amount of the compound as described herein for enhancing glycogen synthesis or lowering blood levels of glucose in a patient in need thereof.

According to yet another aspect of the present invention, there is provided a use of a therapeutically effective amount of the compound as described herein for inhibiting the production of hyperphosphorylated Tau protein in a patient in need thereof.

According to yet another aspect of the present invention, there is provided a use of a therapeutically effective amount of the compound as described herein for -6f-inhibiting the phosphorylation of P-catenin in a patient in need thereof.

-6g-DESCRIPTION OF THE INVENTION
It has now been found that compounds of this invention and pharmaceutical compositions thereof are effective as protein kinase inhibitors, particularly as inhibitors of Aurora-2. These compounds have the general formula I:

H')!-'NH
Z3~Z2 II A~ Zi Q_Ry I
or a pharmaceutically acceptable derivative or prodrug thereof, wherein:
Z1 to Z4 are as described below;
Ring A is selected from the group consisting of:
N" N R" N N
N N N
RyN Ry N, a c d x N R
N
R$
, and e f Rx is T-R3 or L-Z-R3;

Ry is Z-R3' or an optionally substituted group selected from C,._6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms, or Rx and R8 are taken together to form a fused, optionally substituted 5-7 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur;

Q is selected from -N(R4) -, -0-, -S-, or -CH(R6) -;
R' is T- (Ring D) ;

Ring D is a 5-7 membered monocyclic ring or 8-10 membered bicyclic ring selected from aryl, heteroaryl, heterocyclyl or carbocyclyl, said heteroaryl or heterocyclyl ring having 1-4 ring heteroatoms selected from nitrogen, oxygen or sulfur, wherein each substitutable ring carbon of Ring D is independently substituted by oxo, T-R5, or V-Z-R5, and each substitutable ring nitrogen of Ring D is independently substituted by -R4;
T is a valence bond or a C,._4 alkylidene chain, wherein when Q is -CH (R6) -, a methylene unit of said C1_4 alkylidene chain is optionally replaced by -0-, -5-, -N(R4)-, -CO-, -CONH-, -NHCO-, -SOa-, -SO2NH-, -NHSO2-, -C02-, -OC(O)-, -OC(O)NH-, or -NHCO2-;
Z is a Cl_4 alkylidene chain;

L is -0-, -S-, -SO-, -SO2-, -N(R6) S02-, S02N(R6) -, -N(R6)-, -CO-, -C02-, -N(R6)CO-, -N(R6)C(O)O-, -N(R6)CON(R') -, -N(R6)SO2N(R6) -, -N(R6)N(R6) -, -C (O) N (R6) -, -OC (O) N (R6) -, -C (R6) 20-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2S02-, -C (R6) 2S02N (R6) -, -C (R6) 2N (R6) -, -C (R6) 2N (R6) C (0) -, -C (R6) 2N (R6) C (O) O-, -C (R6) =NN (R6) -, -C(R6)=N-O-, -C(R6)2N(R6)N(R6)-, -C(R6),N(R6)S02N(R6)-, or -C (R6) 2N (R6) CON (R6) -;
R2 and R2' are independently selected from -R, -T-W-R6, or R 2 and R2' are taken together with their intervening atoms to form a fused, 5-8 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur, wherein each substitutable ring carbon of said fused ring formed by R2 and R2' is independently substituted by halo, oxo, -CN, -NO2, -R', or -V-R6, and each substitutable ring nitrogen of said ring formed by R2 and R2' is independently substituted by R4;

R3 is selected from -R, -halo, -OR, -C (=0) R, -C02R, -COCOR, -COCH2COR, -NO2, -CN, -S (O) R, -S (O) 2R, -SR, -N (R4) z, -CON (R7 ) 2, -S02N (R7) z, -OC (=O) R, -N (R7) COR, -N(R7)C02(Cl_6 aliphatic) , -N(R4)N(R4)2, -C=NN(R4)2, -C=N-OR, -N (R') CON (R') 2, -N (R') S02N (R') 2, -N (R4) S02R, or -OC (=O) N (R7 ) 2 ;

R3 ' is selected from -halo, -OR, -C (=O) R, -CO2R, -COCOR, -COCH2COR, -NO2, -CN, -S (O) R, -S (O) 2R, -SR, -N (R4) 2, -CON (R7 ) 2, -S02N (R7) 2, -OC (=O) R, -N (R7) COR, -N (R7) C02 (Cl_6 aliphatic), -N (R4) N (R4) 2, -C=NN (R4) 2i -C=N-OR, -N (R7) CON (R7) 2, -N (R7) S02N (R7 ) 2, -N (R4) SO2R, -OC(=0)N(R7)2, or an optionally substituted group selected from Cl_6 aliphatic, C6_10 aryl, a heteroaryl-ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;
each R is independently selected from hydrogen or an optionally substituted group selected from C1_6 aliphatic, C6_3.o aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;
each R4 is independently selected from -R', -COR', -C02 (optionally substituted CI_6 aliphatic) ,-CON (R') 2, or -S02R7 ;

each R5 is independently selected from -R, halo, -OR, -C (=O) R, -CO2R, -COCOR, -NO2, -CN, -S (O) R, -SO2R, -SR, -N (R4) 2, -CON (R4) 2, -S02N (R4) 2, -OC (=O) R, -N (R4) COR, -N(R4) C02 (optionally substituted C1-6 aliphatic), -N(R4)N(R4)2i -C=NN(R4)2, -C=N-OR, -N(R4)CON(R4)2, -N(R4)SO2N(R4)2, -N(R4)SO2R, or -OC(=O)N(R4)2 ;

V is -0-, -S'-, -SO-, -SO2-, -N(R6)SOZ-, -S02N(R6)-, -N(R6) -, -CO-, -C02-, -N(R6) CO-, -N (R6) C (O) O-, -N(R6)CON(R6) -, -N(R6)SO2N(R6) -, -N(R6)N(R6) -, -C (O) N (R6) -, -OC (O) N (R6) -. -C (R6) 20-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2S02-, -C (R6) 2SO2N (R6) - , -C (R6) 2N (R6) -, -C (R6) 2N (R6) C (O) -, -C (R6) 2N (R6) C (O) O-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C (R6) 2N (R6) N (R6) -, -C (R6) 2N (R6) SO2N (R6) -, or -C (R6) 2N (R6) CON (Rg) - ;

W is -C (R6) 20-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2SO2-, -C(R6)2S02N(R6)-, -C(R6)2N(R6)-, -CO-, -C02-, -C (R6) OC (O) -, -C (R6) OC (O) N (R6) -, -C (R6) 2N (R6) CO-, -C (R6) 2N (R6) C (O) O-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C (R6) 2N (R6) N (R6) -. -C (R6) 2N (R6) S02N (R6) - ~
-C (R6) 2N (R6) CON (R6) -, or -CON (R6) -;

each R6 is independently selected from hydrogen or an optionally substituted C1_4 aliphatic group, or two Rb groups on the same nitrogen atom are taken together with the nitrogen atom to form a 5-6 membered heterocyclyl or heteroaryl ring;
each R' is independently selected from hydrogen or an optionally substituted C1_6 aliphatic group, or two R' on the same nitrogen are taken together with the nitrogen to form a 5-8 membered heterocyclyl or heteroaryl ring; and R8 is selected from -R, halo, -OR, -C (=O) R, -CO2R, -COCOR, -NO2, -CN, -S (O) R, -S02R, -SR, -N (R4) 2, -CON (R4) 2, -SO2N (R4) 2, -OC (=O) R, -N (R4) COR, -N (R4) C02 (optionally substituted C1_6 aliphatic),-N (R4) N(R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R4) CON (R4) 2, -N (R4) S02N (R4) 2i -N (R4) SO2R, or -OC(=O)N(R4)2.

As used herein, the following definitions shall apply unless otherwise indicated. The phrase "optionally substituted" is used interchangeably with the phrase "substituted or unsubstituted" or with the term "(un)substituted." Unless otherwise indicated, an optionally substituted group may have a substituent at each substitutable position of the group, and each substitution is independent of the other.

The term "aliphatic" as used herein means straight-chain, branched or cyclic C1,-C1,2 hydrocarbons which are completely saturated or which contain one or more units of unsaturation but which are not aromatic.
For example, suitable aliphatic groups include substituted or unsubstituted linear,, branched or cyclic alkyl, alkenyl, alkynyl groups and hybrids thereof such as (cycloalkyl)alkyl, (cycloalkenyl)alkyl or (cycloalkyl)alkenyl. The terms "alkyl", "alkoxy", "hydroxyalkyl", "alkoxyalkyl", and "alkoxycarbonyl", used alone or as part of a larger moiety includes both straight and branched chains containing one to twelve carbon atoms. The terms "alkenyl" and "alkynyl" used alone or as part of a larger moiety shall include both straight and branched chains containing two to twelve carbon atoms. The term "cycloalkyl" used alone or as part of a larger moiety shall include cyclic C3-C12 hydrocarbons which are completely saturated or which contain one or more units of unsaturation, but which are not aromatic.

The terms "haloalkyl", "haloalkenyl" and "haloalkoxy" means alkyl, alkenyl or alkoxy, as the case may be, substituted with one or more halogen atoms. The term "halogen" means F, Cl, Br, or I.

The term "heteroatom" means nitrogen, oxygen, or sulfur and includes any oxidized form of nitrogen and sulfur, and the quaternized form of any basic nitrogen.
Also the term "nitrogen" includes a substitutable nitrogen of a heterocyclic ring. As an example, in a saturated or partially unsaturated ring having 0-3 heteroatoms selected from oxygen, sulfur or nitrogen, the nitrogen may be N (as in 3,4-dihydro-2H-pyrrolyl), NH (as in pyrrolidinyl) or NR+ (as in N-substituted pyrrolidinyl.).

The terms "'carbocycleJ", "carbocyclyl'J, "carbocyclo", or "carbocyclic" as used herein means an aliphatic ring system having three to fourteen members.
The terms "carbocycle", "carbocyclyl", "carbocyclo", or "carbocyclic" whether saturated or partially unsaturated, also refers to rings that are optionally substituted.

The terms "carbocycle", "carbocyclyl", "carbocyclo", or "carbocyclic" also include aliphatic rings that are fused to one or more aromatic or nonaromatic rings, such as in a decahydronaphthyl or tetrahydronaphthyl, where the radical or point of attachment is on the aliphatic ring.
The term "aryl" used alone or as part of a larger moiety as in "aralkyl", "aralkoxy", or "aryloxyalkyl", refers to aromatic ring groups having five to fourteen members, such as phenyl, benzyl, phenethyl, 1-naphthyl, 2-naphthyl, 1-anthracyl and 2-anthracyl. The term "aryl" also refers to rings that are optionally substituted. The term "aryl" may be used interchangeably with the term "aryl ring". "Aryl" also includes fused polycyclic aromatic ring systems in which an aromatic ring is fused to one or more rings. Examples include 1-naphthyl, 2-naphthyl, 1-anthracyl and 2-anthracyl. Also included within the scope of the term "aryl", as it is used herein, is a group in which an aromatic ring is fused to one or more non-aromatic rings, such as in an indanyl, phenanthridinyl, or tetrahydronaphthyl, where the radical or point of attachment is on the aromatic ring.

The term "heterocycle", "heterocyclyl", or "heterocyclic" as used herein includes non-aromatic ring systems having five to fourteen members, preferably five to ten, in which one or more ring carbons, preferably one to four, are each replaced by a heteroatom such as N, 0, or S. Examples of heterocyclic rings include 3-1H-benzimidazol-2-one, (1-substituted)-2-oxo-benzimidazol-3-yl, 2-tetrahydrofuranyl, 3-tetrahydrofuranyl, 2-tetrahydropyranyl, 3-tetrahydropyranyl, 4-tetrahydropyranyl, [1,3]-dioxalanyl, [1,3]-di.thiolanyl, [1,3]-dioxanyl, 2-tetrahydrothiophenyl, 3-tetrahydrothiophenyl, 2-morpholinyl, 3-morpholinyl, 4-morpholinyl, 2-thiomorpholinyl, 3-thiomorpholinyl, 4-thiomorpholinyl,. 1-pyrrolidinyl, 2-pyrrolidinyl, 3-pyrrolidinyl, 1-piperazinyl, 2-piperazinyl, 1-piperidinyl, 2-piperidinyl, 3-piperidinyl, 4-piperidinyl, 4-thiazolidinyl, diazolonyl, N-substituted diazolonyl, 1-phthalimidinyl, benzoxanyl, benzopyrrolidinyl, benzopiperidinyl, benzoxolanyl, benzothiolanyl, and benzothianyl. Also included within the scope of the term "heterocyclyl" or "heterocyclic", as it is used herein, is a group in which a non-aromatic heteroatom-containing ring is fused to one or more aromatic or non-aromatic rings, such as in an indolinyl, chromanyl, phenanthridinyl, or tetrahydroquinolinyl, where the radical or point of attachment is on the non-aromatic heteroatom-containing ring. The term "heterocycle", "heterocyclyl", or "heterocyclic" whether saturated or partially unsaturated, also refers to rings that are optionally substituted.

The term "heteroaryl", used alone or as part of a larger moiety as in "heteroaralkyl" or "heteroarylalkoxy", refers to heteroaromatic ring groups having five to fourteen members. Examples of heteroaryl rings include 2-furanyl, 3-furanyl, N-imidazolyl, 2-imidazolyl, 4-imidazolyl, 5-imidazolyl, 3-isoxazolyl, 4-isoxazolyl, 5-isoxazolyl, 2-oxadiazolyl, 5-oxadiazolyl, 2-oxazolyl, 4-oxazolyl, 5-oxazolyl, 1-pyrrolyl, 2-pyrrolyl, 3-pyrrolyl, 2-pyridyl, 3-pyridyl, 4-pyridyl, 2-pyrimidyl, 4-pyrimidyl, 5-pyrimidyl, 3-pyridazinyl, 2-thiazolyl, 4-thiazolyl, 5-thiazolyl, 5-tetrazolyl, 2-triazolyl, 5-triazolyl, 2-thienyl, 3-thienyl, carbazolyl, benzimidazolyl, benzothienyl, benzofuranyl, indolyl, quinolinyl, benzotriazolyl, benzothiazolyl, benzooxazolyl, benzimidazolyl, isoquinolinyl, indazolyl, isoindolyl, acridinyl, or benzoisoxazolyl. Also included within the scope of the term "heteroaryl", as it is used herein, is a group in which a heteroatomic ring is fused to one or more aromatic or nonaromatic rings where the radical or point of attachment is on the heteroaromatic ring. Examples include tetrahydroquinolinyl, tetrahydroisoquinolinyl, and pyrido[3,4-d]pyrimidi.nyl.
The term "heteroaryl" also refers to rings that are optionally substituted. The term "heteroaryl" may be used interchangeably with the term "heteroaryl ring" or the term "heteroaromatic".
An aryl (including aralkyl, aralkoxy, aryloxyalkyl and the like) or heteroaryl (including heteroaralkyl and heteroarylalkoxy and the like) group may contain one or more substituents. Examples of suitable substituents on the unsaturated carbon atom of an aryl, heteroaryl, aralkyl, or heteroaralkyl group include a halogen, -R , -OR , -SR , 1,2-methylene-dioxy, 1,2-ethylenedioxy, protected OH (such as acyloxy), phenyl (Ph), substituted Ph, -O(Ph), substituted -O(Ph), -CH2(Ph), substituted -CH2(Ph), -CH2CH2(Ph), substituted -CH2CH2 (Ph) , -NOZ, -CN, -N (R ) 2, -NR C (O) R , -NR C (O) N (R ) 2, -NR C02R , -NR NR C (O) R , -NR NR C (O) N (R ) z, -NR NR C02R , -C (O) C (O) R , -C (O) CH2C (O) R , -C02R , -C (O) R , -C (O) N (R ) 2, -OC (O) N (R ) z, -S (O) 2R , -SOzN (R ) 2, -S (O) R , -NR S02N{R ) 2, -NR SO2R , -C (=S) N (R ) Z, -C (=NH) -N (R ) 2i - (CH2) YNHC (O) R , - (CH2) yNHC (0) CH (V-R ) (R ) ; wherein R is hydrogen, a substituted or unsubstituted aliphatic group, an unsubstituted heteroaryl or heterocyclic ring, phenyl (Ph), substituted Ph, -O(Ph), substituted -O(Ph), -CH2(Ph), or substituted -CH2 (Ph) ; y is 0-6; and V is a linker group. Examples of substituents on the aliphatic group or the phenyl ring of R include amino, alkylamino, dialkylamino, aminocarbonyl, halogen, alkyl, alkylaminocarbonyl, dialkylaminocarbonyl, alkylaminocarbonyloxy, dialkylaminocarbonyloxy, alkoxy, nitro, cyano, carboxy, alkoxycarbonyl, alkylcarbonyl, hydroxy, haloalkoxy, or haloalkyl.
An aliphatic group or a non-aromatic heterocyclic ring may contain one or more substituents.
Examples of suitable substituents on the saturated carbon of an aliphatic group or of a non-aromatic heterocyclic ring include those listed above for the unsaturated carbon of an aryl or heteroaryl group and the following:

=0, =S, =NNHR*, =NN (R*) 2, =N-, =NNHC (O) R*, =NNHCO2 (alkyl) , =NNHSO2(alkyl), or =NR*, where each R* is independently selected from hydrogen, an unsubstituted aliphatic group or a substituted aliphatic group. Examples of substituents on the aliphatic group include amino, alkylamino, dialkylamino, aminocarbonyl, halogen, alkyl, alkylaminocarbonyl, dialkylaminocarbonyl, alkylaminocarbonyloxy, dialkylaminocarbonyloxy, alkoxy, nitro, cyano, carboxy, alkoxycarbonyl, alkylcarbonyl, hydroxy, haloalkoxy, or haloalkyl.

Suitable substituents on the nitrogen of a non-aromatic heterocyclic ring include -R+, -N (R+) 2, -C (O) R+, -C02R+, -C (O) C (O) R+, -C (O) CH2C (O) R+, -S02R+, -S02N (R+) 2, -C (=S) N(R+) 2', -C (=NH) -N (R+) 2, and -NR+S02R+; wherein R+ is hydrogen, an aliphatic group, a substituted aliphatic group, phenyl (Ph), substituted Ph, -O(Ph), substituted -O(Ph), CH2(Ph), substituted CH2(Ph), or an unsubstituted heteroaryl or heterocyclic ring. Examples of substituents on the aliphatic group or the phenyl ring include amino, alkylamino, dialkylamino, aminocarbonyl, halogen, alkyl, alkylaminocarbonyl, dialkylaminocarbonyl, alkylaminocarbonyloxy, dialkylaminocarbonyloxy, alkoxy, nitro, cyano, carboxy, alkoxycarbonyl, alkylcarbonyl, hydroxy, haloalkoxy, or haloalkyl.

The term "linker group" or "linker" means an organic moiety that connects two parts of a compound.
Linkers are typically comprised of an atom such as oxygen or sulfur, a unit such as -NH-, -CH2-, -C(O)-, -C(O)NH-, or a chain of atoms, such as an alkylidene chain. The molecular mass of a linker is typically in the range of about 14 to 200, preferably in the range of 14 to 96 with a length of up to about six atoms. Examples of linkers include a saturated or unsaturated C,._6 alkylidene chain which is optionally substituted, and wherein one or two saturated carbons of the chain are optionally replaced by -C (O) -, -C (O) C (O) -, -CONH-, -CONHNH-, -C02-, -OC (O) -, -NHCO2-, -0-, -NHCONH-, -OC(O)NH-, -NHNH-, -NHCO-, -S-, -SO-, -SO2-, -NH-, -SO2NH-, or -NHS02-.

The term "alkylidene chain" refers to an optionally substituted, straight or branched carbon chain that may be fully saturated or have one or more units of unsaturation. The optional substituents are as described above for an aliphatic group.

A combination of substituents or variables is permissible only if such a combination results in a stable or chemically feasible compound. A stable compound or chemically feasible compound is one in which the chemical structure is not substantially altered when kept at a temperature of 40 C or less, in the absence of moisture or other chemically reactive conditions, for at least a week.

Unless otherwise stated, structures depicted herein are also meant to include all stereochemical forms of the structure; i.e., the R and S configurations for each asymmetric center. Therefore, single stereochemical isomers as well as enantiomeric and diastereomeric mixtures of the present compounds are within the scope of the invention. Unless otherwise stated, structures depicted herein are also meant to include compounds which differ only in the presence of one or more isotopically enriched atoms. For example, compounds having the present structures except for the replacement of a hydrogen by a deuterium or tritium, or the replacement of a carbon by a 13C- or '14C-enriched carbon are within the scope of this invention.

Compounds of formula I or salts thereof may be formulated into compositions. In a preferred embodiment, the composition is a pharmaceutical composition. In one embodiment, the composition comprises an amount of the protein kinase inhibitor effective to inhibit a protein kinase, particularly Aurora-2, in a biological sample or in a patient. In another embodiment, compounds of this invention and pharmaceutical compositions thereof, which comprise an amount of the protein kinase inhibitor effective to treat or prevent an Aurora-2-mediated condition and a pharmaceutically acceptable carrier, adjuvant, or vehicle, may be formulated for administration to a patient.

Another aspect of this invention relates to a method of treating or preventing an Aurora-2-mediated disease with an Aurora-2 inhibitor, which method comprises administering to a patient in need of such a treatment a therapeutically effective amount of a compound of formula I or a pharmaceutical composition thereof.

The term "Aurora-2-mediated condition" or "disease", as used herein, means any disease or other deleterious condition in which Aurora is known to play a role. The term "Aurora-2-mediated condition" or "disease" also means those diseases or conditions that are alleviated by treatment with an Aurora-2 inhibitor.

Such conditions include, without limitation, cancer. The term "cancer" includes, but is not limited to the following cancers: colon, breast, stomach, and ovarian.
Another aspect of the invention relates to inhibiting Aurora-2 activity in a biological sample, which method comprises contacting the biological sample with the Aurora-2 inhibitor of formula I, or a composition thereof.

Another aspect of this invention relates to a method of inhibiting Aurora-2 activity in a patient, which method comprises administering to the patient a compound of formula I or a composition comprising said compound.

Another aspect of this invention relates to a method of treating or preventing a GSK-3-medi.ated disease with a GSK-3 inhibitor, which method comprises administering to a patient in need of such a treatment a therapeutically effective amount of a compound of formula I or a pharmaceutical composition thereof.

The term "GSK-3-mediated condition" or "disease", as used herein, means any disease or other deleterious condition or state in which GSK-3 is known to play a role. Such diseases or conditions include, without limitation, diabetes, Alzheimer's disease, Huntington's Disease, Parkinson's Disease, AIDS-associated demeri.ti.a, amyotrophic lateral sclerosis (AML), multiple sclerosis (MS), schizophrenia, cardiomycete hypertrophy, reperfusion/ischemia, and baldness.
One aspect of this invention relates to a method of enhancing glycogen synthesis and/or lowering blood levels of glucose in a patient in need thereof, which method comprises administering to the patient a therapeutically effective amount of a compound of formula I or a pharmaceutical composition thereof. This method is especially useful for diabetic patients. Another method relates to inhibiting the production of hyperphosphorylated Tau protein, which is useful in halting or slowing the progression of Alzheimer's disease. Another method relates to inhibiting the phosphorylation of P-catenin, which is useful for treating schizophrenia.

Another aspect of the invention relates to inhibiting GSK-3 activity in a biological sample, which method comprises contacting the biological=sample with a GSK-3 inhibitor of formula I.

Another aspect of this invention relates to a method of inhibiting GSK-3 activity in a patient, which method comprises administering to the patient a compound of formula I or a composition comprising said compound.

The term "pharmaceutically acceptable carrier, adjuvant, or vehicle" refers to a non-toxic carrier, adjuvant, or vehicle that may be administered to a patient, together with a compound of this invention, and which does not destroy the pharmacological activity thereof.

The term "patient" includes human and veterinary subjects.

The term "biological sample", as used herein, includes, without limitation, cell cultures or extracts thereof; preparations of an enzyme suitable for in vitro assay; biopsied material obtained from a mammal or extracts thereof; and blood, saliva, urine, feces, semen, tears, or other body fluids or extracts thereof.
The amount effective to inhibit protein kinase, for example, Aurora-2 and GSK-3, is one that measurably inhibits the kinase activity where compared to the activity of the enzyme in the absence of an inhibitor.
Any method may be used to determine inhibition, such as, for example, the Biological Testing Examples described below.
Pharmaceutically acceptable carriers that may be used in these pharmaceutical compositions include, but are not limited to, ion exchangers, alumina, aluminum stearate, lecithin, serum proteins, such as human serum albumin, buffer substances such as phosphates, glycine, sorbic acid, potassium sorbate, partial glyceride mixtures of saturated vegetable fatty acids, water, salts or electrolytes, such as protamine sulfate, disodium hydrogen phosphate, potassium hydrogen phosphate, sodium chloride, zinc salts, colloidal silica, magnesium trisilicate, polyvinyl pyrrolidone, cellulose-based substances, polyethylene glycol, sodium carboxymethylcellulose, polyacrylates, waxes, polyethylene-polyoxypropylene-block polymers, polyethylene glycol and wool fat.

The compositions of the present invention may be administered orally, parenterally, by inhalation spray, topically, rectally, nasally, buccally, vaginally or via an implanted reservoir. The term "parenteral" as used herein includes subcutaneous, intravenous, intramuscular, intra-articular, intra-synovial, intrasternal, intrathecal, intrahepatic, intralesional and intracranial injection or infusion techniques.
Preferably, the compositions are administered orally, intraperitoneally or intravenously.
Sterile injectable forms of the compositions of this invention may be aqueous or oleaginous suspension.
These suspensions may be formulated according to techniques known in the art using suitable dispersing or wetting agents and suspending agents. The sterile injectable preparation may also be a sterile injectable solution or suspension in a non-toyic parenterally-acceptable diluent or solvent, for example as a solution in 1,3-butanediol. Among the acceptable vehicles and solvents that may be employed are water, Ringer's solution and isotonic sodium chloride solution. in addition, sterile, fixed oils are conventionally employed as a solvent or suspending medium. For this purpose, any bland fixed oil may be employed including synthetic mono-or di-glycerides. Fatty acids, such as oleic acid and its glyceride derivatives are useful in the preparation of injectables, as are natural pharmaceutically-acceptable oils, such as olive oil or castor oil, especially in their polyoxyethylated versions_ These oil solutions or suspensions may also contain a long-chain alcohol diluent or dispersant, such as carboxymethyl cellulose or similar dispersing agents which are commonly used in the formulation of pharmaceutically acceptable dosage forms including emulsions and suspensions. Other commonly used surf actants, such as Tweens'; Spans* and other emulsifying agents or bioavailability enhancers which are commonly used in the manufacture of pharmaceutically acceptable solid, liquid, or other dosage forms may also be used for the purposes of formulation.
The pharmaceutical compositions of this invention may be orally administered in any orally acceptable dosage form including, but not limited to, capsules, tablets, aqueous suspensions or solutions. In the case of tablets for oral use, carriers commonly used include lactose and corn starch. Lubricating agents, such as magnesium stearate, are also typically added.
For oral administration in a capsule form, useful diluents include lactose and dried cornstarch. When *Trade-mark aqueous suspensions are required for oral use, the active ingredient is combined with emulsifying and suspending agents. If desired, certain sweetening, flavoring or coloring agents may also be added.
Alternatively, the pharmaceutical compositions of this invention may be administered in the form of suppositories for rectal administration. These can be prepared by mixing the agent with a suitable non-irritating excipient which is solid at room temperature but liquid at rectal temperature and therefore will melt in the rectum to release the drug. Such materials include cocoa butter, beeswax and polyethylene glycols.

The pharmaceutical compositions of this invention may also be administered topically, especially when the target of treatment includes areas or organs readily accessible by topical application, including diseases of the eye, the skin, or the lower intestinal tract. Suitable topical formulations are readily prepared for each of these areas or organs.
Topical application for the lower intestinal tract can be effected in a rectal suppository formulation (see above) or in a suitable enema formulation.
Topically-transdermal patches may also be used.

For topical applications, the pharmaceutical compositions may be formulated in a suitable ointment containing the active component suspended or dissolved in one or more carriers. Carriers for topical administration of the compounds of this invention include, but are not limited to, mineral oil, liquid petrolatum, white petrolatum, propylene glycol, polyoxyethylene, polyoxypropylene compound, emulsifying wax and water. Alternatively, the pharmaceutical compositions can be formulated in a suitable lotion or cream containing the active components suspended or dissolved in one or more pharmaceutically acceptable carriers. Suitable carriers include, but are not limited to, mineral oil, sorbitan monostearate, polysorbate 60, cetyl esters wax, cetearyl alcohol, 2roctyldodecanol, benzyl alcohol and water.

For ophthalmic use, the pharmaceutical compositions may be formulated as micronized suspensions in isotonic, pH adjusted sterile saline, or, preferably, as solutions in isotonic, pH adjusted sterile saline, either with or without a preservative such as benzylalkonium chloride. Alternatively, for ophthalmic uses, the pharmaceutical compositions may be formulated in an ointment such as petrolatum.

The pharmaceutical compositions of this invention may also be administered by nasal aerosol or inhalation. Such compositions are prepared according to techniques well-known in the art of pharmaceutical formulation and may be prepared as solutions in saline, employing benzyl alcohol or other suitable preservatives, absorption promoters to enhance bioavailability, fluorocarbons, and/or other conventional solubilizing or dispersing agents.

In addition to the compounds of this invention, pharmaceutically acceptable derivatives or prodrugs of the compounds of this invention may also be employed in compositions to treat or prevent the above-identified diseases or disorders.

A "pharmaceutically acceptable derivative or prodrug" means any pharmaceutically acceptable salt, ester, salt of an ester or other derivative of a compound of this invention which, upon administration to a recipient, is capable of providing, either directly or indirectly, a compound of this invention or an inhibitorily active metabolite or residue thereof.
Particularly favored derivatives or prodrugs are those that increase the bioavailability of the compounds of this invention when such compounds are administered to a patient (e.g., by allowing an orally administered compound to be more readily absorbed into the blood) or which enhance delivery of the parent compound to a biological compartment (e.g., the brain or lymphatic system) relative to the parent species.
Pharmaceutically acceptable prodrugs of the compounds of this invention include, without limitation, esters, amino acid esters, phosphate esters, metal salts and sulfonate esters.

Pharmaceutically acceptable salts of the compounds of this invention include those derived from pharmaceutically acceptable inorganic and organic acids and bases. Examples of suitable acid salts include acetate, adipate, alginate, aspartate, benzoate, benzenesulfonate, bisulfate, butyrate, citrate, camphorate, camphorsulfonate, cyclopentanepropionate, digluconate, dodecylsulfate, ethanesulfonate, formate, fumarate, glucoheptanoate, glycerophosphate, glycolate, hemisulfate, heptanoate, hexanoate, hydrochloride, hydrobromide, hydroiodide, 2-hydroxyethanesulfonate, lactate, maleate, malonate', methanesulfonate, 2-naphthalenesulfonate, nicotinate, nitrate, oxalate, palmoate, pectinate, persulfate, 3-phenylpropionate, phosphate, picrate, pivalate, propionate, salicylate, succinate, sulfate, tartrate, thiocyanate, tosylate and undecanoate. Other acids, such as oxalic, while not in themselves pharmaceutically acceptable, may be employed in the preparation of salts useful as intermediates in obtaining the compounds of the invention and their pharmaceutically acceptable acid addition salts.

Salts derived from appropriate bases include alkali metal (e.g., sodium and potassium), alkaline earth metal (e.g., magnesium); ammonium and N+(C1_4 alkyl)4 salts. This invention also envisions the quaternization of any basic nitrogen-containing groups of the compounds disclosed herein. Water or oil-soluble or dispersible products may be obtained by such quaternization.

The amount of the protein kinase inhibitor that may be combined with the carrier materials to produce a single dosage form will vary depending upon the patient treated and the particular mode of administration.

Preferably, the compositions should be formulated so that a dosage of between 0.01 - 100 mg/kg body weight/day of the inhibitor can be administered to a patient receiving these compositions.

It should also be understood that a specific dosage and treatment regimen for any particular patient will depend upon a variety of factors, including the activity of the specific compound employed, the age, body weight, general health, sex, diet, time of administration, rate of excretion, drug combination, and the judgment of the treating physician and the severity of the particular disease being treated. The amount of the inhibitor will also depend upon the particular compound in the composition.
Depending upon the particular protein kinase-mediated condition to be treated or prevented, additional therapeutic agents, which are normally administered to treat or prevent that condition, may be administered together with the inhibitors of this invention. For example, in the treatment of cancer other chemotherapeutic agents or other anti-proliferative agents may be combined with the Aurora-2 inhibitors of this invention to treat cancer. These agents include, without limitation, adriamycin, dexamethasone, vincristine, cyclophosphamide, fluorouracil, topotecan, taxol, interferons, and platinum derivatives.

Other examples of agents the inhibitors of this invention may also be combined with include, without limitation,, agents for treating diabetes such as insulin or insulin analogues, in injectable or inhalation form, glitazones, alpha glucosidase inhibitors, biguanides, insulin sensitizers, and sulfonyl ureas; anti-inflammatory agents such as corticosteroids, TNF
blockers, IL-1 RA, azathioprine, cyclophosphamide, and sulfasalazine; immunomodulatory and immunosuppressive agents such as cyclosporin, tacrolimus, rapamycin, mycophenolate mofetil, interferons, corticosteroids, cyclophophamide, azathioprine, and sulfasalazine;
neurotrophic factors such as acetylcholinesterase inhibitors, MAO inhibitors, interferons, anti-convulsants, ion channel blockers, riluzole, and anti-Parkinsonian agents; agents for treating cardiovascular disease such as beta-blockers, ACE inhibitors, diuretics, nitrates, calcium channel blockers, and statins; agents for treating liver disease such as corticosteroids, cholestyramine, interferons, and anti-viral agents;
agents for treating blood disorders such as corticosteroids, anti-leukemic agents, and growth factors; and agents for treating immunodeficiency disorders such as gamma globulin.
Those additional agents may be administered separately from the protein kinase inhibitor-containing composition, as part of a multiple dosage regimen.
Alternatively, those agents may be part of a single dosage form, mixed together with the protein kinase inhibitor of this invention in a single composition.

Compounds of this invention may exist in alternative tautomeric forms, as in tautomers i and ii shown below. Unless otherwise indicated, the representation of either tautomer is meant to include the other.

I N NH
HN H HN N
z 3' \ Z 2 z 3' \ Z2 II A II A
z ~ 1%\ 1 Z~ 1%\ 1 Z Q-R Z Q-R
i ii Preferred R" groups, when present, include hydrogen, alkyl- or dialkylamino, acetamido, or a C1_4 aliphatic group such as methyl, ethyl, cyclopropyl, or isopropyl.

Preferred Ry groups, when present, include Z-R3' or an optionally substituted group selected from Cl_6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl, wherein Z is a methylene and R3' is -N(R4)2, -OR, or an.optionally substituted group selected from C1-6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms. Preferred Ry groups include 5-6 membered heteroaryl or heterocyclyl rings, such as 2-pyridyl, 4-pyridyl, pyrrolidinyl, piperidinyl, morpholinyl, or piperazinyl; C1_6 aliphatic, such as methyl, ethyl, cyclopropyl, isopropyl, or t-butyl; alkoxyalkylamino such as methoxyethylamino;, alkoxyalkyl such as methoxymethyl or methoxyethyl; alkyl- or dialkylamino such as ethylamino or dimethylamino; alkyl- or dialkylaminoalkoxy such as dimethylaminopropyloxy; acetamido; and optionally S substituted phenyl such as phenyl or halo-substituted phenyl.

R2 and R2' may be taken together to form a fused ring, thus providing a bicyclic ring system containing a pyrazole ring. Preferred fused rings include benzo, pyrido, pyrimido, and a partially unsaturated 6-membered carbocyclo ring, wherein said fused ring is optionally substituted. These are exemplified in the following formula I compounds having a pyrazole-containing bicyclic ring system:

HN ~N N \ NN

Z3-~Z2 NH NH NH NH
Z4 1. 1 ~ N _N N
Z Q-R and Preferred substituents on the R2/R2' fused ring include one or more of the following: -halo, -N (R4) 2, -Cl_3 alkyl, -Cl_3 haloalkyl, -NO2, -0 (Cl_3 alkyl) , -CO2 (C1_3 alkyl) , -CN, -SO2 (C1_3 alkyl) , -SO2NH2, -OC(O)NH2, -NH2SO2 (C1_3 alkyl) , -NHC (O) (C1-3 alkyl) , -C (O) NH2, and -CO(Cl_3 alkyl) , wherein the (C1_3 alkyl) is most preferably methyl.
When the pyrazole ring system is monocyclic, preferred R2 groups include hydrogen, C1_4 aliphatic, alkoxycarbonyl, (un)substituted phenyl, hydroxyalkyl, alkoxyalkyl, aminocarbonyl, mono- or dialkylaminocarbonyl, aminoalkyl, alkylaminoalkyl, dialkylaminoalkyl, phenylaminocarbonyl, and (N-heterocyclyl)carbonyl. Examples of such preferred R2 substituents include methyl, cyclopropyl, ethyl, isopropyl, propyl, t-butyl, cyclopentyl, phenyl, CO2H, CO2CH3i CH2OH, CH2OCH3, CHZCH2CH2OH, CH2CHZCH2OCH3, CH2CH2CH2OCH2Ph, CH2CH2CH2NH2, CH2CH2CH2NHCOOC (CH3) 3, CONHCH ( CH3 ) 2, CONHCH2CH=CH2, CONHCH2CH2OCH3 , CONHCH2Ph, CONH ( cyc l ohexyl ), CON ( Et ) 2, CON ( CH3 ) CH2Ph, CONH ( n- C3H7), CON(Et)CH2CH2CH3i CONHCH2CH(CH3)2, CON(n-C3H7)2, CO(3-methoxymethylpyrrolidin-1-yl), CONH(3-tolyl), CONH(4-tolyl), CONHCH3, CO(morpholin-l-yl), CO(4-methylpiperazin-1-yl), CONHCH2CH2OH, CONH2, and CO(piperidin-l-yl). A
preferred R2' group is hydrogen.
Preferred Q groups of formula I include -S-, -NH-, and -CH2-. More preferred Q groups of formula I
include -S- and -NH-.

Another embodiment of this invention relates to compounds of formula II:

R2' NH
iN
HN' N"~N
JI Z1 ' Ry Q-Ri II
or a pharmaceutically acceptable derivative or prodrug thereof, wherein:

Z1 is nitrogen or CRB;
Ry is Z-R31 or an optionally substituted group selected from Cl_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms, or RY and R8 are taken together to form a fused, optionally substituted 5-7 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur;

Q is selected from -N(R4) -, -0-, -S-, or, -CH(R6) -;
R' is T- (Ring D) ;

Ring D is a 5-7 membered monocyclic ring or 8-10 membered bicyclic ring selected from aryl, heteroaryl, heterocyclyl or carbocyclyl, said heteroaryl or heterocyclyl ring having 1-4 ring heteroatoms selected from nitrogen, oxygen or sulfur, wherein each substitutable ring carbon of Ring D is independently substituted by oxo, T-R5, or V-Z-R5, and each substitutable ring nitrogen of Ring D is independently substituted by -R4;

T is a valence bond or a C1_4 alkylidene chain, wherein when Q is -CH (R6) -, a methylene unit of said C1_4 alkylidene chain is optionally replaced by -0-, -S-, -N(R4) -, -CO-, -CONH-, -NHCO-, -SO2-, -SO2NH-, -NHSOZ-, -C02-, -OC (O) -, -OC(O)NH-, or -NHCO2-;
Z is a C1_4 alkyli.dene chain;

L is -0-, -S-, -SO-, -SO2-, -N(R6)SO2-, -SO2N(R6)-, -N(R6)-, -CO-, -C02-, -N(R6)CO-, -N(R6)C(0)O-, -N(R6)CON(R6) -, -N(R6)SO2N(R6) -, -N (R6) N (R6) -, -C (O) N (R6) -, -OC (O) N (R6) -, -C (R6) 20- , -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2SO2-, -C (R6) 2S02N (R6) -, -C (R6) 2N (R6) -, -C (R6) 2N (R6) C (O) -, -C (R6) 2N (R6) C (0) 0-, -C (R6) =NN (R6) -, -C (Rg) =N-O-, -C (R6) 2N (R6) N (R') -, -C (R6) 2N (R') SO2N (R6) -, or -C(R6)2N(R6)CON(R6)-;
R2 and R2' are independently selected from -R, -T-W-R6, or R2 and R2' are taken together with their intervening atoms to form a fused, 5-8 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur, wherein each substitutable ring carbon of said fused ring formed by R2 and R 2 ' is independently substituted by halo, oxo, -CN, -NO2, -R7, or -V-R6, and each substitutable ring nitrogen of said ring formed by R2 and R2' is independently substituted by R4;
R31 is selected from -halo, -OR, -C(=O)R, -CO2R, -COCOR, -COCH2COR, -NO2, -CN, -S (O) R, -S (O) 2R, -SR, -N (R4) 2, -CON (R7 ) 2, -SO2N (R7 ) 2, -OC (=O) R, -N (R7) COR, -N (R7) CO2 (C1_6 aliphatic), -N (R4) N (R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R') CON (R') 2, -N (R7) SO2N (R7 ) 2, -N (R4) SO2R, -OC(=O)N(R7 )2, or an optionally substituted group selected from Cl_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;

each R is independently selected from hydrogen or an optionally substituted group selected from C1_6 aliphatic, C6_lo aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;
each R4 is independently selected from -R7, -COR', -CO2 (optionally substituted C1_6 aliphatic) , -CON (R') 2, or - SOZR' ;

each R5 is independently selected from -R, halo, -OR, -C (=O) R, -CO2R, -COCOR, -NO2, -CN, -S (O) R, -SO2R, -SR, -N (R4) 2, -CON (R4) 2, -SO2N (R4) 2, -OC (=O) R, -N (R4) COR, -N (R4) CO2 (optionally substituted C1_6 aliphatic) , -N (R4) N (R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R4) CON (R4) 2, -N(R4)S02N(R4)2, -N(R4)SO2R, or -OC(=O)N(R4)2;
V is -0-, -S-, -SO-, -SO2-, -N(R6)S02-, -SO2N(R6)-, -N(R6)-, -CO-, -COz-, -N(R6)CO-, -N(R6)C(O)O-, -N(R6)CON(R6) -, -N(R6)SO2N(R6) -, -N(R6)N(R6) -, -C (O) N (R6) -, -OC (O) N (R6) -, -C (R6) a0-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2SO2-, -C (R6) 2SO2N (R6) -, -C (R6) 2N (R6) -, -C (R6) 2N (R6) C (O) -, -C (R6) 2N (R6) C (O) O-, -C (R6) =NN (R6) -, -C(R6)=N-O-, -C(R6)2N(R6)N(R6)-, -C(R6)2N(R6)SO2N(R6)-, or -C (R6) zN (R6) CON (R6) -;

W iS -C (R6) 2O-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2SO2-, -C (R6) 2SO2N (R6) -, -C (R6) 2N (R(5) -, -CO-, -C02-, -C (R6) OC (O) -, -C (R6) OC (O) N (R6) -, -C (R6) 2N (R6) CO-, -C (R6) 2N (R6) C (O) O-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C (R6) 2N (R6) N (R6) -, -C (R6) 2N (R6) SO2N (R6) -, -C(R6)2N(R6)CON(R6)-, or -CON(R6)-;

each R6 is independently selected from hydrogen or an optionally substituted Cl_4 aliphatic group, or two R6 groups on the same nitrogen atom are taken together with the nitrogen atom to form a 5-6 membered heterocyclyl or heteroaryl ring;
each R' is independently selected from hydrogen or an optionally substituted C1_6 aliphatic group, or two R' on the same nitrogen are taken together with the nitrogen to form a 5-8 membered heterocyclyl or heteroaryl ring; and R 8 is selected from -R, halo, -OR, -C(=O)R, -CO2R, -COCOR, -NO2, -CN, -S (O) R, -SO2R, -SR, -N (R4) 2, -CON (R4) 2, -SO2N (R~) 2i -OC (=O) R, -N (R4) COR, -N (R4) C02 (optionally substituted C1_6 aliphatic),-N (R4) N(R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R4) CON (R4) 2, -N (R4) SO2N (R4) 2, -N (R4) SO2R, or -OC(=O)N(R4)2i provided that when Q is -NH- and Ry and Ra are taken together to form a fused ring, R' is other than a pyrazol-3-yl ring or a pyrazol-3-yl-containing bicyclic ring system.

Another embodiment of this invention relates to compounds of formula IIa:
R2, NH
H N N'k'N
I
Rylj~ N Q-R1 IIa or a pharmaceutically acceptable derivative or prodrug thereof, wherein:

Ry is Z-R3' or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;

Q is selected from -N(R4) -, -0-, -S-, or -CH(R6) -;
R1 is T- (Ring D) ;

Ring D is a 5-7 membered monocyclic ring or 8-10 membered bicyclic ring selected from aryl, heteroaryl, heterocyclyl or carbocyclyl, said heteroaryl or heterocyclyl ring having 1-4 ring heteroatoms selected from nitrogen, oxygen or sulfur, wherein each substitutable ring carbon of Ring D is independently substituted by oxo, T-R5, or V-Z-R5, and each substitutable ring nitrogen of Ring D is independently substituted by -R4;

T is a valence bond or a C1_4 alkylidene chain, wherein when Q is -CH (R6) -, a methylene unit of said C1_4 alkylidene chain is optionally replaced by -0-, -5-, -N(R4) -, -CO-, -CONH-, -NHCO-, -S02-, -SOZNH-, -NHSO2-, -C02-, -OC(O)-, -OC(O)NH-, or -NHCOZ-;

z is a Cl_4 alkylidene chain;

L is -0-, -S-, -SO-, -SO2-, -N(R6) S02-, -S02N(R6) -, -N(R6)-, -CO-, -C02-, -N(R6)CO-, -N(R6)C(O)O-, -N (R6) CON (R6) -, -N(R6)S02N(R6) -, -N(R6)N(R6) -, -C (O)N (R6) -, -OC (O) N (R6) -, -C (R6) 20-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2SO2-, -C (R6) 2SO2N (R6) -, -C (R6) zN (R6) -, -C (R6) 2N (R6) C (0) -, -C (R6) 2N (R6) C (0) 0-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C (R6) 2N (R6)N (R6) -, -C (R6) 2N (R6) SOzN (R6) -, or -C (R6) 2N (R6) CON (R6) - ;
R2 and R2' are independently selected from -R, -T-W-R6, or R2 and RZ' are taken together with their intervening atoms to form a fused, 5-8 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur, wherein each substitutable ring carbon of said fused ring formed by R2 and R2' is independently substituted by halo, oxo, -CN, -NOZ, -R7, or -V-Rg, and each substitutable ring nitrogen of said ring formed by R2 and R2' is independently substituted by R4;

R3 ' is selected from -halo, -OR, -C (=O) R, -C02R, -COCOR, -COCH2COR, -NO2, -CN, -S (O) R, -S (O) 2R, -SR, -N (R4) 2, -CON (R") 2, -S02N (R7) Z, -OC (=O) R, -N (R') COR, -N (R") C02 (Cl_6' aliphatic), -N (R4) N (R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R7) CON (R7 )2, -N (R7) SO2N (R7) 2, -N (R4) S02R, -OC(=O)N(R')2i or an optionally substituted group selected from C1_6 aliphatic, C6_lo aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;

each R is independently selected from hydrogen or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;
each R4 is independently selected from -R', -COR', -COZ (optionally substituted C1_6 aliphatic) , -CON (R') 2, or - S02R ;
each R5 is independently selected from -R, halo, -OR, -C (=O) R, -C02R, -COCOR, -NO2, -CN, -S (O) R, -SO2R, -SR, -N (R4) 2, -CON (R4) 2, -S02N (R4) 2, -OC (=O) R, -N (R4) COR, -N (R4) C02 (optionally substituted C1_6 aliphatic), -N (R4) N (R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R4) CON (R4) 2, -N (R4) SO2N (R4) 2, -N (R4) S02R, or -OC (=O) N (R4) 2;
V is -0-, -S-, -SO-, -SO2-, -N (R6) S02-, -S02N(R6) -, -N (R6) -, -CO-, -CO2-, -N (R6) CO-, -N (R6) C (O) 0-, -N(R6)CON(Rg) -, -N(R6)SO2N(R6) -, -N(R6)N(R6) -, -C (O) N (R6) -, -OC (O) N (R6) -, -C (R6) 20-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2SO2-, -C (R6) 2SO2N (R6) -, -C (R6) 2N (R6) -, -C (R6) 2N (R6) C (0) -, -C (R6) 2N (R6) C (0) 0-, -C (R6) =NN (R6) -, -C(R6)=N-O-, -C(R6)2N(R6)N(R6)-, -C(R6)2N(R6)S02N(R6)-, or -C (R6) 2N (R6) CON (R6) - ;

W is -C (R6) 20-, -C (R6) 2S-, -C (R6) 2SO-, -C (R6) 2S02-, -C (R6) 2SO2N (R6) -. -C (R6) 2N (R6) -, - -CO-, -CO2-, -C(R6)OC(0) -, -C(R6)OC(O)N(R6) -, -C(R6)2N(R6)CO-, -C (R6) 2N (R6) C (0) O-, -C (R6) =NN (R6) -, -C (R.6) =N-O-, -C (R6) 2N (R6) N (R6) -, -C (R6) 2N (R6) SO2N (R6) -, -C (R6) 2N (R6) CON (R6) -, or -CON (R6) -;

each R6 is independently selected from hydrogen or an optionally substituted C1_4 aliphatic group, or two R6 groups on the same nitrogen atom are taken together with the nitrogen atom to form a 5-6 membered heterocyclyl or heteroaryl ring; and each R' i.s independently selected from hydrogen or an optionally substituted C1-6 aliphatic group, or two R' on the same nitrogen are taken together with the nitrogen to form a 5-8 membered heterocyclyl or heteroaryl ring.
Preferred Ry groups of formula IIa include Z-R3' or an optionally substituted group selected from Cl-6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl, wherein Z is a methylene and R3' is -N(R4)2, -OR, or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms.

Examples of preferred Ry groups include 2-pyridyl, 4-pyridyl, pyrrolidinyl, piperidinyl, morpholinyl, piperazinyl, methyl, ethyl, cyclopropyl, isopropyl, t-butyl, alkoxyalkylamino such as methoxyethylamino, alkoxyalkyl such as methoxymethyl or methoxyethyl, alkyl- or dialkylamino such as ethylamino or dimethylamino, alkyl- or dialkylaminoalkoxy such as dimethylaminopropyloxy, acetamido, optionally substituted phenyl such as phenyl or halo-substituted phenyl.
The R2 and R2 ' groups of formula IIa may be taken together to form a fused ring, thus providing a bicyclic ring system containing a pyrazole ring.
Preferred fused rings include benzo, pyrido, pyrimido, and a partially unsaturated 6-membered carbocyclo ring.
These are exemplified in the following formula TIa compounds having a pyrazole-containing bicyclic ring system:

i NH N N NN
HN N I
i i rN N~ N NH NH NH NH
N N
RY ill, N ';~ Q-R1 and , , , ~ =
Preferred substituents on the RZ/R2' fused ring of formula IIa include one or more of the following:

-halo, -N (R) 2, -C.1_4 alkyl, -C1_4 haloalkyl, -NO2i -O (C1_4 alkyl) , -COz (C1_4 alkyl) , -CN, -SO2 (Cl_4 alkyl) , -SO2NH2, -OC (0) NH2, -NH2SO2 (C1_4 alkyl) , -NHC (0) (C1_4 alkyl) , -C (O) NH2, and -CO (Cl_4 alkyl) , wherein the (C1_4 alkyl) is a straight, branched, or cyclic alkyl group. Preferably, the (C,._4 alkyl) group is methyl.

When the pyrazole ring system of formula IIa is monocyclic, preferred R2 groups include hydrogen or a substituted or unsubstituted group selected from aryl, heteroaryl, or a C1_6aliphatic group. Examples of such preferred R2 groups include H, methyl, ethyl, propyl, cyclopropyl, i-propyl, cyclopentyl, hydroxypropyl, methoxypropyl, and benzyloxypropyl. A preferred R2 ' group is hydrogen.
When Ring D of formula IIa is monocyclic, preferred Ring D groups include phenyl, pyridyl, pyridazinyl, pyrimidinyl, and pyrazinyl.
When Ring D of formula IIa is bicyclic, preferred bicyclic Ring D groups include naphthyl, tetrahydronaphthyl, indanyl, benzimidazolyl, quinolinyl, indolyl, isoindolyl, indolinyl, benzo[b]furyl, benzo[b]thiophenyl, indazolyl, benzothiazolyl, cinnolinyl, phthalazinyl, quinazolinyl, quinoxazolinyl, 1,8-naphthyridi.nyl and isoquinolinyl.

On Ring D of formula IIa, preferred T-R5 or V-Z-R5 substituents include -halo, -CN, -NO2, -N(R4)2, optionally substituted Cl_6 aliphatic group, -OR, -C(O)R, -C02R, - CONH (R4) , -N (R4) COR, -N (R4) COZR, -SO2N (R4) 2, -N (R4) SO2R, -N (R6) COCH2N (R4) 2, -N (R6) COCH2CH2N (R4) 2, and -N (R6) COCH2CH2CH2N (R4) 2, wherein R is selected from hydrogen, C1_6 aliphatic, phenyl, a 5-6 membered heteroaryl ring, or a 5-6 membered heterocyclic ring.
More preferred RS substituents include -Cl, -Br, -F, -CN, -CF3, -COOH, -CONHMe, -CONHEt, -NH2, -NHAc, -NHSOZMe, -NHSO2Et, -NHSO2(n-propyl), -NHSO2(isopropyl), -NHCOEt, -NHCOCH2NHCH3, -NHCOCH2N ( CO2 t -Bu ) CH3 , -NHCOCH2N ( CH3 ) 2, -NHCOCH2CH2N ( CH3 ) 2, -NHCOCH2CH2CH2N ( CH3 ) 2, -NHCO(cyclopropyl), -NHCO(isobutyl), -NHCOCH2(morpholin-4-yl), -NHCOCH2CH2 (morpholin-4-yl) , -NHCOCH2CH2CH2 (morpholin-4-yl) , -NHCO2 (t-butyl) , -NH(Cl_4 aliphatic) such as -NHMe, -N (CI_4 aliphatic) 2 such as -NMe2, OH, -O (Cl_4 aliphatic) such as -OMe, C1_4 aliphatic such as methyl, ethyl, cyclopropyl, isopropyl, or t-butyl, and -CO2(C1_4 aliphatic).

Preferred formula IIa compounds have one or more, and more preferably all, of the features selected from the group consisting of:

(a) Ry is Z-R3' or an optionally substituted group selected from C1_6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl, wherein Z is a methylene and R3' is -N(R4)2, -OR, or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;

(b) R' is T- (Ring D), wherein T is a valence bond or a methylene unit;

(c) Ring D is a 5-7 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R or -T-W-R6 and R2' is hydrogen, or R2 and R21 are taken together to form an optionally substituted benzo ring.
More preferred compounds of formula IIa have one or more, and more preferably all, of the features selected from the group consisting of:
(a) RY is an optionally substituted group selected from C1_6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl;

(b) R1 is T- (Ring D), wherein T is a valence bond and Q is -S-, -NH-, or -CH2-;

(c) Ring D is a 5-6 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R and R2' is hydrogen, wherein R is selected from hydrogen, C1_6 aliphatic, phenyl, a 5-6 membered heteroaryl ring, or a 5-6 membered heterocyclic ring.
Even more preferred compounds of formula IIa have one or more, and more preferably all, of the features selected from the group consisting of:
(a) Ry is selected from 2-pyridyl, 4-pyridyl, pyrrolidinyl, piperidinyl, morpholinyl, piperazinyl, methyl, ethyl, cyclopropyl, isopropyl, t-butyl, alkoxyalkylamino, alkoxyalkyl, alkyl- or dialkylamino, alkyl- or dialkylaminoalkoxy, acetamido, optionally substituted phenyl, or methoxymethyl;

(b) R'- is T- (Ring D) , wherein T is a valence bond and Ring D is a 5-6 membered aryl or heteroaryl ring, wherein Ring D is optionally substituted with one to two groups selected from -halo, -CN, -NO2, -N (R4) Z, optionally substituted C1_6 aliphatic group, -OR, -CO2R, -CONH (R4) , -N (R4) COR, -N (R4) SO2R, -N (R6) COCH2CHZN (R4) Z, or -N ( R6 ) COCH2CH2CH2N ( R4 ) 2, and Q is - S- or -NH-; and (c) R2 is hydrogen or a substituted or unsubstituted C1_6 aliphatic, and L is -0-, -S-, or -NH-.
Representative compounds of formula IIa are shown below in Table 1.
Table 1.

Me Me Me HN~~'~H HN~~p H HNJ~X H H
i I N)-l N i ~ . N)-' N N~N 501 N'S02Me NN" v~v MeNN N N NNN"
H H H H
IIa-1 IIa-2 IIa-3 Me Me Me HN~~'p H H HN~~p H H N J ~fd H
) N ~ ~ N~N ~ N
N ~N~N~S ~ IAc O~N~S S ~ I S~N~S ~ I S>
Me0 H ~ ~
'NMe2 IIa-4 IIa-5 IIa-6 ;_ fNH _tpH jf~
HHN fV HN HN Me.N N~N ~ . N~N CN N ~
l~ -JV ~
v'ON~N ~ I ~'~ N~ N ~ ~N~O Me~NN ~ I
H H H

IIa-7 IIa-8 IIa-9 H
irp H j:Qq H jdq HN HN HNH
" N N'~'N N Me.N N~N t NAc N)-MeO~.NN~S ~S OA N~S I S> OA NS H C
NMe2 IIa-10 IIa-11 IIa-12 \

HN H HN \I'~ H HN ~'~ H
0S)N#'OOMe N~N OJN,rCN N--O MeAN

IIa-13 IIa-14 IIa-15 In another embodiment, this invention provides a composition comprising a compound of formula IIa and a pharmaceutically acceptable carrier.

Another aspect of this invention relates to a method of treating or preventing an Aurora-2-mediated disease with an Aurora-2 inhibitor, which method comprises administering to a patient in need of such a treatment a therapeutically effective amount of a compound of formula IIa or a pharmaceutical composition thereof.

Another aspect of this invention relates to a method of inhibiting Aurora-2 activity in a patient, which method comprises administering to the patient a compound of formula IIa or a composition comprising said compound.
Another aspect of this invention relates to a method of treating or preventing a GSK-3-mediated disease with a GSK-3 inhibitor, which method comprises administering to a patient in need of such treatment a therapeutically effective amount of a compound of formula IIa or a pharmaceutical composition thereof.

One aspect of this invention relates to a method of enhancing glycogen synthesis and/or lowering blood levels of glucose in a patient in need thereof, which method comprises administering to the patient a therapeutically effective amount of a compound of formula IIa or a pharmaceutical composition thereof. This method is especially useful for diabetic patients. Another method relates to inhibiting the production of hyperphosphorylated Tau protein, which is useful in halting or slowing the progression of Alzheimer's disease. Another method relates to inhibiting the phosphorylation of P-catenin, which is useful for treating schizophrenia.

Another aspect of this invention relates to a method of inhibiting GSK-3 activity in a patient, which method comprises administering to the patient a compound of formula IIa or a composition comprising said compound.

Another method relates to inhibiting Aurora-2 or GSK-3 activity in a biological sample, which method comprises contacting the biological sample with the Aurora-2 or GSK-3 inhibitor of formula IIa, or a pharmaceutical composition thereof, in an amount effective to inhibit Aurora-2 or GSK-3.

Each of the aforementioned methods directed to the inhibition of Aurora-2 or GSK-3, or the treatment of a disease alleviated thereby, is preferably carried out with a preferred compound of formula IIa, as described above.

Another embodiment of this invention relates to compounds of formula Iib:

R2, NH
HN

N"~N
RY j) ,j Q~R1 ~~R$ ~

IIb or a pharmaceutically acceptable derivative or prodrug thereof, wherein:
Ry is Z-R3' or an optionally substituted group selected from Cl_6 ali.phatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms, or Ry and R8 are taken together to form a fused, optionally substituted 5-7 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur;

Q is selected from -N (R4) -, -0-, -S-, or -CH (R6) -;
R' is T- (Ring D) ;
Ring D is a 5-7 membered monocyclic ring or 8-10 membered bicyclic ring selected from aryl, heteroaryl, heterocyclyl or carbocyclyl, said heteroaryl or heterocyclyl ring having 1-4 ring heteroatoms selected from nitrogen, oxygen or sulfur, wherein each substitutable ring carbon of Ring D is independently substituted by oxo, T-R5, or V-Z-R5, and each substitutable ring nitrogen of Ring D is independently substituted by -R4;
T is a valence bond or a Cl_4 alkylidene chain, wherein when Q is -CH (R6) -, a methylene unit of said C1_4 alkylidene chain is optionally replaced by -0-, -S-, -N(R4) -, -CO-, -CONH-, -NHCO-, -SO2-, -SO2NH-, -NHSO2-, -C02-, -OC (O) -, -OC (O)NH-, or -NHCO2-;
Z is a C1_4 alkylidene chain;

L is -0-, -S-, -SO-, -S02-, -N(R6)S02-, -S02N(R6)-, -N (R6) -, -CO-, -C02-, -N (R6) CO-, -N (R6) C (0) 0- , -N(R6)CON(R6) -, -N(R6) S02N(R6) -, -N(R6)N(R6) -, -C(O)N(R6)-, -OC(O)N(R6)-, -C(R6)ZO-, -C(R6)2S-, -C (R6) 2S0-, -C (R6) 2SO2-, -C (R6) 2SO2N (R6) -, -C (R6) 2N (R6) -, -C (R6) 2N (R6) C (O) -, -C (R6) 2N (R6) C (0) 0-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C (R6) 2N (R6) N (R6) -, -C (R6) 2N (R6) SO2N (R6) -, or -C(R6)2N(R6)CON(R6)-;
R2 and R2' are independently selected from -R, -T-W-R6, or R2 and R2' are taken together with their intervening atoms to form a fused, 5-8 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur, wherein each substitutable ring carbon of said fused ring formed by R2 and R2' is independently substituted by halo, oxo, -CN, -NO2, -R', or -V-R6, and each substitutable ring nitrogen of said ring formed by R2 and R2' is independently substituted by R4;

R31 is selected from -halo, -OR, -C(=O)R, -CO2R, -COCOR, -COCH2COR, -NO2, -CN, -S (O) R, -S (O) zR, -SR, -N (R4) 2, -CON (R7 ) 2, -SO2N (R7 ) 2, -OC (=O) R, -N (R') COR, -N (R7) CO2 (C1_6 aliphatic), -N (R4) N (R4) 2, -C=NN (R4) z, -C=N-OR, -N (R7) CON (R') 2, -N (R7) S02N (R7 ) 2, -N (R4) SO2R, -OC(=0)N(R')2, or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;

each R is independently selected from hydrogen or an optionally substituted group selected from C1_6 aliphatic, C6_10aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;

each R4 is independently selected from -R7, -COR', -CO2 (optionally substituted C1_6 aliphatic) , -CON (R') 2, or - SO2R7 ;

each R5 is independently selected from -R, halo, -OR, -C (=O) R, -CO2R, -COCOR, -NO2, -CN, -S (O) R, -SOZR, -SR, -N (R4) 2, -CON (R4) 2i -SO2N (R4) 2, -OC (=O) R, -N (R4) COR, -N (R4) CO2 (optionally substituted C1_6 aliphatic) , -N(R4)N(R4)2, -C=NN(R4)2, -C=N-OR, -N(R4)CON(R4)2, -N(R4)S02N(R4)2, -N(R4)SO2R, or -OC(=O)N(R4)2;

V is -0-, -5-, -SO-, -SO2-, -N(R6)S02-, -S02N(R6)-, -N (R6) -, -CO-, -CO2-, -N (R6) CO-, -N (R6) C (O) O-, -N(R6)CON(R6)-, -N(R')S02N(R6)-, -N(R6)N(R6)-, -C(0)N(R6)-, -OC(0)N(R6)-, -C(R6)z0-, -C(R6)2S-, -C (R6) 2S0- , -C (R6) 2SO2-, -C (R6) 2SO2N (R6) - , -C (R6) 2N (R6) -, -C (R6) 2N (R6) C (O) -, -C (R6) 2N (R6) C (O) O-, -C (R6) =NN (R6) -, -C(R6)=N-O-, -C(R6)2N(R6)N(R6)-, -C(R6)2N(R6)S02N(R6)-, or -C (R6) 2N (R6) CON (R6) - ;
W is -C (R6) 20-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2SO2-, -C (R6) 2SO2N (R6) -, -C (R6) 2N (R6) -, -CO-, -C02-, -C (R6) OC (O) -, -C (R6) OC (O) N (R6) -, -C (R6) 2N (R6) CO-, -C (R6) 2N (R6) C (O) O-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C(R6)2N(R6)N(R6) -, -C(R6)2N(R6)S02N(R6) -, -C(R6)2N(R6) CON(R6) -, or -CON(R6) -;
each R6 is independently selected from hydrogen or an optionally substituted C1-4 aliphatic group, or two R6 groups on the same nitrogen atom are taken together with the nitrogen atom to form a 5-6 membered heterocyclyl or heteroaryl ring;
each R' is independently selected from hydrogen or an optionally substituted Cl_6 aliphatic group, or two R' on the same nitrogen are taken together with the nitrogen to form a 5-8 membered heterocyclyl or heteroaryl ring; and R8 is selected from -R, halo, -OR, -C(=O)R, -CO2R, -COCOR, -NO2, -CN, -S (O) R, -S02R, -SR, -N (R4) 2, -CON (R4) 2, -SO2N (R4) 2, -OC (=0) R, -N (R4) COR, -N (R4) C02 (optionally substituted Cl_6 aliphatic),-N (R4) N(R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R4) CON (R4) z, -N (R4) SO2N (R4) z, -N (R4) S02R, or -OC(=O)N(R4)2; provided that when Q is -NH- and Ry and R8 are taken together to form a fused ring, R' is other than a pyrazol-3-yl ring or a pyrazol-3-yl-containing bicyclic ring system.

Preferred Ry groups of formula Iib include Z-R3or an optionally substituted group selected from C,._6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl, wherein Z is a methylene and R3' is -N(R4)2, -OR, or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-ring atoms, or a heterocyclyl ring having 5-10 ring 10 atoms..
Examples of preferred Ry groups include 2-pyridyl, 4-pyridyl, pyrrolidinyl, piperidinyl, morpholinyl, piperazinyl, methyl, ethyl, cyclopropyl, isopropyl, t-butyl, alkoxyalkylamino such as methoxyethylamino, alkoxyalkyl such as methoxymethyl or methoxyethyl, alkyl- or dialkylamino such as ethylamino or dimethylamino, alkyl- or dialkylaminoalkoxy, such as dimethylaminopropyloxy, acetamido, optionally substituted phenyl such as phenyl or halo-substituted phenyl.
The R2 and R2' groups of formula ITb may be taken together to form a fused ring, thus providing a bicyclic ring system containing a pyrazole ring.
Preferred fused rings include benzo, pyrido, pyrimido, and a partially unsaturated 6-membered carbocyclo ring.
These are exemplified in the following formula Iib compounds having a pyrazole-containing bicyclic ring system:
~ \
i NH
HN \N N N ~ NN
N"'~N
RY~Q-R1 NNH 'NNH 'NNH NNH

, , and Preferred substituents on the R2/R2' fused ring of formula Iib include one or more of the following:
-halo, -N (R4) 2, -C1_4 alkyl, -Cl_4 haloalkyl, -NO2, -O (C1_4 alkyl) , -C02 (C1_4 alkyl) , -CN, -S02 (CI._4 alkyl) , -SOZNH2, -OC (O)NH2, -NH2SO2 (Cl_4 alkyl) , -NHC (O) (Cl_4 alkyl) , -C (O)NH2i and -CO (C1_4 alkyl) , wherein the (C1-4 alkyl) is a straight, branched, or cyclic alkyl group. Preferably, the (Cl_4 alkyl) group is methyl.
When the pyrazole ring system of formula IIb is monocyclic, preferred R2 groups include hydrogen or a substituted or unsubstituted group selected from aryl, heteroaryl, or a C1_6 aliphatic group. Examples of such preferred R2 groups include H, methyl, ethyl, propyl, cyclopropyl, i-propyl, cyclopentyl, hydroxypropyl, methoxypropyl, and benzyloxypropyl. A preferred R2' group is hydrogen.
When Ring D of formula Iib is monocyclic, =preferred Ring D groups include phenyl, pyridyl, pyridazinyl, pyrimidinyl, and pyrazinyl.
When Ring D of formula Iib is bicyclic, preferred bicyclic Ring D groups include naphthyl, tetrahydronaphthyl, indanyl, benzimidazolyl, quinolinyl, indolyl, isoindolyl, indolinyl, benzo[b]furyl, benzo[b]thiophenyl, indazolyl, benzothiazolyl, cinnolinyl, phthalazinyl, quinazolinyl, quinoxazolinyl, 1,8-naphthyridinyl and isoquinolinyl.
On Ring D of formula Iib, preferred T-R5 or V-Z-R5 substituents include -halo, -CN, -NO2, -N(R4)2, optionally substituted C1_6 aliphatic group, -OR, -C(O)R, -CO2R, -CONH (R4) , -N (R4) COR, -N (R4) CO2R, -SO2N (R4) 2, S -N (R4) S02R, -N (R6) COCH2N (R4) 2, -N (R6) COCH2CH2N (R4) 2, and -N (R6) COCH2CH2CHZN (R4) 2, wherein R is selected from hydrogen, Cl_6 aliphatic, phenyl, a 5-6 membered heteroaryl ring, or a 5-6 membered heterocyclic ring.
More preferred R5 substituents include -Cl, -Br, -F, -CN, -CF3, -COOH, -CONHMe, -CONHEt, -NH2, -NHAc, -NHSO2Me, -NHS02Et, -NHS02(n-propyl), -NHS02(i.sopropyl), -NHCOEt, -NHCOCH2NHCH3, -NHCOCH2N ( CO2t - Bu ) CH3 , -NHCOCH2N ( CH3 ) 2, -NHCOCH2CH2N ( CH3 ) 2, -NHCOCH2CH2CH2N ( CH3 ) 2, -NHCO(cyclopropyl), -NHCO(isobutyl), -NHCOCH2(morpholin-4-yl), -NHCOCH2CH2(morpholin-4-yl), -NHCOCH2CH2CH2(morpholin-4-yl), -NHC02 (t-butyl) , -NH(C1_4 aliphatic) such as -NHMe, -N (Cl_4 aliphatic) 2 such as -NMe2, OH, -O (C1-4 aliphatic) such as -OMe, C1_4 aliphatic such as methyl, ethyl, cyclopropyl, isopropyl, or t-butyl, and -CO2(C1_4 aliphatic).

When Ry and R8 are taken together to form a fused ring, preferred rings formed by Ry and R8 include 5-6 membered unsaturated or partially unsaturated rings having 0-2 heteroatoms. More preferred fused rings formed by Ry and R8 include benzo, cyclohexo, and pyrido.
Preferred R 8 groups of formula IIb, when present, include R, OR, and N(R4)z. Examples of preferred R8 include methyl, ethyl, NH2, NH2CH2CH2NH, N(CH3) 2CH2CH2NH, N(CH3) 2CH2CH2O, (piperidin-l-yl) CH2CH2O, and NH2CH2CH20.
Preferred formula IIb compounds have one or more, and more preferably all, of the features selected from the group consisting of:
(a) R'' is Z-R3' or an optionally substituted group selected from C1_6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl, wherein Z is a methylene and R3' is -N(R4)2i -OR, or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;
(b) R' is T-(Ring D), wherein T is a valence bond or a methylene unit;

(c) Ring D is a 5-7 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R or -T-W-R6 and R2' is hydrogen, or R2 and R2' are taken together to form an optionally substituted benzo ring.
More preferred compounds of formula IIb have one or more, and more preferably all, of the features selected from the group consisting of:

(a) Ry is an optionally substituted group selected from Cl_6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl;
(b) R' is T-(Ring D), wherein T is a valence bond, and Q is -S-, -NH-, or -CH2-;

(c) Ring D is a 5-6 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R and R2' is hydrogen, wherein R is selected from hydrogen, C1_6 aliphatic, phenyl, a 5-6 membered heteroaryl ring, or a 5-6 membered heterocyclic ring.
Even more preferred compounds of formula lib have one or more, and more preferably all, of the features selected from the group consisting of:
(a) Ry is selected from 2-pyridyl, 4-pyridyl, pyrrolidinyl, piperidinyl, morpholinyl, piperazinyl, methyl, ethyl, cyclopropyl, isopropyl, t-butyl, alkoxyalkylamino, alkoxyalkyl, alkyl- or dialkylamino, alkyl- or dialkylaminoalkoxy, acetamido, optionally substituted phenyl, or methoxymethyl, or Ry and R 8 are taken together to form a 5-6 membered unsaturated or partially unsaturated ring having 0-2 heteroatoms selected from nitrogen, oxygen, or sulfur;
(b) R' is T-(Ring D), wherein T is a valence bond and Ring D is a 5-6 membered aryl or heteroaryl ring, wherein Ring D is optionally substituted with one to two groups selected from -halo, -CN, -NO2, -N (R4) 2, optionally substituted Ci_6 aliphatic group, -OR, -CO2R, -CONH (R4) , -N (R4) COR, -N (R4) SO2R, -N (R6) COCH2CH2N (R4) 2, or -N (R6) COCH2 CHZ CH2N ( R4 ) 2, and Q is - S- or -NH-; and (c) R2 is hydrogen or a substituted or unsubstituted C1_6 aliphatic, and L is -0-, -S-, or -NH-.
Representative,compounds of formula Iib are shown below in Table 2.

Table 2.

Me Me Me HN~~'~H HN~'"H HNH H
N%N \ ~ .,,, N'N N N N'S02Me N ~" Me N ,'N N~ N N
H H H i H H
IIb-1 IIb-2 IIb-3 ; H ;_ J~J H j H
HN HN IV HN H
~N NN i N Me.N N)'N ~ N
N ;4c MeO~N ~ i S S O~J=S ~ I gI ~O~~.S ~( H
NMe2 IIb-4 IIb-5 IIb-6 HN _~" H HN _"' H HN _~'~ H

0'SOMe %N \ I \ I N%N \ 1 CN NiN
O Me O
IIb-7 IIb-8 IIb-9 Me Me HNefVJV H H HNfV ~JqH HN J;PH

N)-' N ~ I NAc N~N S\ ~ I N~N ~ I CN
I~~S\ I~r I~rko \
r\
IIb-10 IIb-11 IIb-12 HN ZH
HN _XH HN XH
&Z--13110 N~N N~N
Me I~ N N I ~ O 'I H Ir~-IIb-13 IIb-14 IIb-15 In another embodiment, this invention provides a composition comprising a compound of formula Iib and a pharmaceutically acceptable carrier.
Another aspect of this invention relates to a method of treating or preventing an Aurora-2-mediated disease with an Aurora-2 inhibitor, which method comprises administering to a patient in need of such a treatment a therapeutically effective amount of a compound of formula IIb or a pharmaceutical composition thereof.

Another aspect of this invention relates to a~-'-method of inhibiting Aurora-2 activity in a patient, which method comprises administering to the patient a compound of formula Iib or a composition comprising said compound.

Another aspect of this invention relates to a method of treating or preventing a GSK-3-mediated disease with a GSK-3 inhibitor, which method comprises administering to a patient in need of such a treatment a therapeutically effective amount of a compound of formula Iib or a pharmaceutical composition thereof.

One aspect of this invention relates to a method of enhancing glycogen synthesis and/or lowering blood levels of glucose in a patient in need thereof, which method comprises administering to the patient a therapeutically effective amount of a compound of formula Iib or a pharmaceutical composition thereof. This method is especially useful for diabetic patients. Another method relates to inhibiting the production of hyperphosphorylated Tau protein, which is useful in halting or slowing the progression of Alzheimer's disease. Another method relates to inhibiting the phosphorylation of (3-catenin, which is useful for treating schizophrenia.

Another aspect of this invention relates to a method of inhibiting GSK-3 activity in a patient, which method comprises administering to the patient a compound of formula Iib or a composition comprising said compound.
Another method relates to inhibiting Aurora-2 or GSK-3 activity in a biological sample, which method comprises contacting the biological sample with the Aurora-2 or GSK-3 inhibitor of formula IIb, or a pharmaceutical composition thereof, in an amount effective to inhibit Aurora-2 or GSK-3.

Each of the aforementioned methods directed to the inhibition of Aurora-2 or GSK-3, or the treatment of a disease alleviated thereby, is preferably carried out with a preferred compound of formula Iib, as described above.

Another embodiment of this invention relates to compounds of formula III:

R2' NH
HN N

z 3-\Z2 i N, Zi Q,R
III
or a pharmaceutically acceptable derivative or prodrug thereof, wherein:

Z' is nitrogen or CRB, Z2 is nitrogen or CH, and Z3 is nitrogen or CR", provided that one of Z' and Z3 is nitrogen;

RX is T-R3 or L-Z-R3;

Q is selected from -N(R4) -, -0-, -S-, or -CH(R6) -;
R' is T- (Ring D) ;

Ring D is a 5-7 membered monocyclic ring or 8-10 membered bicyclic ring selected from aryl, heteroaryl, heterocyclyl or carbocyclyl, said heteroaryl or heterocyclyl ring having 1-4 ring heteroatoms selected from nitrogen, oxygen or sulfur, wherein each substitutable ring carbon of Ring D is independently substituted by oxo, T-R5, or V-Z-R5, and each substitutable ring nitrogen of Ring D is independently substituted by -R4;

T is a valence bond or a C1_4 alkylidene chain, wherein when Q is -CH (R6) -, a methylene unit of said C1_4 alkylidene chain is optionally replaced by -0-, -S-, -N(R4) -, -CO-, -CONH-, -NHCO-, -SO2-, -SO2NH-, -NHSO2-, -C02-, -OC (O) -, -OC(O)NH-, or -NHCO2-;
Z is a C1-4 alkylidene chain;

L is -0-, -S-, -SO-, -SO2-, -N(R6)S02-, -S02N(R6)-, -N(R6)-, -CO-, -CO2-, -N(R')CO-, -N(R6)C(O)O-, -N(R6)CON(R6)-, -N(R6)SO2N(R6)-, -N(R6 )N(R6)-, -C (O) N (R6) -, -OC (O) N (R6) -, -C (R6) 2O-, -C (R6) 2S-, -C (R6) 2S0-, -C (R6) 2S02-, -C (R') 2SO2N (R6) -, -C (R6) 2N (R6) -, -C (R6) 2N (R6) C (O) -, -C (R6) 2N (R6) C (O) O-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C (R6) 2N (R6) N (R6) -, -C (R6) 2N (R6) SOZN (R6) -, or -C (R6) 2N (R6) CON (R6) -;

R2 and R2' are independently selected from -R, -T-W-R6, or R2 and R2' are taken together with their intervening atoms to form a fused, 5-8 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur, wherein each substitutable ring carbon of said fused ring formed by R2 and R2' is independently substituted by halo, oxo, -CN, -NO2, -R', or -V-R6, and each substitutable ring nitrogen of said ring formed by R2 and R2' is independently substituted by R4;

R3 is selected from -R, -halo, -OR, -C (=0) R, -CO2R, -COCOR, -COCH2COR, -NO2, -CN, -S (O) R, -S (O) 2R, -SR, -N (R4) 2, -CON (R7 ) 2, -SO2N (R7 ) 2, -OC (=O) R, -N (R7) COR, -N (R7) C02 (C1_6 aliphatic) , -N (R4 ) N (R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R7) CON (R7) 2, -N (R7) SO2N (R7) 2, -N (R4) SO2R, or -OC(=O)N(R7 )2;
each R is independently selected from hydrogen or an optionally substituted group selected from C1_6 aliphatic, C6_10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;
each R4 is independently selected from -R7, -COR', -CO2 (optionally substituted C1_6 aliphatic) , -CON (R') 2, or -SOZR';

each R5 is independently selected from -R, halo, -OR, -C (=O) R, -CO2R, -COCOR, -NO2, -CN, -S (O) R, -SO2R, -SR, -N (R4) 2, -CON (R4) 2, -SO2N (R4) 2, -OC (=O) R, -N (R4) COR, -N (R4) CO2 (optionally substituted C1_6 aliphatic), -N(R4)N(R4)2, -C=NN(R4)2, -C=N-OR, -N(R4)CON(R4)2, -N(R4)SO2N(R4)2, -N(R4)SOzR, or -OC(=O)N(R4)2;

V is -0-, -S-, -SO-, -SO2-, -N(R6)S02-, -SO2N(R6)-, -N(R6)-, -CO-, -C02-, -N(R6)CO-, -N(R6)C(O)O-, -N(R6) CON(R6) -, -N(R6) SO2N(R6) -, -N(R6)N(R6) -, -C(O)N(R6)-, -OC(O)N(R6)-, -C(R6)20-, -C(R6)2S-, -C(R6)2S0-, -C(R6)2SO2-, -C(R6)2SO2N(R6)-, -C(R6)2N(R6)-, -C (R6) 2N (R6) C (0) -, -C (R6) 2N (R6) C (O) O-, -C (R6) =NN (R6) -, -C(R6)=N-O-, -C(R6)2N(R6)N(R6)-, -C(R6)2N(R6)SO2N(R6)-, or -C (R6) 2N (R6) CON (R6) - ;

W is -C (R6) 20-, -C (R6) 2S-, -C (R6) 2SO-, -C (R6) 2SO2-, -C(R6)2SO2N(R6)-, -C(R6)2N(R6)-, -CO-, -C02-, -C (R6) OC (O) -, -C (R6) OC (O) N (R6) -, -C (R6) 2N (R6) CO-, -C (R6) 2N (R6) C (O) O-, -C (R6) =NN (R6) -, -C (R6) =N-O-, -C (R6) 2N (R6) N (R6) -, -C (R6) 2N (R6) SO2N (R6) -, -C (R6) 2N (R6) CON (R6) - , or -CON (R6) - ;
each R6 is independently selected from hydrogen or an optionally substituted C1_4 aliphatic group, or two R6 groups on the same nitrogen atom are taken together with the nitrogen atom to form a 5-6 membered heterocyclyl or heteroaryl ring;
each R7 is independently selected from hydrogen or an optionally substituted C1_g aliphatic group, or two R7 on the same nitrogen are taken together with the nitrogen to form a 5-8 membered heterocyclyl or heteroaryl ring; and R8 is selected from -R, halo, -OR, -C(=O)R, -CO2R, -COCOR, -NO2, -CN, -S (O) R, -SO2R, -SR, -N (R4) 2, -CON (R4) 2, -SO2N (R4) 2, -OC (=O) R, -N (R4) COR, -N (R4) C02 (optionally substituted C1_6 aliphatic), -N (R4) N (R4) 2, -C=NN (R4) 2, -C=N-OR, -N (R4) CON (R4) 2, -N (R4) SO2N (R4) 2, -N (R4) SO2R, or -OC(=O)N(R4)2.

Accordingly, the present invention relates to compounds of formula IIIa, IIIb, IIic and IIId as shown below:

R2 ~ NH R2' ~ NH
~N
~ NH HN ~N ~ NH HN
HN 'N HN ~N
~
N j R1 Rx N Rx ' ~ 1 Q
NN Q'R Rs N-N Q=R Rs IiIa Ilib IIic IIId Preferred R" groups of formula III include T-R3 wherein T is a valence bond or a methylene and R3 is CN, -R, or -OR. When R3 is -R, preferred R3 groups include an optionally substituted group selected from C1_6 aliphatic, phenyl, or a 5-6 membered heteroaryl or heterocyclyl ring. When R3 is -OR, preferred R groups include an optionally substituted group Cl_6 aliphatic group such as alkyl- or dialkylaminoalkyl and aminoalkyl. Examples of preferred R" include acetamido, CN, piperidinyl, piperazinyl, phenyl, pyridinyl, imidazol-1-yl, imidazol-2-yl, cyclohexyl, cyclopropyl, methyl, ethyl, isopropyl, t-butyl, NH2CH2CH2NH, and NH2CH2CH2O.

Preferred R8 groups of formula III, when present, include R, OR, and N(R4)2. Examples of preferred R 8 include methyl, ethyl, NH2, NH2CH2CH2NH, N( CH3 ) 2CH2CH2NH, N(CH3) 2CH2CH2O, (piperidin-l-yl) CH2CH2O, and NH2CH2CH2O.
The R 2 and R2' groups of formula III may be taken together to form a fused ring, thus providing a bicyclic ring system containing a pyrazole ring.

Preferred fused rings include benzo, pyrido, pyrimido, and a partially unsaturated 6-membered carbocyclo ring.
These are exemplified in the following formula III

compounds having a pyrazole-containing bicyclic ring system:

nl~
i NH N N N'~N
HN N I
z3 ~z 2 NH NNH NH NH
N _N
N, 1 ~ ~R
Z Q , , , , and Preferred substituents on the formula III R2/R2 fused ring include one or more of the following: -halo, -N (R4) 2, -Cl_4 alkyl, -C1_4 haloalkyl, -NO2, -O (C1_4 alkyl) , -CO2 (Cl_4 alkyl) , -CN, -SO2 (C1_4 alkyl) , -SO2NH2, -OC (O) NH2, -NH2SO2 (C1_4 alkyl) , -NHC (O) (C1_4 alkyl) , -C (O)NH2, and -CO ( Cl_4 alkyl ), wherein the ( Cl_4 alkyl) is a straight, branched, or cyclic alkyl group. Preferably, the (C1_4 alkyl) group is methyl.
When the pyrazole ring system of formula III is monocyclic, preferred R2 groups include hydrogen or a substituted or unsubstituted group selected from aryl, heteroaryl, or a C1_6aliphatic group. Examples of such preferred R2 groups include H, methyl, ethyl, propyl, cyclopropyl, i-propyl, cyclopentyl, hydroxypropyl, methoxypropyl, and benzyloxypropyl. A preferred R2' group is hydrogen.

When Ring D of formula III is monocyclic, preferred Ring D groups include phenyl, pyridyl, pyridazinyl, pyrimidinyl, and pyrazinyl.

When Ring D of formula III is bicyclic, preferred bicyclic Ring D groups include naphthyl, tetrahydronaphthyl, indanyl, benzimidazolyl, quinolinyl, indolyl, isoindolyl, indolinyl, benzo[b]furyl, benzo[b]thiophenyl, indazolyl, benzothiazolyl, cinnolinyl, phthalazinyl, quinazolinyl, quinoxazolinyl, 1,8-naphthyridinyl and isoquinolinyl.

On Ring D of formula III, preferred T-R5 or V-Z-R5 substituents include -halo, -CN, -NO2, -N (R4) 2, optionally substituted C1_6 aliphatic group, -OR, -C(O)R, -CO2R, -CON (R4) Z, -OCO (R4) 2, -N (R4) COR, -N (R4) CO2R, -SO2N (R4) 2, -N (R4) SO2R, -N (R6) COCH2N (R4) 2, -N (R6) COCH2CH2N (R4) 2, and -N (R6) COCH2CH2CH2N (R4) 2, wherein R
is selected from hydrogen, C1_6 aliphatic, phenyl, a 5-6 membered heteroaryl ring, or a 5-6 membered heterocyclic ring. More preferred R5 substituents include -Cl, -Br, -F, -CN, -CF3, -COOH, -CONHMe, -CONHEt, -NH2, -NHAc, -NHS02Me, -NHSO2Et, -NHSO2(n-propyl), -NHSO2(isopropyl), -NHCOEt, -NHCOCH2NHCH3, -NHCOCH2N ( CO2 t -Bu ) CH3 , -NHCOCH2N ( CH3 ) 2, -NHCOCH2CH2N ( CH3) 2 , -NHCOCH2CH2CH2N ( CH3 ) 2, -NHCO(cyclopropyl), -NHCO(isobutyl), -NHCOCH2(morpholin-4-yl), -NHCOCH2CH2 (morpholin-4-yl) , -NHCOCH2CH2CH2 (morpholin-4-yl), -NHCO2(t-butyl), -NH(C1_4 aliphatic) such as -NHMe, -N (Cl_4 aliphatic) 2 such as -NMe2, OH, -O (C1_4 aliphatic) such as -OMe, C,._4 aliphatic such as methyl, ethyl, cyclopropyl, isopropyl, or t-butyl, and -CO2(C1_4 aliphatic).

Preferred compounds of formula IIIa, IIib, IIic, or IIId have one or more, and more preferably all, of the features selected from the group consisting of:

(a) RX is hydrogen, alkyl- or dialkylamino, acetamido, or a C1_4 aliphatic group;

(b) R' is T-(Ring D), wherein T is a valence bond or a methylene unit;

(c) Ring D is a 5-7 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R or -T-W-R6 and R 2 ' is hydrogen, or R2 and Rz1 are taken together to form an optionally substituted benzo ring.
More preferred compounds of formula IiIa, IIIb, IIIc, or IIId have one or more, and more preferably all, of the features selected from the group consisting of:

(a) R' is T- (Ring D), wherein T is a valence bond, and Q is -S-, -NH-, or -CH2-;
(b) Ring D is a 5-6 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (c) R2 is -R and R2' is hydrogen, wherein R is selected from hydrogen, C1_6 aliphatic, phenyl, a 5-6 membered heteroaryl ring, or a 5-6 membered heterocyclic ring.
Even more preferred compounds of formula IIIa, IIIb, IIic, or IIId have one or more, and more preferably all, of the features selected from the group consisting of.
(a) R" is hydrogen methyl, ethyl, propyl, cyclopropyl, isopropyl, methylamino or acetimido;
(b) R' is T- (Ring D), wherein T is a valence bond and 5- Ring D i-s a 5-6 membered aryl or heteroaryl ring, wherein Ring D is optionally substitia.ted with one to two groups selected from -halo, -CN, -NO2, -N (R4) 2, optionally substituted CJ._6 aliphatic group, -OR, -CO2R, -CON (R4) 2, -OCO (R4) 2, -N (R4) COR, -N (R4) SOzR, -N (R6) COCH2CH2N (R4) 2, or -N (R6) COCH2CH2CH2N (R4) 2, and Q is -S- or -NH-; and (c) R2 is hydrogen or a substituted or unsubstituted C1_6 aliphatic.
Representative compounds of formula III are shown below in Table 3.

Table 3.

Me Me Me HNJ~ftp H HN J~frp H H HN J~1H
IV
N ~ )=,, N N NAc N~N
N i N~ f~~ N i S~ i H H OMe HN jf_xH HN J:~X H HN _rPH
N-'-- N N~N a N N~N CN
N N S s N~o I
H
Me ~~, '~H '~H H
HN
HN H HN f N~N N'S02Me N~N l',N
N~L ~~ N,J=S N'N~
N S N N
H H~

Me Me HNllf~x H HN~~p H HN ~~H
rIAN ~ ~N i~ CN i-N ~ .
N,N ~S S N.N-O ~ N=NN~~ P4N
H H

i~
~~H ~ ~
-XH ,_ J~1H
HN H HN HN IV
N ~ N % ~c ~N ~ N i N.NJS N.N.IN ~~ fV N.N- S ~ I OMe H H

Me Me Me HN~~'~ H HN ~f'PH H HNH
~ i . N ~ iN Ac N
N ~ i N~ LN~~ ~ S~~ N~ '=i OMe H H
H H H
HN HN
i ~ CN
N.~
Ni N ~N Ni S~ S
N i H

Me H ~- j~H
HN H HN HN 'v NH ci N'S02Me N N N i S N H , S ~ N

Me Me %H ,f~ H ~
HN~ HN ~'~ HN ~rPH
, ~ ~ N N
N, ' >SJ3 CN \ / f~f N O
H H

1~
, J~IH NH _ ~IH
HN IV H HN ~N HN 'v aNAe >NJOQ >S''OMe N S
H H

III-2,8 111-29 111-30 In another embodiment, this invention provides a composition comprising a compound of formula III and a pharmaceutically acceptable carrier.
Another aspect of this invention relates to a method of treating or preventing an Aurora-2-mediated disease with an Aurora-2 inhibitor, which method comprises administering to a patient in need of such a treatment a therapeutically effective amount of a compound of formula III or a pharmaceutical composition thereof.

Another aspect of this invention relates to a method of inhibiting Aurora-2 activity in a patient, which method comprises administering to the patient a compound of formula III or a composition comprising said compound.

Another aspect of this invention relates to a method of treating or preventing a GSK-3-mediated disease with a GSK-3 inhibitor, which method comprises administering to a patient in need of such a treatment a therapeutically effective amount of a compound of formula III or a pharmaceutical composition thereof.

One aspect of this invention relates to a method of enhancing glycogen synthesis and/or lowering blood levels of glucose in a patient in need thereof, which method comprises administering to the patient a therapeutically effective amount of a compound of formula III or a pharmaceutical composition thereof. This method is especially useful for diabetic patients. Another method relates to inhibiting the production of hyperphosphorylated Tau protein, which is useful in halting or slowing the progression of Alzheimer's disease. Another method relates to inhibiting the phosphorylation of 0-catenin, which is useful for treating schizophrenia.

Another aspect of this invention relates to a method of inhibiting GSK-3 activity in a patient, which method comprises administering to the patient a compound of formula III or a composition comprising said compound.
Another method relates to inhibiting Aurora-2 or GSK-3 activity in a biological sample, which method comprises contacting the biological sample with the Aurora-2 or GSK-3 inhibitor of formula III, or a pharmaceutical composition thereof, in an amount effective to inhibit Aurora-2 or GSK-3.
Each of the aforementioned methods directed to the inhibition of Aurora-2 or GSK-3, or the treatment of a disease alleviated thereby, is preferably carried out with a preferred compound of formula III as described above.
The compounds of this invention may be prepared in general by methods known to those skilled iri the art for analogous compounds, as illustrated by the general Schemes I-VII.
Scheme I

~
CI 2 ~ J~H
~ ci R21 R HN N
N -N _~ N'N + ~1~1H ~ N~N
Ry~Ci Ry ~ 8 Q.R1 H2N N Ry ' ~ Q_R1 1 2 3 IIb Scheme I above shows a general route for the preparation of compounds of formula Iib. The dichloro intermediate 1 (prepared using methods similar to those reported in J. Indian. Chem. Soc., 61, 690-693 (1984) or in J. Med. Chem., 37, 3828-3833 (1994)) is sequentially reacted with two nucleophiles: R1-QH to displace the chloride at position 4 to afford intermediate 2; and then 2 is treated with an aminopyrazole (or aminoindazole) to displace the chloride at position 2, using procedures similar to those described in J. Med. Chem, 38, 14, 2763-2773, (1995) to afford compounds of formula IIb.

Scheme II

SMe SMe SMe ~ SMe N N 0~N N-N N-LN
HO-'~----R8 OH CI ~CI CI ~Q-Ri Rv 4-eQ_R1 R R R$

R2, NH R2 SO2Me NN N N R2~ H + v N~'N
~ ~ ~ H2N ~ R ~Q_R1 Rv Q=R

IIb 3 8 Scheme II above shows a general route for the preparation of compounds of formula Iib wherein Q is an N, 0 or S linker and Ry is a group attached to the pyrimidine core via a heteroatom. Starting material 4,6-dihydroxy-2-methylsulfanylpyrimidine (4) is prepared using procedures similar to those reported in J. Med.
Chem., 27, 12, 1621-1629 (1984). Chlorination of 4 with POC13 affords the dichloro intermediate 5. The two chlorides of 5 are sequentially displaced with the appropriate R'-QH, to afford compound 6, and then with Ry-H(amine, alcohol, or thiol) to afford compound 7 using procedures similar to those reported in US Patent 2,585,906. Alternatively, the order of displacement may be reversed by first displacing with RY-H and then with R1-QH. The methyl sulfanyl group of compound 7 is then oxidized (for example, with oxone) to afford compound 8 and the resulting methylsulfonyl is finally displaced with the amino moiety of aminopyrazole (or aminoindazole) by methods substantially similar to those described above for Scheme 1 step (b) to afford compounds of formula Iib.
Scheme III

R2. R R2' / R2, R R2 R
~ H N~H HN~f'~ H HN~'~ H HN~~H
A . 2 N~ N -~ N )' N -ot N)-~N
Cl N CI (a) CIA NJ, CI (b) CIAIN41 Q-R1 (C) Rv'"N-'I'Q-Ri 8 9 10 IIa Scheme III above shows a general route for the preparation of compounds of formula IIa. The three chlorides of starting material 8 are sequentially displaced with (a) the amino moiety of aminopyrazole (or aminoindazole) to afford compound 9, (b) the R'-QH group to afford compound 10, and (c) Ry-H (amine, alcohol, or thiol) using procedures similar to the ones reported in J. Indian Chem. Soc., 53, 207-208, (1976) to afford compounds of formula IIa. These three steps can also be performed in different order to afford compounds of formula IIa.

Scheme IV

RR2 R2, 2 R, R2 R, R2 Br CI i ~~H HN_ J~JH HN~~H HN~~'~ H

NN CI ~ CI I CI

N'N CI N'N Q-Rl N'N Q-R1 11 12 13 IIIa Scheme IV above shows a general route for the preparation of compounds of formula IIIa. Treatment of 11 with aminopyrazole (or aminoindazole) to provide 12 may be performed in a manner similar to that described in Heterocycles, 51, 5, 1999, 1035-1050. The intermediate 13 is obtained by displacement with R'-QH in a manner similar to that described in Farmaco. Ed. Sci., 27, 1972, 591-600. For the preparation of compounds of formula IIIa where R" is hydrogen, the chlorine may be removed by reduction. Alternatively, for the preparation of compounds of formula IiIa where Rx is other than hydrogen, the chlorine may be displaced by methods known to those skilled in the art to afford compounds with a variety of Rx substituents.

Scheme V

N H
N ~ H2N HN ~H
CI ):rlp ~N H
HN ~N
Ni Br -ON N Q-Ri --' N~
C) C- N~ Q-R1 N i Q-R1 CI
14 15 16 IIIb Scheme V above shows a general route for the preparation of the compounds of formula IIib.
Displacement of the bromide with R'-QH to afford compound 15 may be performed in a manner similar to that described in Heterocycles, 51, 5, 1999, 1035-1050. Displacement of the chlorines may be carried out sequentially as described above.
Scheme VI

R
R2, R~ R2 V:~
HN ~ H HN ~'~ j~ ~N H
N H2N 6-1'N
~' N ~
N.N~CI N'N-=cl ~' N.N-Q-R1 17 18 IIIc R2 R2, CI R2 ~dq H
CI V J~1H HN N~N ' N-'N H2N N)N
N'~CI ~- N/LQ R1 N ~=Q-R1 19 20 IIId Scheme VI above shows a general route for the preparation of the compounds of formulae IIIc and IIId.
The displacement with aminopyrazole (or aminoindazole) followed by the displacement with R1-QH may be performed in a manner similar to that described in Indian J. Chem.
Sect. B, 29, 5, 1990, 435-439.
In order that the invention described herein may be more fully understood, the following examples are set forth. It should be understood that these examples are for illustrative purposes only and are not to be construed as limiting this invention in any manner.
BIOLOGICAL TESTING
The activity of the compounds as protein kinase inhibitors may be assayed in vitro, in vivo or in a cell line. in vitro assays include assays that determine inhibition of either the phosphorylation activity or ATPase activity of the activated protein kinase.

Alternate in vitro assays quantitate the ability of the inhibitor to bind to the protein kinase. Inhibitor binding may be measured by radiolabelling the inhibitor prior to binding, isolating the inhibitor/protein kinase complex and determining the amount of radiolabel bound.
Alternatively, inhibitor binding may be determined by running a competition experiment where new inhibitors are incubated with the protein kinase bound to known radioligands.

Ki DETERMINATION FOR THE INHIBITION OF GSK-3 Compounds are screened for their ability to inhibit GSK-3p (AA 1-420) activity using a standard coupled enzyme system (Fox et al. (1998) Protein Sci. 7, 2249). Reactions are carried out in a solution containing 100 mM HEPES (pH 7.5), 10 mM MgC12, 25 mM NaCl, 300 ~a.M NADH, 1 mM DTT and 1.5% DMSO. Final substrate concentrations in the assay are 20 pM ATP (Sigma Chemicals, St Louis, MO) and 300 pM peptide (HSSPHQS(PO3H2)EDEEE, American Peptide, Sunnyvale, CA).

Reactions are carried out at 30 C and 20 nM GSK-3(3.
Final concentrations of the components of the coupled enzyme system are 2.5 mM phosphoenolpyruvate, 300 pM
NADH, 30 - g/ml pyruvate kinase and 10 }ig/ml lactate dehydrogenase.

An assay stock buffer solution is prepared containing all of the reagents listed above with the exception of ATP and the test compound of interest. The assay stock buffer solution (175 }a.l) is incubated in a 96 well plate with 5 ul of the test compound of interest at final concentrations spanning 0.002 *}a.M to 30 }.xM at 30 C

for 10 min. Typically, a 12 point titration is conducted by preparing serial dilutions (from 10 mM compound stocks) with DMSO of the test compounds in daughter plates. The reaction is initiated by the addition of 20 jZl of ATP (final concentration 20 pM). Rates of reaction are obtained using a Molecular Devices Spectramax plate reader (Sunnyvale, CA) over 10 min at 30 C. The Kivalues are determined from the rate data as a function of inhibitor concentration.

Ki DETERMINATION FOR THE INHIBITION OF AURORA-2 Compounds are screened in the following manner for their ability to inhibit Aurora-2 using a standard coupled enzyme assay (Fox et al (1998) Protein Sci 7, 2249).

To an assay stock buffer solution containing 0.1M HEPES 7.5, 10 mM MgC12, 1 mM DTT, 25 mM NaCl, 2.5 mM
phosphoenolpyruvate, 300 mM NADH, 30 mg/ml pyruvate kinase, 10 mg/ml lactate dehydrogenase, 40 mM ATP, and 800 pM peptide (LRRASLG, American Peptide, Sunnyvale, CA) is added a DMSO solution of a compound of the present invention to a final concentration of 30 pM. The resulting mixture is incubated at 30 C for 10 min. The reaction is initiated by the addition of 10 ~a.L of Aurora-2 stock solution to give a final concentration of 70 nM

in the assay. The rates of reaction are obtained by monitoring absorbance at 340 nm over a 5 minute read time at 30 C using a BioRad Ultramark plate reader (Hercules, CA) . The Ki values are determined from the rate data as a function of inhibitor concentration.

While we have presented a number of embodiments of this invention, it is apparent that our basic construction can be altered to provide other embodiments which utilize the compounds and methods of this invention. Therefore, it will be appreciated that the scope of this invention is to be defined by the appended claims rather than by the specific embodiments which have been represented by way of example.

Claims (38)

We claim:
1. A compound of formula II:

or a pharmaceutically acceptable derivative or prodrug thereof, wherein:

Z1 is nitrogen or CR8;
R y is Z-R3' or an optionally substituted group selected from C1-6 aliphatic, C6-10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms, or R y and R8 are taken together to form a fused, optionally substituted 5-7 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur;

Q is selected from -N(R4)-, -O-, -S-, or -CH(R6)-;
R1 is T-(Ring D);

Ring D is a 5-7 membered monocyclic ring or 8-10 membered bicyclic ring selected from aryl, heteroaryl, heterocyclyl or carbocyclyl, said heteroaryl or heterocyclyl ring having 1-4 ring heteroatoms selected from nitrogen, oxygen or sulfur, wherein each substitutable ring carbon of Ring D is independently substituted by oxo, T-R5, or V-Z-R5, and each substitutable ring nitrogen of Ring D is independently substituted by -R4;

T is a valence bond or a C1-4 alkylidene chain, wherein when Q is -CH(R6)-, a methylene unit of said C1-4 alkylidene chain is optionally replaced by -O-, -S-, -N(R4)-, -CO-, -CONH-, -NHCO-, -SO2-, -SO2NH-, -NHSO2-, -CO2-, -OC(O)-, -OC(O)NH-, or -NHCO2-;

Z is a C1-4 alkylidene chain;

L is -O-, -S-, -SO-, -SO2-, -N(R6)SO2-, -SO2N(R6)-, -N(R6)-, -CO-, -CO2-, -N(R6)CO-, -N(R6)C(O)O-, -N(R6)CON(R6)-, -N(R6)SO2N(R6)-, -N(R6)N(R6)-, -C(O)N(R6)-, -OC(O)N(R6)-, -C(R6)2O-, -C(R6)2S-, -C(R6)2SO-, -C(R6)2SO2-, -C(R6)2SO2N(R6)-, -C(R6)2N(R6)-, -C(R6)2N(R6)C(O)-, -C(R6)2N(R6)C(O)O-, -C(R6)=NN(R6)-, -C(R6)=N-O-, -C(R6)2N(R6)N(R6)-, -C(R6)2N(R6)SO2N(R6)-, or -C(R6)2N(R6)CON(R6)-;

R2 and R2' are independently selected from -R, -T-W-R6, or R2 and R2' are taken together with their intervening atoms to form a fused, 5-8 membered, unsaturated or partially unsaturated, ring having 0-3 ring heteroatoms selected from nitrogen, oxygen, or sulfur, wherein each substitutable ring carbon of said fused ring formed by R2 and R2' is independently substituted by halo, oxo, -CN, -NO2, -R7, or -V-R6, and each substitutable ring nitrogen of said ring formed by R2 and R2' is independently substituted by R4;

R3' is selected from -halo, -OR, -C (=O) R, -CO2R, -COCOR, -COCH2COR, -NO2, -CN, -S(O)R, -S(O)2R, -SR, -N(R4)2, -CON(R7)2, -SO2N(R7)2, -OC(=O)R, -N(R7)COR, -N(R7)CO2(C1-6 aliphatic), -N(R4)N(R4)2, -C=NN(R4)2, -C=N-OR, -N(R7)CON(R7)2, -N(R7)SO2N(R7)2, -N(R4)SO2R, -OC(=O)N(R7)2, or an optionally substituted group selected from C1-6 aliphatic, C6-10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;

each R is independently selected from hydrogen or an optionally substituted group selected from C1-6 aliphatic, C6-10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;
each R4 is independently selected from -R7, -COR7, -CO2(optionally substituted C1-6 aliphatic), -CON(R7)2, or -SO2R7;

each R5 is independently selected from -R, halo, -OR, -C(=O)R, -CO2R, -COCOR, -NO2, -CN, -S(O)R, -SO2R, -SR, -N(R4)2, -CON(R4)2, -SO2N(R4)2, -OC(=O)R, -N(R4)COR, -N(R4)CO2(optionally substituted C1-6 aliphatic), -N(R4)N(R4)2, -C=NN(R4)2, -C=N-OR, -N(R4)CON(R4)2, -N(R4)SO2N(R4)2, -N(R4)SO2R, or -OC(=O)N(R4)2;
V is -O-, -S-, -SO-, -SO2-, -N(R6)SO2-, -SO2N(R6)-, -N(R6)-, -CO-, -CO2-, -N(R6)CO-, -N(R6)C(O)O-, -N(R6)CON(R6)-, -N(R6)SO2N(R6)-, -N(R6)N(R6)-, -C(O)N(R6)-, -OC(O)N(R6)-, -C(R6)2O-, -C(R6)2S-, -C(R6)2SO-, -C(R6)2SO2-, -C(R6)2SO2N(R6)-, -C(R6)2N(R6)-, -C(R6)2N(R6)C(O)-, -C(R6)2N(R6)C(O)O-, -C(R6)=NN(R6)-, -C(R6)=N-O-, -C(R6)2N(R6)N(R6)-, -C(R6)2N(R6)SO2N(R6)-, or -C(R6)2N(R6)CON(R6)-;

W is -C(R6)2O-, -C(R6)2S-, -C(R6)2SO-, -C(R6)2SO2-, -C(R6)2SO2N(R6)-, -C(R6)2N(R6)-, -CO-, -CO2-, -C(R6)OC(O)-, -C(R6)OC(O)N(R6)-, -C(R6)2N(R6)CO-, -C(R6)2N(R6)C(O)O-, -C(R6)=NN(R6)-, -C(R6)=N-O-, -C(R6)2N(R6)N(R6)-, -C(R6)2N(R6)SO2N(R6)-, -C(R6)2N(R6)CON(R6)-, or -CON(R6)-;

each R6 is independently selected from hydrogen or an optionally substituted C1-4 aliphatic group, or two R6 groups on the same nitrogen atom are taken together with the nitrogen atom to form a 5-6 membered heterocyclyl or heteroaryl ring;

each R7 is independently selected from hydrogen or an optionally substituted C1-6 aliphatic group, or two R7 on the same nitrogen are taken together with the nitrogen to form a 5-8 membered heterocyclyl or heteroaryl ring; and R8 is selected from -R, halo, -OR, -C(=O)R, -CO2R, -COCOR, -NO2, -CN, -S(O)R, -SO2R, -SR, -N(R4)2, -CON(R4)2, -SO2N(R4)2, -OC(=O)R, -N(R4)COR, -N(R4)CO2(optionally substituted C1-6 aliphatic), -N(R4)N(R4)2, -C=NN(R4)2, -C=N-OR, -N(R4)CON(R4)2, -N(R4)SO2N(R4)2, -N(R4)SO2R, or -OC(=O)N(R4)2; provided that when Q is -NH- and R y and R8 are taken together, R1 is other than pyrazol-3-yl or a pyrazol-3-yl-containing bicyclic ring system, with the proviso the compound is not 4-(3,4-dimethoxyphenethoxy)-N-(3-(furan-2-yl)-1H-pyrazol-5-yl)-6-morpholino-1,3,5-triazin-2-amine, 4-(3,4-dimethoxyphenethoxy)-N-(1-methyl-5-(thiophen-2-yl)-1H-pyrazol-3-yl)-6-morpholino-1,3,5-triazin-2-amine or N-(5-(1H-benzo[d]imidazol-2-yl)-1H-pyrazol-3-yl)-4-(3,4-dimethoxyphenethoxy)-6-morpholino-1,3,5-triazin-2-amine.
2. The compound according to claim 1, wherein Z1 is nitrogen and said compound has one or more features selected from the group consisting of:
(a) R y is Z-R3' or an optionally substituted group selected from C1-6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl, wherein Z is a methylene and R3' is -N(R4)2, -OR, or an optionally substituted group selected from C1-6 aliphatic, C6-10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;
(b) R1 is T-(Ring D), wherein T is a valence bond or a methylene unit;
(c) Ring D is a 5-7 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R or -T-W-R6 and R2' is hydrogen, or R2 and R2' are taken together to form an optionally substituted benzo ring.
3. The compound according to claim 2, wherein:
(a) R y is Z-R3' or an optionally substituted group selected from C1-6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl, wherein Z is a methylene and R3' is -N(R4)2, -OR, or an optionally substituted group selected from C1-6 aliphatic, C6-10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;

(b) R1 is T-(Ring D), wherein T is a valence bond or a methylene unit;

(c) Ring D is a 5-7 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R or -T-W-R6 and R2' is hydrogen, or R2 and R2' are taken together to form an optionally substituted benzo ring.
4. The compound according to claim 2, wherein said compound has one or more features selected from the group consisting of:

(a) R y is an optionally substituted group selected from C1-6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl;
(b) R1 is T-(Ring D), wherein T is a valence bond, and Q is -S-, -NH-, or -CH2-;

(c) Ring D is a 5-6 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R and R2' is hydrogen, wherein R is selected from hydrogen, C1-6 aliphatic, phenyl, a 5-6 membered heteroaryl ring, or a 5-6 membered heterocyclic ring.
5. The compound according to claim 4, wherein:

(a) R y is an optionally substituted group selected from C1-6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl;
(b) R1 is T-(Ring D), wherein T is a valence bond, and Q is -S-, -NH-, or -CH2-;

(c) Ring D is a 5-6 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R and R2' is hydrogen, wherein R is selected from hydrogen, C1-6 aliphatic, phenyl, a 5-6 membered heteroaryl ring, or a 5-6 membered heterocyclic ring.
6. The compound according to claim 4, wherein said compound has one or more features selected from the group consisting of:
(a) R y is selected from 2-pyridyl, 4-pyridyl, pyrrolidinyl, piperidinyl, morpholinyl, piperazinyl, methyl, ethyl, cyclopropyl, isopropyl, t-butyl, alkoxyalkylamino, alkoxyalkyl, alkyl- or dialkylamino, alkyl- or dialkylaminoalkoxy, acetamido, optionally substituted phenyl, or methoxymethyl;

(b) R1 is T-(Ring D), wherein T is a valence bond and Ring D is a 5-6 membered aryl or heteroaryl ring, wherein Ring D is optionally substituted with one to two groups selected from -halo, -CN, -NO2, -N(R4)2, optionally substituted C1-6 aliphatic group, -OR, -CO2R, -CONH(R4), -N(R4)COR, -N(R4)SO2R, -N(R6)COCH2CH2N(R4)2, or -N(R6)COCH2CH2CH2N(R4)2, and Q is -S- or -NH-; and (c) R2 is hydrogen or a substituted or unsubstituted C1-6 aliphatic, and L is -O-, -S-, or -NH-.
7. The compound according to claim 6, wherein:
(a) R y is selected from 2-pyridyl, 4-pyridyl, pyrrolidinyl, piperidinyl, morpholinyl, piperazinyl, methyl, ethyl, cyclopropyl, isopropyl, t-butyl, alkoxyalkylamino, alkoxyalkyl, alkyl- or dialkylamino, alkyl- or dialkylaminoalkoxy, acetamido, optionally substituted phenyl, or methoxymethyl;
(b) R1 is T-(Ring D), wherein T is a valence bond and Ring D is a 5-6 membered aryl or heteroaryl ring, wherein Ring D is optionally substituted with one to two groups selected from -halo, -CN, -NO2, -N(R4)2, optionally substituted C1-6 aliphatic group, -OR, -CO2R, -CONH(R4), -N(R4)COR, -N(R4)SO2R, -N(R6)COCH2CH2N(R4)2, or -N(R6)COCH2CH2CH2N(R4)2, and Q is -S- or -NH- ; and (c) R2 is hydrogen or a substituted or unsubstituted C1-6 aliphatic, and L is -O-, -S-, or -NH-.
8. The compound according to claim 1, wherein Z1 is CR8 and said compound has one or more features selected from the group consisting of:

(a) R y is Z-R3' or an optionally substituted group selected from C1-6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl, wherein Z is a methylene and R3' is -N(R4)2, -OR, or an optionally substituted group selected from C1-6 aliphatic, C6-10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;

(b) R1 is T-(Ring D), wherein T is a valence bond or a methylene unit;

(c) Ring D is a 5-7 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R or -T-W-R6 and R2' is hydrogen, or R2 and R2' are taken together to form an optionally substituted benzo ring.
9. The compound according to claim 8, wherein:
(a) R y is Z-R3' or an optionally substituted group selected from C1-6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl, wherein Z is a methylene and R3' is -N(R4)2, -OR, or an optionally substituted group selected from C1-6 aliphatic, C6-10 aryl, a heteroaryl ring having 5-10 ring atoms, or a heterocyclyl ring having 5-10 ring atoms;

(b) R1 is T-(Ring D), wherein T is a valence bond or a methylene unit;

(c) Ring D is a 5-7 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R or -T-W-R6 and R2' is hydrogen, or R2 and R2' are taken together to form an optionally substituted benzo ring.
10. The compound according to claim 8, wherein said compound has one or more features selected from the group consisting of:
(a) R y is an optionally substituted group selected from C1-6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl;

(b) R1 is T-(Ring D), wherein T is a valence bond, and Q is -5-, -NH-, or -CH2-;

(c) Ring D is a 5-6 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R and R2' is hydrogen, wherein R is selected from hydrogen, C1-6 aliphatic, phenyl, a 5-6 membered heteroaryl ring, or a 5-6 membered heterocyclic ring.
11. The compound according to claim 10, wherein:
(a) R y is an optionally substituted group selected from C1-6 aliphatic, 5-6 membered heterocyclyl, phenyl, or 5-6 membered heteroaryl;

(b) R1 is T-(Ring D), wherein T is a valence bond, and Q is -S-, -NH-, or -CH2-;

(c) Ring D is a 5-6 membered monocyclic or an 8-10 membered bicyclic aryl or heteroaryl ring; and (d) R2 is -R and R2' is hydrogen, wherein R is selected from hydrogen, C1-6 aliphatic, phenyl, a 5-6 membered heteroaryl ring, or a 5-6 membered heterocyclic ring.
12. The compound according to claim 10, wherein said compound has one or more features selected from the group consisting of:

(a) R y is selected from 2-pyridyl, 4-pyridyl, pyrrolidinyl, piperidinyl, morpholinyl, piperazinyl, methyl, ethyl, cyclopropyl, isopropyl, t-butyl, alkoxyalkylamino, alkoxyalkyl, alkyl- or dialkylamino, alkyl- or dialkylaminoalkoxy, acetamido, optionally substituted phenyl, or methoxymethyl, or R y and R8 are taken together to form a 5-6 membered unsaturated or partially unsaturated ring having 0-2 heteroatoms selected from nitrogen, oxygen, or sulfur;

(b) R1 is T-(Ring D), wherein T is a valence bond and Ring D is a 5-6 membered aryl or heteroaryl ring, wherein Ring D is optionally substituted with one to two groups selected from -halo, -CN, -NO2, -N(R4)2, optionally substituted C1-6 aliphatic group, -OR, -CO2R, -CONH(R4), -N(R4)COR, -N(R4)SO2R, -N(R6)COCH2CH2N(R4)2, or -N(R6)COCH2CH2CH2N(R4)2, and Q is -S- or -NH-; and (c) R2 is hydrogen or a substituted or unsubstituted C1-6 aliphatic, and L is -O-, -S-, or -NH-.
13. The compound according to claim 12, wherein:
(a) R y is selected from 2-pyridyl, 4-pyridyl, pyrrolidinyl, piperidinyl, morpholinyl, piperazinyl, methyl, ethyl, cyclopropyl, isopropyl, t-butyl, alkoxyalkylamino, alkoxyalkyl, alkyl- or dialkylamino, alkyl- or dialkylaminoalkoxy, acetamido, optionally substituted phenyl, or methoxymethyl, or R y and R8 are taken together to form a 5-6 membered unsaturated or partially unsaturated ring having 0-2 heteroatoms selected from nitrogen, oxygen, or sulfur;

(b) R1 is T-(Ring D), wherein T is a valence bond and Ring D is a 5-6 membered aryl or heteroaryl ring, wherein Ring D is optionally substituted with one to two groups selected from -halo, -CN, -NO2, -N(R4)2, optionally substituted C1-6 aliphatic group, -OR, -CO2R, -CONH(R4), -N(R4)COR, -N(R4)SO2R, -N(R6)COCH2CH2N(R4)2, or -N(R6)COCH2CH2CH2N(R4)2, and Q is -S- or -NH-; and (c) R2 is hydrogen or a substituted or unsubstituted C1-6 aliphatic, and L is -O-, -S-, or -NH-.
14. A compound selected from the group consisting of:

6-Benzyl-N-(1H-indazol-6-yl)-N'-(5-methyl-1H-pyrazol-3-yl)-[1,3,5]-triazine-2,4-diamine;
6-Methyl-N-(5-methyl-1H-pyrazol-3-yl)-N'-pyridine-3-ylmethyl-[1,3,5]-triazine-2,4-diamine;
N-(4-{4-(5-Methyl-1H-pyrazol-3-ylamino)-6-[(pyridine-3-ylmethyl)-amino]-[1,3,5]-triazine-2-ylamino}-phenyl)-methanesulfonamide;

N-{4-[4-(2-Methoxy-ethylamino)-6-(5-methyl-1H-pyrazol-3-ylamino)-[1,3,5]-triazine-2-ylsulfanyl]-phenyl}-acetamide;

[4-(3-Dimethylamino-propoxy)-6-(thiophen-2-ylmethylsulfanyl)-[1,3,5]-triazine-2-yl]-(5-methyl-1H-pyrazol-3-yl)-amine;

[4-(Benzothiazol-6-ylsulfanyl)-6-phenylsulfanyl-[1,3,5]-triazine-2-yl]-(5-methyl-1H-pyrazol-3-yl)-amine;
N-(5-Cyclopropyl-1H-pyrazol-3-yl)-N'-(1H-indazol-6-yl)-6-(1-methyl-piperidin-4-yloxy)-[1,3,5]-triazine-2,4-diamine;

(4-{4-(5-Cyclopropyl-1H-pyrazol-3-ylamino)-6-[(pyridine-3-ylmethyl)-amino]-[1,3,5]-triazine-2-yloxy}-phenyl)-acetonitrile;

(4-Benzyl-6-methyl-[1,3,5]-triazine-2-yl)-(5-cyclopropyl-1H-pyrazol-3-yl)-amine;
N-(5-Cyclopropyl-1H-pyrazol-3-yl)-N'-(2-methoxyethyl)-6-(thiophen-2-ylmethylsulfanyl)-[1,3,5]-triazine-2,4-diamine;
[4-(Benzothiazol-6-ylsulfanyl)-6-(3-dimethylamino-propoxy)-[1,3,5]-triazin-2-yl]-(5-cyclopropyl-1H-pyrazol-3-yl)-amine;

N-{4-[4-(5-Cyclopropyl-1H-pyrazol-3-ylamino)-6-(1-methyl-piperidin-4-yloxy)-[1,3,5]-triazine-2-yl-sulfanyl]-phenyl}-acetamide;
{4-[4-Benzyl-6-(1H-indazol-3-ylamino)-[1,3,5]-triazine-2-yloxy]-phenyl}-acetonitrile;
(4-Benzyloxy-6-methyl-[1,3,5]-triazine-2-yl)-(1H-indazol-3-yl)-amine;

6-Benzyl-N4-(1H-indazol-6-yl)-N2-(5-methyl-1H-pyrazol-3-yl)-pyrimidine-2,4-diamine;

6-Methyl-N2-(5-methyl-1H-pyrazol-3-yl)-N4-pyridine-3-ylmethyl-pyrimidine-2,4-diamine;
N-(4-{2-(5-Methyl-1H-pyrazol-3-ylamino)-6-[(pyridin-3-ylmethyl)-amino]-pyrimidin-4-ylamino}-phenyl)-methanesulfonamide;

N2-(5-Cyclopropyl-1H-pyrazol-3-yl)-N4-(2-methoxy-ethyl)-6-(thiophen-2-ylmethylsulfanyl)-pyrimidine-2,4-diamine;

[4-(Benzothiazol-6-ylsulfanyl)-6-(3-dimethylamino-propoxy)-pyrimidin-2-yl]-(5-cyclopropyl-1H-pyrazol-3-yl)-amine;

N-(4-[2-(5-Cyclopropyl-1H-pyrazol-3-ylamino)-6-(1-methyl-piperidin-4-yloxy)-pyrimidin-4-ylsulfanyl]-phenyl}-acetamide;

N-{4-[2-(5-Methyl-1H-pyrazol-3-ylamino)-quinazolin-4-ylsulfanyl]-phenyl}-acetamide;
[4-(Benzothiazol-6-ylsulfanyl)-quinazolin-2-yl-(5-methyl-1H-pyrazol-3-yl)-amine;
{4-[2-(5-Cyclopropyl-1H-pyrazol-3-ylamino)-quinazolin-4-yloxy]-phenyl}-acetonitrile;
(5-Cyclopropyl-1H-pyrazol-3-yl)-[4-(3-methoxy-benzyl)-quinazolin-2-yl]-amine;

N2-(1H-Indazol-6-yl)-N4-pyridin-3-ylmethyl-quinazoline-2,4-diamine; and (4-(Benzyloxy-quinazolin-2-yl-(1H-indazol-3-yl)-amine.
15. A composition comprising a compound according to any one of claims 1-14, and a pharmaceutically acceptable carrier.
16. The composition according to claim 15, further comprising an additional therapeutic agent.
17. A method of inhibiting Aurora-2 or glycogen synthase kinase-3 (GSK-3) activity in a biological sample comprising the step of contacting said biological sample with a compound according to any one of claims 1-14.
18. A use for inhibiting Aurora-2 activity in a patient of the composition according to claim 15.
19. A use of the compound according to any one of claims 1 to 14 in the manufacture of a medicament for inhibiting Aurora-2 activity in a patient.
20. A use for inhibiting Aurora-2 activity in a patient of the composition according to claim 16.
21. A use of a therapeutically effective amount of the composition according to claim 15 for treating an Aurora-2-mediated disease in a patient in need of such a treatment.
22. A use of the compound according to any one of claims 1 to 14 in the manufacture of a medicament for treating an Aurora-2-mediated disease in a patient in need of such a treatment.
23. The use according to claim 21 or 22, wherein said disease is selected from colon, breast, stomach, or ovarian cancer.
24. The use according to claim 23, wherein said use further comprises an additional therapeutic agent.
25. The use according to claim 24, wherein said additional therapeutic agent is a chemotherapeutic agent.
26. A use of inhibiting glycogen synthase kinase-3 (GSK-3) activity in a patient of the composition according to claim 15.
27. A use of the compound according to any one of claims 1 to 14 in the manufacture of a medicament for inhibiting glycogen synthase kinase-3 (GSK-3) activity in a patient.
28. A use of inhibiting glycogen synthase kinase-3 (GSK-3) activity in a patient of the composition according to claim 16.
29. A use of a therapeutically effective amount of the composition according to claim 15 for treating a glycogen synthase kinase-3 (GSK-3)-mediated disease in a patient in need of such a treatment.
30. A use of the compound according to any one of claims 1 to 14 in the manufacture of a medicament for treating a glycogen synthase kinase-3 (GSK-3)-mediated disease in a patient in need of such a treatment.
31. The use according to claim 29 or 30, wherein said GSK-3-mediated disease is selected from diabetes, Alzheimer's disease, Huntington's Disease, Parkinson's Disease, AIDS-associated dementia, amyotrophic lateral sclerosis (AML), multiple sclerosis (MS), schizophrenia, cardiomycete hypertrophy, reperfusion/ischemia, or baldness.
32. The use according to claim 31, wherein said GSK-3-mediated disease is diabetes.
33. A use of a therapeutically effective amount of the composition according to claim 15 for enhancing glycogen synthesis or lowering blood levels of glucose in a patient in need thereof.
34. A use of the compound according to any one of claims 1 to 14 in the manufacture of a medicament for enhancing glycogen synthesis or lowering blood levels of glucose in a patient in need thereof.
35. A use of a therapeutically effective amount of the composition according to claim 15 for inhibiting the production of hyperphosphorylated Tau protein in a patient in need thereof.
36. A use of the compound according to any one of claims 1 to 14 in the manufacture of a medicament for inhibiting the production of hyperphosphorylated Tau protein in a patient in need thereof.
37. A use of a therapeutically effective amount of the composition according to claim 15 for inhibiting the phosphorylation of .beta.-catenin in a patient in need thereof.
38. A use of the compound according to any one of claims 1 to 14 in the manufacture of a medicament for inhibiting the phosphorylation of .beta.-catenin in a patient in need thereof.
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Families Citing this family (367)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6982260B1 (en) 1999-11-22 2006-01-03 Warner-Lambert Company Quinazolines and their use for inhibiting cyclin-dependent kinase enzymes
US7473691B2 (en) * 2000-09-15 2009-01-06 Vertex Pharmaceuticals Incorporated Pyrazole compounds useful as protein kinase inhibitors
US6660731B2 (en) * 2000-09-15 2003-12-09 Vertex Pharmaceuticals Incorporated Pyrazole compounds useful as protein kinase inhibitors
EP1317449B1 (en) 2000-09-15 2006-05-31 Vertex Pharmaceuticals Incorporated Pyrazole compounds useful as protein kinase inhibitors
AU2002228783A1 (en) * 2000-12-05 2002-06-18 Vertex Pharmaceuticals Incorporated Inhibitors of c-jun n-terminal kinases (jnk) and other protein kinases
ATE340172T1 (en) * 2000-12-21 2006-10-15 Vertex Pharma PYRAZOLE COMPOUNDS AS PROTEIN KINASE INHIBITORS
PE20021011A1 (en) * 2001-03-23 2003-02-01 Bayer Corp QUINAZOLINE DERIVATIVES AS INHIBITORS OF RHO-KINASE
ATE400274T1 (en) 2001-04-10 2008-07-15 Merck & Co Inc ACT ACTIVITY INHIBITORS
US7105667B2 (en) * 2001-05-01 2006-09-12 Bristol-Myers Squibb Co. Fused heterocyclic compounds and use thereof
US7138404B2 (en) * 2001-05-23 2006-11-21 Hoffmann-La Roche Inc. 4-aminopyrimidine derivatives
US7115617B2 (en) 2001-08-22 2006-10-03 Amgen Inc. Amino-substituted pyrimidinyl derivatives and methods of use
US6939874B2 (en) 2001-08-22 2005-09-06 Amgen Inc. Substituted pyrimidinyl derivatives and methods of use
PL368347A1 (en) 2001-09-26 2005-03-21 Pharmacia Italia S.P.A. Aminoindazole derivatives active as kinase inhibitors, process for their preparation and pharmaceutical compositions containing them
WO2003026664A1 (en) * 2001-09-26 2003-04-03 Bayer Corporation 2-phenylamino-4- (5-pyrazolylamino) -pyramidine derivatives as kinase inhibitors, in particular, src kinase inhibitors
SE0104140D0 (en) * 2001-12-07 2001-12-07 Astrazeneca Ab Novel Compounds
US20030187026A1 (en) 2001-12-13 2003-10-02 Qun Li Kinase inhibitors
AU2002361846A1 (en) * 2001-12-21 2003-07-15 Bayer Pharmaceuticals Corporation Quinazoline and quinoline derivative compounds as inhibitors of prolylpeptidase, inducers of apoptosis and cancer treatment agents
WO2003057202A1 (en) * 2002-01-10 2003-07-17 F. Hoffmann-La Roche Ag Use of a gsk-3beta inhibitor in the manufacture of a medicament for increasing bone formation
TWI329105B (en) 2002-02-01 2010-08-21 Rigel Pharmaceuticals Inc 2,4-pyrimidinediamine compounds and their uses
MXPA04007697A (en) * 2002-02-06 2004-11-10 Vertex Pharma Heteroaryl compounds useful as inhibitors of gsk-3.
EP1485381B8 (en) * 2002-03-15 2010-05-12 Vertex Pharmaceuticals Incorporated Azolylaminoazine as inhibitors of protein kinases
US20040009981A1 (en) 2002-03-15 2004-01-15 David Bebbington Compositions useful as inhibitors of protein kinases
DE60332433D1 (en) 2002-03-15 2010-06-17 Vertex Pharma AZOLYLAMINOAZINE AS PROTEIN KINASE INHIBITOR
WO2003086394A1 (en) 2002-04-08 2003-10-23 Merck & Co., Inc. Inhibitors of akt activity
JPWO2003104230A1 (en) 2002-06-07 2005-10-06 協和醗酵工業株式会社 Bicyclic pyrimidine derivatives
MY141867A (en) 2002-06-20 2010-07-16 Vertex Pharma Substituted pyrimidines useful as protein kinase inhibitors
AU2003261204A1 (en) * 2002-07-23 2004-02-09 Smithkline Beecham Corporation Pyrazolopyrimidines as kinase inhibitors
IL166241A (en) 2002-07-29 2011-12-29 Rigel Pharmaceuticals Inc 2,4-pyrimidinediamine compounds for use in the treatment of autoimmune diseases
SI1532145T1 (en) * 2002-08-02 2007-02-28 Vertex Pharma Pyrazole compositions useful as inhibitors of gsk-3
ES2273043T3 (en) * 2002-08-02 2007-05-01 Vertex Pharmaceuticals Incorporated PIRAZOL COMPOSITIONS USEFUL AS INHIBITORS OF GSK-3.
BR0314098A (en) 2002-09-05 2005-07-19 Aventis Pharma Sa Aminoindazole derivatives as medicines and pharmaceutical compositions containing them
FR2844267B1 (en) * 2002-09-05 2008-02-15 Aventis Pharma Sa NOVEL DERIVATIVES OF AMINOINDAZOLES AS MEDICAMENTS AND PHARMACEUTICAL COMPOSITIONS COMPRISING THEM
AU2003255482A1 (en) * 2002-10-02 2004-04-23 Merck Patent Gmbh Use of 4 amino-quinazolines as anti cancer agents
ES2440217T3 (en) 2002-10-04 2014-01-28 Prana Biotechnology Limited Neurologically active compounds
KR100490893B1 (en) * 2002-10-11 2005-05-23 (주) 비엔씨바이오팜 2-methoxy-1,3,5-triazine derivatives, method for preparing thereof and antiviral pharmaceutical composition comprising the same
GB0226583D0 (en) * 2002-11-14 2002-12-18 Cyclacel Ltd Compounds
FR2847253B1 (en) * 2002-11-19 2007-05-18 Aventis Pharma Sa NOVEL DERIVATIVES OF PYRIDAZINONES AS MEDICAMENTS AND PHARMACEUTICAL COMPOSITIONS COMPRISING THEM
US7309701B2 (en) 2002-11-19 2007-12-18 Sanofi-Aventis Deutschland Gmbh Pyridazinone derivatives as pharmaceuticals and pharmaceutical compositions containing them
US7462613B2 (en) 2002-11-19 2008-12-09 Sanofi-Aventis Deutschland Gmbh Pyridazinone derivatives as pharmaceuticals and pharmaceutical compositions containing them
WO2004048365A1 (en) * 2002-11-21 2004-06-10 Chiron Corporation 2,4,6-trisubstituted pyrimidines as phosphotidylinositol (pi) 3-kinase inhibitors and their use in the treatment of cancer
WO2004072029A2 (en) * 2003-02-06 2004-08-26 Vertex Pharmaceuticals Incorporated Pyrazolopyridazines useful as inhibitors of protein kinases
US7157455B2 (en) * 2003-02-10 2007-01-02 Hoffmann-La Roche Inc. 4-Aminopyrimidine-5-one derivatives
WO2004087679A1 (en) * 2003-04-01 2004-10-14 Aponetics Ag 2, 4, 6-trisubstituted pyrimidine derivatives useful for the treatment of neoplastic and autoimmune diseases
US20060135541A1 (en) * 2003-06-02 2006-06-22 Astrazeneca Ab (3-((Quinazolin-4-yl) amino)-1h-pyrazol-1-yl)acetamide derivatives and related compounds as aurora kinase inhibitors for the treatment of proliferative diseases such as cancer
JP4869068B2 (en) * 2003-06-19 2012-02-01 スミスクライン ビーチャム コーポレーション Compound
US8309562B2 (en) 2003-07-03 2012-11-13 Myrexis, Inc. Compounds and therapeutical use thereof
CN1984660B (en) * 2003-07-03 2010-12-15 美瑞德生物工程公司 4-arylamino-quinazolines as activators of aspartic acid specificity cysteine protease and inducers of apoptosis
TWI372050B (en) * 2003-07-03 2012-09-11 Astex Therapeutics Ltd (morpholin-4-ylmethyl-1h-benzimidazol-2-yl)-1h-pyrazoles
WO2006074147A2 (en) 2005-01-03 2006-07-13 Myriad Genetics, Inc. Nitrogen containing bicyclic compounds and therapeutical use thereof
GB0315966D0 (en) * 2003-07-08 2003-08-13 Cyclacel Ltd Compounds
PL1651612T3 (en) 2003-07-22 2012-09-28 Astex Therapeutics Ltd 3,4-disubstituted 1h-pyrazole compounds and their use as cyclin dependent kinases (cdk) and glycogen synthase kinase-3 (gsk-3) modulators
JP4886511B2 (en) 2003-07-30 2012-02-29 ライジェル ファーマシューティカルズ, インコーポレイテッド Method for treating or preventing autoimmune diseases with 2,4-pyrimidinediamine compounds
CA2533474A1 (en) * 2003-07-30 2005-02-10 Shudong Wang 2-aminophenyl-4-phenylpyrimidines as kinase inhibitors
US20050221357A1 (en) * 2003-09-19 2005-10-06 Mark Shannon Normalization of gene expression data
US20060024690A1 (en) * 2003-09-19 2006-02-02 Kao H P Normalization of data using controls
US7417726B2 (en) * 2003-09-19 2008-08-26 Applied Biosystems Inc. Normalization of data using controls
WO2005030131A2 (en) * 2003-09-23 2005-04-07 Replidyne, Inc Bis-quinazoline compounds for the treatment of bacterial infections
CA2542522A1 (en) 2003-10-17 2005-05-06 Astrazeneca Ab 4-(pyrazol-3-ylamino) pyrimidine derivatives for use in the treatment of cancer
AU2004297235A1 (en) * 2003-12-04 2005-06-23 Vertex Pharmaceuticals Incorporated Quinoxalines useful as inhibitors of protein kinases
WO2005056552A1 (en) * 2003-12-09 2005-06-23 Vertex Pharmaceuticals Incorporated Naphthyridine derivatives and their use as modulators of muscarinic receptors
US7572914B2 (en) * 2003-12-19 2009-08-11 Takeda Pharmaceutical Company Limited Kinase inhibitors
TW200530235A (en) 2003-12-24 2005-09-16 Renovis Inc Bicycloheteroarylamine compounds as ion channel ligands and uses thereof
AU2005212438A1 (en) * 2004-02-11 2005-08-25 Amgen Inc. Vanilloid receptor ligands and their use in treatments
EP1723427A2 (en) * 2004-02-26 2006-11-22 Bayer HealthCare AG Diagnostics and therapeutics for diseases associated with glycogen synthase kinase 3 beta (gsk3b)
US7786165B2 (en) * 2004-03-15 2010-08-31 Takeda Pharmaceutical Company Limited Aminophenylpropanoic acid derivative
EP2522670A1 (en) * 2004-04-07 2012-11-14 Takeda Pharmaceutical Company Limited Heterocyclic CRF receptor antagonists
JP2007533717A (en) * 2004-04-21 2007-11-22 アストラゼネカ アクチボラグ Compound
US20050250829A1 (en) * 2004-04-23 2005-11-10 Takeda San Diego, Inc. Kinase inhibitors
MXPA06012613A (en) * 2004-05-07 2007-01-31 Amgen Inc Protein kinase modulators and method of use.
US7793137B2 (en) 2004-10-07 2010-09-07 Cisco Technology, Inc. Redundant power and data in a wired data telecommunincations network
SI1771450T1 (en) * 2004-05-14 2008-06-30 Millennium Pharm Inc Compounds and methods for inhibiting mitotic progression by inhibition of aurora kinase
AU2012200416B2 (en) * 2004-05-14 2014-07-31 Millennium Pharmaceuticals, Inc. "Compounds and methods for inhibiting mitotic progression by inhibition of Aurora kinase"
NZ551583A (en) * 2004-05-14 2009-05-31 Vertex Pharma Prodrugs of pyrrolylpyrimidine ERK protein kinase inhibitors
DE602005003951T4 (en) * 2004-05-14 2012-10-11 Millennium Pharmaceuticals, Inc. COMPOUNDS AND METHOD FOR INHIBITING MITOTIC PROGRESSION BY INHIBITING AURORACINASE
US20050255485A1 (en) * 2004-05-14 2005-11-17 Livak Kenneth J Detection of gene duplications
US20080009531A1 (en) * 2004-05-20 2008-01-10 Bayer Pharmaceuticals Corporation 5-Anilino-4-Heteroarylpyrazole Derivatives Useful for the Treatment of Diabetes
KR20070034519A (en) * 2004-05-27 2007-03-28 이 아이 듀폰 디 네모아 앤드 캄파니 Developer for photosensitive polymer protective layer
EP1765325A4 (en) * 2004-07-01 2009-08-12 Synta Pharmaceuticals Corp 2-substituted heteroaryl compounds
JP2008505907A (en) * 2004-07-06 2008-02-28 アンジオン バイオメディカ コーポレイション Quinazoline modulators that modulate hepatocyte growth factor and c-met activity for cancer therapy
WO2006023931A2 (en) 2004-08-18 2006-03-02 Takeda San Diego, Inc. Kinase inhibitors
TW200624431A (en) 2004-09-24 2006-07-16 Hoffmann La Roche Phthalazinone derivatives, their manufacture and use as pharmaceutical agents
US7285569B2 (en) 2004-09-24 2007-10-23 Hoff Hoffmann-La Roche Inc. Tricycles, their manufacture and use as pharmaceutical agents
EP1797048B1 (en) * 2004-09-30 2011-08-17 Tibotec Pharmaceuticals Hiv inhibiting 5-carbo- or heterocyclic substituted pyrimidines
TW200626574A (en) * 2004-09-30 2006-08-01 Tibotec Pharm Ltd HIV inhibiting 5-heterocyclyl pyrimidines
BRPI0516748B8 (en) * 2004-09-30 2021-05-25 Janssen Sciences Ireland Uc 5-substituted hiv inhibitory pyrimidines and pharmaceutical composition comprising them
WO2006044687A2 (en) 2004-10-15 2006-04-27 Takeda San Diego, Inc. Kinase inhibitors
US7491720B2 (en) 2004-10-29 2009-02-17 Banyu Pharmaceutical Co., Ltd. Aminopyridine derivatives having Aurora A selective inhibitory action
KR20070072562A (en) * 2004-10-29 2007-07-04 반유 세이야꾸 가부시끼가이샤 Novel aminopyridine derivatives having aurora a selective inhibitory action
EP1809290A2 (en) 2004-11-03 2007-07-25 Vertex Pharmaceuticals Incorporated Pyrimidine derivatives as ion channel modulators and methods of use
AU2005306458B2 (en) * 2004-11-17 2011-02-17 Miikana Therapeutics, Inc. Kinase inhibitors
ES2380550T3 (en) 2004-11-24 2012-05-16 Rigel Pharmaceuticals, Inc. Spiro-2,4-pyrimidinediamine compounds and their uses
US20060128710A1 (en) * 2004-12-09 2006-06-15 Chih-Hung Lee Antagonists to the vanilloid receptor subtype 1 (VR1) and uses thereof
JP2008525422A (en) * 2004-12-23 2008-07-17 ファイザー・プロダクツ・インク Heteroaromatic derivatives useful as anticancer agents
ATE519759T1 (en) 2004-12-30 2011-08-15 Exelixis Inc PYRIMIDINE DERIVATIVES AS KINASE MODULATORS AND METHODS OF APPLICATION
US8110573B2 (en) * 2004-12-30 2012-02-07 Astex Therapeutics Limited Pyrazole compounds that modulate the activity of CDK, GSK and aurora kinases
US8258145B2 (en) 2005-01-03 2012-09-04 Myrexis, Inc. Method of treating brain cancer
US7449458B2 (en) 2005-01-19 2008-11-11 Rigel Pharmaceuticals, Inc. Prodrugs of 2,4-pyrimidinediamine compounds and their uses
US8404718B2 (en) 2005-01-21 2013-03-26 Astex Therapeutics Limited Combinations of pyrazole kinase inhibitors
AR054425A1 (en) 2005-01-21 2007-06-27 Astex Therapeutics Ltd PIPERIDIN ADDITION SALTS 4-IL-ACID AMID 4- (2,6-DICLORO-BENZOILAMINO) 1H-PIRAZOL-3-CARBOXILICO.
US7528132B2 (en) * 2005-01-26 2009-05-05 Schering Corporation Kinase inhibitors
AU2006210710B2 (en) * 2005-02-04 2009-12-10 Astrazeneca Ab Pyrazolylaminopyridine derivatives useful as kinase inhibitors
DK1853588T3 (en) * 2005-02-16 2008-09-15 Astrazeneca Ab Chemical compounds
ES2347172T3 (en) * 2005-02-16 2010-10-26 Astrazeneca Ab CHEMICAL COMPOUNDS.
US20080188483A1 (en) * 2005-03-15 2008-08-07 Irm Llc Compounds and Compositions as Protein Kinase Inhibitors
US20080161278A1 (en) * 2005-03-23 2008-07-03 Astrazeneca Ab 2-Azetidinyl-4-(1H-Pyrazol-3-Ylamino) Pyrimidines as Inhibitors of Insulin-Like Growth Factor-1 Receptor Activity
US7297700B2 (en) 2005-03-24 2007-11-20 Renovis, Inc. Bicycloheteroaryl compounds as P2X7 modulators and uses thereof
DE602006002271D1 (en) * 2005-04-05 2008-09-25 Astrazeneca Ab Pyrimidine derivatives for use as anticancer agents
GB0507347D0 (en) * 2005-04-12 2005-05-18 Astrazeneca Ab Chemical compounds
KR20070113286A (en) 2005-04-14 2007-11-28 에프. 호프만-라 로슈 아게 Aminopyrazole derivatives, their manufacture and use as pharmaceutical agents
WO2006115452A1 (en) * 2005-04-27 2006-11-02 Astrazeneca Ab Use of pyrazolyl-pyrimidine derivatives in the treatment of pain
CN101166732B (en) * 2005-04-28 2013-04-17 田边三菱制药株式会社 Cyanopyridine derivative and use thereof as medicine
WO2006119504A2 (en) 2005-05-04 2006-11-09 Renovis, Inc. Fused heterocyclic compounds, and compositions and uses thereof
WO2006117212A2 (en) 2005-05-04 2006-11-09 Develogen Aktiengesellschaft Use of gsk-3 inhibitors for preventing and treating pancreatic autoimmune disorders
JP2008540391A (en) * 2005-05-05 2008-11-20 アストラゼネカ アクチボラグ Pyrazolylamino substituted pyrimidines and their use in the treatment of cancer
AU2006248780B2 (en) * 2005-05-16 2010-06-03 Astrazeneca Ab Pyrazolylaminopyrimidine derivatives useful as tyrosine kinase inhibitors
WO2006133426A2 (en) 2005-06-08 2006-12-14 Rigel Pharmaceuticals, Inc. Compositions and methods for inhibition of the jak pathway
US20070203161A1 (en) 2006-02-24 2007-08-30 Rigel Pharmaceuticals, Inc. Compositions and methods for inhibition of the jak pathway
CA2612227C (en) 2005-06-14 2014-04-22 Taigen Biotechnology Co., Ltd. Pyrimidine compounds
US8193206B2 (en) 2005-06-14 2012-06-05 Taigen Biotechnology Co., Ltd. Pyrimidine compounds
EP1746096A1 (en) 2005-07-15 2007-01-24 4Sc Ag 2-Arylbenzothiazole analogues and uses thereof in the treatment of cancer
CA2619517A1 (en) * 2005-08-18 2007-02-22 Michael Mortimore Pyrazine kinase inhibitors
WO2007023382A2 (en) * 2005-08-25 2007-03-01 Pfizer Inc. Pyrimidine amino pyrazole compounds, potent kinase inhibitors
EP2258358A3 (en) 2005-08-26 2011-09-07 Braincells, Inc. Neurogenesis with acetylcholinesterase inhibitor
EP1928437A2 (en) 2005-08-26 2008-06-11 Braincells, Inc. Neurogenesis by muscarinic receptor modulation
ES2535854T3 (en) * 2005-09-30 2015-05-18 Miikana Therapeutics, Inc. Substituted Pyrazole Compounds
UA96427C2 (en) * 2005-09-30 2011-11-10 Мийкана Терапьютикс, Инк. Substituted pyrazole compounds
US8119655B2 (en) 2005-10-07 2012-02-21 Takeda Pharmaceutical Company Limited Kinase inhibitors
JP2009512711A (en) 2005-10-21 2009-03-26 ブレインセルス,インコーポレイティド Regulation of neurogenesis by PDE inhibition
EP1945631B8 (en) 2005-10-28 2013-01-02 AstraZeneca AB 4- (3-aminopyrazole) pyrimidine derivatives for use as tyrosine kinase inhibitors in the treatment of cancer
EP1942879A1 (en) 2005-10-31 2008-07-16 Braincells, Inc. Gaba receptor mediated modulation of neurogenesis
US8933077B2 (en) * 2005-11-01 2015-01-13 Array Biopharma Inc. Glucokinase activators
TW200734327A (en) * 2005-11-03 2007-09-16 Vertex Pharma Aminopyrimidines useful as kinase inhibitors
CN101360740A (en) * 2005-11-16 2009-02-04 沃泰克斯药物股份有限公司 Aminopyrimidines useful as kinase inhibitors
US8546404B2 (en) 2005-12-13 2013-10-01 Merck Sharp & Dohme Compounds that are ERK inhibitors
US7572809B2 (en) * 2005-12-19 2009-08-11 Hoffmann-La Roche Inc. Isoquinoline aminopyrazole derivatives
US8399442B2 (en) 2005-12-30 2013-03-19 Astex Therapeutics Limited Pharmaceutical compounds
WO2007081978A2 (en) * 2006-01-11 2007-07-19 Angion Biomedica Corporation Modulators of hepatocyte growth factor / c-met activity
JO2660B1 (en) 2006-01-20 2012-06-17 نوفارتيس ايه جي PI-3 Kinase inhibitors and methods of their use
ATE485268T1 (en) * 2006-02-16 2010-11-15 Schering Corp PYRROLIDINE DERIVATIVES AS ERK INHIBITORS
US20100216734A1 (en) 2006-03-08 2010-08-26 Braincells, Inc. Modulation of neurogenesis by nootropic agents
PE20080145A1 (en) 2006-03-21 2008-02-11 Janssen Pharmaceutica Nv TETRAHYDRO-PYRIMIDOAZEPINE AS MODULATORS OF TRPV1
DK2004632T3 (en) 2006-03-30 2014-06-16 Janssen R & D Ireland HIV INHIBITIVE 5-AMIDOSUBSTITUTED PYRIMIDINES
JP5255559B2 (en) * 2006-03-31 2013-08-07 アボット・ラボラトリーズ Indazole compound
WO2007116029A2 (en) 2006-04-07 2007-10-18 Novartis Ag Combination comprising a) a pyrimidylaminobenzamide compound, and b) a thr315lle kinase inhibitor
KR20080109096A (en) 2006-04-14 2008-12-16 프라나 바이오테크놀로지 리미티드 Method of treatment of age-related macular degeneration(amd)
ES2433199T3 (en) * 2006-04-27 2013-12-09 Msd K.K. Aminopyrimidine derivatives that have selective Aurora-A inhibitory activity
CA2651813A1 (en) 2006-05-09 2007-11-22 Braincells, Inc. Neurogenesis by modulating angiotensin
EP2026813A2 (en) 2006-05-09 2009-02-25 Braincells, Inc. 5 ht receptor mediated neurogenesis
CL2007001873A1 (en) 2006-06-27 2008-01-04 Takeda Pharmaceutical ((3s)) - 6 - ((¨2,6-dimethyl-4- (3- (methylsulfonyl) -propoxy) biphenyl-3-yl) methoxy-2,3-dihydro-1-benzofuran-3-yl acid ) acetic or salt thereof
JP2009542608A (en) * 2006-06-29 2009-12-03 アステックス・セラピューティクス・リミテッド Pharmaceutical combination
JP5523829B2 (en) 2006-06-29 2014-06-18 アステックス、セラピューティックス、リミテッド Compound drug
WO2008001886A1 (en) * 2006-06-30 2008-01-03 Kyowa Hakko Kirin Co., Ltd. Aurora inhibitor
JP2009541480A (en) * 2006-06-30 2009-11-26 アストラゼネカ アクチボラグ Pyrimidine derivatives useful in the treatment of cancer
AU2007269540B2 (en) 2006-07-05 2013-06-27 Exelixis, Inc. Methods of using IGF1R and Abl kinase modulators
RU2009108280A (en) 2006-08-08 2010-09-20 Санофи-Авентис (Fr) Arylamino-arylalkyl-substituted imidazolidine-2,4-dione, methods for their preparation containing these compounds and their use
WO2008021038A2 (en) * 2006-08-09 2008-02-21 Millennium Pharmaceuticals, Inc. Pyridobenzazepine compounds and methods for inhibiting mitotic progression
US7832809B2 (en) * 2006-08-11 2010-11-16 Schlumberger Technology Corporation Degradation assembly shield
JP2008081492A (en) 2006-08-31 2008-04-10 Banyu Pharmaceut Co Ltd New aminopyridine derivative having aurora a selective inhibitory action
BRPI0716604A2 (en) * 2006-09-08 2013-04-09 Braincells Inc combinations containing a 4-acylaminopyridine derivative
US20100184806A1 (en) 2006-09-19 2010-07-22 Braincells, Inc. Modulation of neurogenesis by ppar agents
SG175609A1 (en) 2006-10-09 2011-11-28 Takeda Pharmaceutical Kinase inhibitors
JP2010505961A (en) * 2006-10-09 2010-02-25 タケダ サン ディエゴ インコーポレイテッド Kinase inhibitor
US8883790B2 (en) 2006-10-12 2014-11-11 Astex Therapeutics Limited Pharmaceutical combinations
US8916552B2 (en) 2006-10-12 2014-12-23 Astex Therapeutics Limited Pharmaceutical combinations
WO2008053812A1 (en) * 2006-10-27 2008-05-08 Mitsubishi Tanabe Pharma Corporation Cyanopyridine derivative and medicinal use thereof
DE602007004750D1 (en) 2006-11-02 2010-03-25 Vertex Pharma AS INHIBITORS OF PROTEIN KINASES SUITABLE AMINOPYRIDINES AND AMINOPYRIMIDINES
CL2007003244A1 (en) 2006-11-16 2008-04-04 Millennium Pharm Inc COMPOUNDS DERIVED FROM PIRIMIDO [5,4-D] [2] BENZAZEPINA; PHARMACEUTICAL COMPOSITION THAT INCLUDES SUCH COMPOUND; AND USE OF THE COMPOUND FOR THE TREATMENT OF CANCER.
DE602007007985D1 (en) * 2006-12-19 2010-09-02 Vertex Pharma AS INHIBITORS OF PROTEIN KINASES SUITABLE AMINO-PRIMIDINES
AU2007341227C1 (en) * 2006-12-29 2013-08-29 Janssen Sciences Ireland Uc HIV inhibiting 6-substituted pyrimidines
MX2009007006A (en) * 2006-12-29 2009-07-09 Tibotec Pharm Ltd Hiv inhibiting 5,6-substituted pyrimidines.
EA200901065A1 (en) 2007-02-06 2010-02-26 Новартис Аг PI 3-KINASE INHIBITORS AND METHODS OF THEIR APPLICATION
EP2133095A4 (en) 2007-03-05 2012-09-26 Kyowa Hakko Kirin Co Ltd Pharmaceutical composition
CA2680029A1 (en) * 2007-03-09 2008-09-18 Vertex Pharmaceuticals Incorporated Aminopyrimidines useful as inhibitors of protein kinases
AU2008226457B2 (en) * 2007-03-09 2014-03-20 Vertex Pharmaceuticals Incorporated Aminopyrimidines useful as inhibitors of protein kinases
NZ579483A (en) 2007-03-09 2012-07-27 Vertex Pharma Aminopyridines useful as inhibitors of protein kinases
MX2009010037A (en) * 2007-03-20 2009-11-05 Vertex Pharma Aminopyrimidines useful as kinase inhibitors.
WO2008117050A1 (en) * 2007-03-27 2008-10-02 Astrazeneca Ab Pyrazolyl-amino-substituted pyrazines and their use for the treatment of cancer
CA2683785A1 (en) 2007-04-13 2008-10-23 Vertex Pharmaceuticals Incorporated Aminopyrimidines useful as kinase inhibitors
CA2684447C (en) 2007-04-18 2012-01-24 Pfizer Products Inc. Sulfonyl amide derivatives for the treatment of abnormal cell growth
WO2008129255A1 (en) * 2007-04-18 2008-10-30 Astrazeneca Ab 5-aminopyrazol-3-yl-3h-imidazo [4,5-b] pyridine derivatives and their use for the treatment of cancer
MX2009011810A (en) 2007-05-02 2010-01-14 Vertex Pharma Thiazoles and pyrazoles useful as kinase inhibitors.
AU2008247594A1 (en) * 2007-05-02 2008-11-13 Vertex Pharmaceuticals Incorporated Aminopyrimidines useful as kinase inhibitors
MX2009011811A (en) * 2007-05-02 2010-01-14 Vertex Pharma Aminopyrimidines useful as kinase inhibitors.
UA99459C2 (en) * 2007-05-04 2012-08-27 Астразенека Аб 9-(pyrazol-3-yl)- 9h-purine-2-amine and 3-(pyraz0l-3-yl)-3h-imidazo[4,5-b]pyridin-5-amine derivatives and their use for the treatment of cancer
JP2010526048A (en) * 2007-05-04 2010-07-29 アストラゼネカ アクチボラグ Amino-thiazolyl-pyrimidine derivatives and use of the derivatives for the treatment of cancer
CA2687966A1 (en) * 2007-05-24 2008-12-04 Vertex Pharmaceuticals Incorporated Thiazoles and pyrazoles useful as kinase inhibitors
KR101294731B1 (en) * 2007-06-04 2013-08-16 삼성디스플레이 주식회사 Array substrate, display panel having the array substrate and method of manufacturing the array substrate
WO2008154026A1 (en) * 2007-06-11 2008-12-18 Miikana Therapeutics, Inc. Substituted pyrazole compounds
JP2010532756A (en) * 2007-07-06 2010-10-14 オーエスアイ・ファーマスーティカルズ・インコーポレーテッド Combination anti-cancer therapy comprising inhibitors of both mTORC1 and mTORC2
WO2009007753A2 (en) * 2007-07-11 2009-01-15 Astrazeneca Ab 4- (3-aminopyrazole) -pyrimidine derivativee and their use as tyrosine kinase inhibitors for the treatment of cancer
KR20100038108A (en) * 2007-07-25 2010-04-12 브리스톨-마이어스 스큅 컴퍼니 Triazine kinase inhibitors
WO2009013545A2 (en) * 2007-07-26 2009-01-29 Astrazeneca Ab Chemical compounds
CA2694499A1 (en) * 2007-07-31 2009-02-05 Vertex Pharmaceuticals Incorporated Process for preparing 5-fluoro-1h-pyrazolo [3, 4-b] pyridin-3-amine and derivatives thereof
TW200906818A (en) * 2007-07-31 2009-02-16 Astrazeneca Ab Chemical compounds
EP2025674A1 (en) 2007-08-15 2009-02-18 sanofi-aventis Substituted tetra hydro naphthalines, method for their manufacture and their use as drugs
WO2009027736A2 (en) * 2007-08-27 2009-03-05 Astrazeneca Ab 2,4 diaminopyrimid'lnes for the treatment of myeloproliferative disorders and cancer
MX2010002772A (en) 2007-09-21 2010-03-31 Array Biopharma Inc Pyridin-2 -yl-amino-i, 2, 4 -thiadiazole derivatives as glucokinase activators for the treatment of diabetes mellitus.
PT2214487E (en) 2007-10-11 2014-02-20 Glaxosmithkline Llc Novel seh inhibitors and their use
EP2224929B1 (en) 2007-12-17 2016-05-04 Janssen Pharmaceutica, N.V. Imidazolo-, oxazolo-, and thiazolopyrimidine modulators of trpv1
US20090270418A1 (en) * 2008-01-09 2009-10-29 Marianne Sloss Pyrazole pyrazine amine compounds as kinase inhibitors, compositions thereof and methods of treatment therewith
WO2009097995A1 (en) * 2008-02-07 2009-08-13 Sanofi-Aventis Novel phenyl-substituted imidazolidines, method for the production thereof, medicaments containing said compounds and use thereof
EP2260031B1 (en) 2008-02-21 2015-10-07 Merck Sharp & Dohme Corp. Compounds that are erk inhibitors
AU2009216062B2 (en) * 2008-02-22 2013-02-07 Msd K.K. Novel aminopyridine derivatives having Aurora A selective inhibitory action
WO2009131598A1 (en) 2008-04-21 2009-10-29 Taigen Biotechnology Co., Ltd. Heterocyclic compounds
WO2010011411A1 (en) 2008-05-27 2010-01-28 The Trustees Of Columbia University In The City Of New York Systems, methods, and media for detecting network anomalies
JP2011522870A (en) * 2008-06-11 2011-08-04 アストラゼネカ アクチボラグ Tricyclic 2,4-diamino-L, 3,5-triazine derivatives useful for the treatment of cancer and myeloproliferative disorders
AR072707A1 (en) 2008-07-09 2010-09-15 Sanofi Aventis HETEROCICLIC COMPOUNDS, PROCESSES FOR THEIR PREPARATION, DRUGS THAT UNDERSTAND THESE COMPOUNDS AND THE USE OF THEM
US8163763B2 (en) * 2008-07-31 2012-04-24 Genentech, Inc. Pyrimidine compounds, compositions and methods of use
MX2011002312A (en) * 2008-09-03 2011-04-26 Vertex Pharma Co-crystals and pharmaceutical formulations comprising the same.
CN105574346A (en) * 2008-09-05 2016-05-11 新基阿维罗米克斯研究公司 Design method and detection method for polypeptide conjugate and irreversible inhibitor
CN102264728B (en) * 2008-09-15 2015-02-04 加利福尼亚大学董事会 Methods and compositions for modulating IRE1, SRC, and ABL activity
BRPI0919488A2 (en) * 2008-09-30 2015-12-01 Astrazeneca Ab compound, use of a compound, method for treating cancer in a warm-blooded animal, pharmaceutical composition, and process for preparing a compound
US8759362B2 (en) * 2008-10-24 2014-06-24 Purdue Pharma L.P. Bicycloheteroaryl compounds and their use as TRPV1 ligands
WO2010056758A1 (en) * 2008-11-12 2010-05-20 Yangbo Feng Quinazoline derivatives as kinase inhibitors
TW201021855A (en) 2008-11-13 2010-06-16 Taigen Biotechnology Co Ltd Lyophilization formulation
WO2010068601A1 (en) 2008-12-08 2010-06-17 Sanofi-Aventis A crystalline heteroaromatic fluoroglycoside hydrate, processes for making, methods of use and pharmaceutical compositions thereof
PA8851101A1 (en) 2008-12-16 2010-07-27 Lilly Co Eli AMINO PIRAZOL COMPOUND
JP5490137B2 (en) * 2008-12-19 2014-05-14 ネルビアーノ・メデイカル・サイエンシーズ・エツセ・エルレ・エルレ Bicyclic pyrazoles as protein kinase inhibitors
JP5738196B2 (en) 2008-12-22 2015-06-17 ミレニアム ファーマシューティカルズ, インコーポレイテッドMillennium Pharmaceuticals, Inc. Combination of Aurora kinase inhibitor and anti-CD20 antibody
US8809343B2 (en) 2008-12-26 2014-08-19 Fudan University Pyrimidine derivative, preparation method and use thereof
US20100216805A1 (en) 2009-02-25 2010-08-26 Braincells, Inc. Modulation of neurogenesis using d-cycloserine combinations
MY159327A (en) * 2009-02-27 2016-12-25 Ambit Biosciences Corp Jak kinase modulating quinazoline derivatives and methods of use thereof
CA2660962A1 (en) 2009-03-31 2010-09-30 Astellas Pharma Inc. Novel pharmaceutical composition for treatment of schizophrenia
US8399663B2 (en) 2009-04-03 2013-03-19 Astellas Pharma Inc. Salt of 1,3,5-triazine-2,4,6-triamine derivative
JO3635B1 (en) 2009-05-18 2020-08-27 Millennium Pharm Inc Solid pharmaceutical compositions and processes for their production
BRPI1010887A2 (en) * 2009-06-08 2016-12-27 California Capital Equity Llc triazine derivatives and their therapeutic applications.
BRPI1010881A2 (en) * 2009-06-08 2016-05-31 California Capital Equity Llc triazine derivatives and their therapeutic applications.
JP2012529517A (en) * 2009-06-09 2012-11-22 アブラクシス バイオサイエンス リミテッド ライアビリティー カンパニー Benzyl-substituted triazine derivatives and their therapeutic applications
WO2010144550A1 (en) * 2009-06-09 2010-12-16 Abraxis Bioscience, Llc Triazine derivatives and their therapeutical applications
WO2010144522A1 (en) * 2009-06-09 2010-12-16 Abraxis Bioscience, Llc Ureidophenyl substituted triazine derivatives and their therapeutical applications
JP2012529519A (en) * 2009-06-09 2012-11-22 アブラクシス バイオサイエンス リミテッド ライアビリティー カンパニー Styryl-triazine derivatives and their therapeutic applications
WO2010146133A1 (en) * 2009-06-18 2010-12-23 Cellzome Limited Heterocyclylaminopyrimidines as kinase inhibitors
US8637525B2 (en) 2009-07-31 2014-01-28 Bristol-Myers Squibb Company Compounds for the reduction of beta-amyloid production
TWI468402B (en) * 2009-07-31 2015-01-11 必治妥美雅史谷比公司 Compounds for the reduction of β-amyloid production
US8785608B2 (en) 2009-08-26 2014-07-22 Sanofi Crystalline heteroaromatic fluoroglycoside hydrates, pharmaceuticals comprising these compounds and their use
RU2012114902A (en) 2009-09-16 2013-10-27 Авила Терапьютикс, Инк. CONJUGATES AND PROTEINKINASE INHIBITORS
KR102009224B1 (en) * 2009-11-13 2019-08-09 인튜어티브 서지컬 오퍼레이션즈 인코포레이티드 End effector with redundant closing mechanisms
CA2784807C (en) 2009-12-29 2021-12-14 Dana-Farber Cancer Institute, Inc. Type ii raf kinase inhibitors
WO2011082285A1 (en) 2009-12-30 2011-07-07 Avila Therapeutics, Inc. Ligand-directed covalent modification of protein
SA111320200B1 (en) * 2010-02-17 2014-02-16 ديبيوفارم اس ايه Bicyclic Compounds and their Uses as Dual C-SRC / JAK Inhibitors
WO2011103089A1 (en) 2010-02-19 2011-08-25 Millennium Pharmaceuticals, Inc. Crystalline forms of sodium 4-{[9-chloro-7-(2-fluoro-6--methoxyphenyl)-5h -pyrimido[5,4-d][2]benzazepin-2yl]amino}-2-methoxybenzoate
WO2011107494A1 (en) 2010-03-03 2011-09-09 Sanofi Novel aromatic glycoside derivatives, medicaments containing said compounds, and the use thereof
EP2571359A4 (en) * 2010-05-20 2013-10-23 Merck Sharp & Dohme Novel prolylcarboxypeptidase inhibitors
CA2798578C (en) 2010-05-21 2015-12-29 Chemilia Ab Novel pyrimidine derivatives
US8354420B2 (en) 2010-06-04 2013-01-15 Genentech, Inc. Aminopyrimidine derivatives as LRRK2 inhibitors
EP2582709B1 (en) 2010-06-18 2018-01-24 Sanofi Azolopyridin-3-one derivatives as inhibitors of lipases and phospholipases
US8530413B2 (en) 2010-06-21 2013-09-10 Sanofi Heterocyclically substituted methoxyphenyl derivatives with an oxo group, processes for preparation thereof and use thereof as medicaments
TW201215387A (en) 2010-07-05 2012-04-16 Sanofi Aventis Spirocyclically substituted 1,3-propane dioxide derivatives, processes for preparation thereof and use thereof as a medicament
TW201221505A (en) 2010-07-05 2012-06-01 Sanofi Sa Aryloxyalkylene-substituted hydroxyphenylhexynoic acids, process for preparation thereof and use thereof as a medicament
TW201215388A (en) 2010-07-05 2012-04-16 Sanofi Sa (2-aryloxyacetylamino)phenylpropionic acid derivatives, processes for preparation thereof and use thereof as medicaments
CA2806008C (en) 2010-07-29 2019-07-09 Oryzon Genomics S.A. Arylcyclopropylamine based demethylase inhibitors of lsd1 and their medical use
EP2611794A1 (en) * 2010-09-01 2013-07-10 Ambit Biosciences Corporation 4-azolylaminoquinazoline derivatives and methods of use thereof
ES2619850T3 (en) * 2010-09-01 2017-06-27 Ambit Biosciences Corporation Hydrobromide salts of a pyrazolilaminoquinazoline
WO2012030918A1 (en) * 2010-09-01 2012-03-08 Ambit Biosciences Corporation Adenosine a3 receptor modulating compounds and methods of use thereof
JP5901634B2 (en) * 2010-09-01 2016-04-13 アムビト ビオスシエンセス コルポラチオン Quinazoline compounds and methods of use thereof
WO2012030944A2 (en) * 2010-09-01 2012-03-08 Ambit Biosciences Corporation Quinoline and isoquinoline compounds and methods of use thereof
AU2011296078B2 (en) * 2010-09-01 2015-06-18 Ambit Biosciences Corporation An optically active pyrazolylaminoquinazoline, and pharmaceutical compositions and methods of use thereof
EP2611793A1 (en) * 2010-09-01 2013-07-10 Ambit Biosciences Corporation 2-cycloquinazoline derivatives and methods of use thereof
WO2012059932A1 (en) 2010-11-01 2012-05-10 Aurigene Discovery Technologies Limited 2, 4 -diaminopyrimidine derivatives as protein kinase inhibitors
CN103313978B (en) 2010-11-10 2015-04-15 霍夫曼-拉罗奇有限公司 Pyrazole aminopyrimidine derivatives as LRRK2 modulators
US8901114B2 (en) 2011-03-08 2014-12-02 Sanofi Oxathiazine derivatives substituted with carbocycles or heterocycles, method for producing same, drugs containing said compounds, and use thereof
US8846666B2 (en) 2011-03-08 2014-09-30 Sanofi Oxathiazine derivatives which are substituted with benzyl or heteromethylene groups, method for producing them, their use as medicine and drug containing said derivatives and the use thereof
EP2683698B1 (en) 2011-03-08 2017-10-04 Sanofi Benzyl-oxathiazine derivates substituted with adamantane or noradamantane, medicaments containing said compounds and use thereof
US8828995B2 (en) 2011-03-08 2014-09-09 Sanofi Branched oxathiazine derivatives, method for the production thereof, use thereof as medicine and drug containing said derivatives and use thereof
WO2012120055A1 (en) 2011-03-08 2012-09-13 Sanofi Di- and tri-substituted oxathiazine derivates, method for the production thereof, use thereof as medicine and drug containing said derivatives and use thereof
EP2683705B1 (en) 2011-03-08 2015-04-22 Sanofi Di- and tri-substituted oxathiazine derivates, method for the production thereof, use thereof as medicine and drug containing said derivatives and use thereof
US8809324B2 (en) 2011-03-08 2014-08-19 Sanofi Substituted phenyl-oxathiazine derivatives, method for producing them, drugs containing said compounds and the use thereof
EP2683700B1 (en) 2011-03-08 2015-02-18 Sanofi Tetra-substituted oxathiazine derivatives, method for their preparation, their usage as medicament and medicament containing same and its use
EP2683703B1 (en) 2011-03-08 2015-05-27 Sanofi Novel substituted phenyl-oxathiazine derivatives, method for producing them, drugs containing said compounds and the use thereof
CA2830129C (en) 2011-03-24 2016-07-19 Chemilia Ab Novel pyrimidine derivatives
KR20140062079A (en) * 2011-08-25 2014-05-22 에프. 호프만-라 로슈 아게 Serine/threonine pak1 inhibitors
WO2013037390A1 (en) 2011-09-12 2013-03-21 Sanofi 6-(4-hydroxy-phenyl)-3-styryl-1h-pyrazolo[3,4-b]pyridine-4-carboxylic acid amide derivatives as kinase inhibitors
MX2014003501A (en) 2011-09-22 2014-07-22 Pfizer Pyrrolopyrimidine and purine derivatives.
EP2760862B1 (en) 2011-09-27 2015-10-21 Sanofi 6-(4-hydroxy-phenyl)-3-alkyl-1h-pyrazolo[3,4-b]pyridine-4-carboxylic acid amide derivatives as kinase inhibitors
MX342326B (en) 2011-09-27 2016-09-26 Novartis Ag 3-pyrimidin-4-yl-oxazolidin-2-ones as inhibitors of mutant idh.
JP6106685B2 (en) 2011-11-17 2017-04-05 ダナ−ファーバー キャンサー インスティテュート, インコーポレイテッド Inhibitors of C-JUN-N-terminal kinase (JNK)
RU2014129740A (en) 2011-12-22 2016-02-10 Ф.Хоффманн-Ля Рош Аг 2,4-DIAMINOPYRIMIDINE DERIVATIVES AS SERIN / THREONIN KINASE INHIBITORS
RU2014137448A (en) * 2012-02-17 2016-04-10 Эббви Инк. DIAMINOPYRIMIDINES SUITABLE AS INHIBITORS OF RESPIRATORY-SYNCITIAL HUMAN VIRUS (RSV)
UY34632A (en) 2012-02-24 2013-05-31 Novartis Ag OXAZOLIDIN- 2- ONA COMPOUNDS AND USES OF THE SAME
TWI485146B (en) * 2012-02-29 2015-05-21 Taiho Pharmaceutical Co Ltd Novel piperidine compounds or salts thereof
EP2834232A1 (en) 2012-03-16 2015-02-11 Axikin Pharmaceuticals, Inc. 3,5-diaminopyrazole kinase inhibitors
US20130303519A1 (en) 2012-03-20 2013-11-14 Millennium Pharmaceuticals, Inc. Methods of treating cancer using aurora kinase inhibitors
SG10201704095UA (en) 2012-04-24 2017-06-29 Vertex Pharma Dna-pk inhibitors
KR20150013554A (en) * 2012-05-24 2015-02-05 셀좀 리미티드 Heterocyclyl pyrimidine analogues as tyk2 inhibitors
CA2880896C (en) 2012-06-26 2021-11-16 Del Mar Pharmaceuticals Methods for treating tyrosine-kinase-inhibitor-resistant malignancies in patients with genetic polymorphisms or ahi1 dysregulations or mutations employing dianhydrogalactitol, diacetyldianhydrogalactitol, dibromodulcitol, or analogs or derivatives thereof
WO2014008992A1 (en) * 2012-07-10 2014-01-16 Ares Trading S.A. Pyrimidine pyrazolyl derivatives
MY183976A (en) * 2012-09-19 2021-03-17 Taiho Pharmaceutical Co Ltd Pharmaceutical composition for oral administration with improved dissolution and/or absorption
US9296733B2 (en) 2012-11-12 2016-03-29 Novartis Ag Oxazolidin-2-one-pyrimidine derivative and use thereof for the treatment of conditions, diseases and disorders dependent upon PI3 kinases
CN103191120B (en) * 2012-12-31 2015-11-25 刘强 A kind of pyrimidine derivatives preparation prevent and/or treat and/or adjuvant therapy of tumors medicine in purposes
CN103202843B (en) * 2012-12-31 2015-04-29 刘强 Application of pyrimidine derivative in preparation of drugs capable of prevention and/or treatment and/or adjuvant therapy of cancers
CN103059002B (en) * 2012-12-31 2015-04-22 中山大学 Pyrimidine derivative with Aurora kinase inhibitory activity and preparation method and application thereof
CN103910716A (en) * 2013-01-07 2014-07-09 华东理工大学 2,4-disubstituted-cycloalkyl[d]pyrimidine compound and its use
TR201901886T4 (en) 2013-03-12 2019-03-21 Vertex Pharma DNA-PK inhibitors.
AP2015008707A0 (en) 2013-03-14 2015-09-30 Novartis Ag 3-pyrimidin-4-yl-oxazolidin-2-ones as inhibitors of mutant idh
EP3521284B1 (en) 2013-03-15 2020-12-02 The Trustees of Columbia University in the City of New York Pyrazine compounds as map kinase modulators and uses thereof
WO2014153509A1 (en) 2013-03-22 2014-09-25 Millennium Pharmaceuticals, Inc. Combination of catalytic mtorc 1/2 inhibitors and selective inhibitors of aurora a kinase
WO2015003355A2 (en) * 2013-07-11 2015-01-15 Agios Pharmaceuticals, Inc. Therapeutically active compounds and their methods of use
EP3024456A4 (en) 2013-07-26 2017-04-12 Update Pharma Inc. Combinatorial methods to improve the therapeutic benefit of bisantrene
WO2015028848A1 (en) * 2013-09-02 2015-03-05 Piramal Enterprises Limited Bicyclic heterocyclic compounds as multi-kinase inhibitors
NZ631142A (en) 2013-09-18 2016-03-31 Axikin Pharmaceuticals Inc Pharmaceutically acceptable salts of 3,5-diaminopyrazole kinase inhibitors
PL3057953T3 (en) 2013-10-17 2019-01-31 Vertex Pharmaceuticals Incorporated Co-crystals of (s)-n-methyl-8-(1-((2'-methyl-[4,5'-bipyrimidin]-6-yl)amino)propan-2-yl)quinoline-4-carboxamide and deuterated derivatives thereof as dna-pk inhibitors
AU2014337122B2 (en) 2013-10-18 2019-01-03 Dana-Farber Cancer Institute, Inc. Heteroaromatic compounds useful for the treatment of proliferative diseases
AU2014337044A1 (en) 2013-10-18 2016-05-05 Dana-Farber Cancer Institute, Inc. Polycyclic inhibitors of cyclin-dependent kinase 7 (CDK7)
US10030004B2 (en) 2014-01-01 2018-07-24 Medivation Technologies Llc Compounds and methods of use
PT3116475T (en) 2014-03-13 2020-12-15 Neuroderm Ltd Dopa decarboxylase inhibitor compositions
US10258585B2 (en) 2014-03-13 2019-04-16 Neuroderm, Ltd. DOPA decarboxylase inhibitor compositions
US9403801B2 (en) 2014-03-28 2016-08-02 Calitor Sciences, Llc Substituted heteroaryl compounds and methods of use
LT3125883T (en) 2014-04-04 2020-10-26 Iomet Pharma Ltd. Indole derivatives for use in medicine
WO2015155738A2 (en) 2014-04-09 2015-10-15 Christopher Rudd Use of gsk-3 inhibitors or activators which modulate pd-1 or t-bet expression to modulate t cell immunity
CN105367555B (en) * 2014-08-07 2019-06-25 广东东阳光药业有限公司 Substituted heteroaryl compound and combinations thereof and purposes
EP3236959A4 (en) 2014-12-23 2018-04-25 Dana Farber Cancer Institute, Inc. Inhibitors of cyclin-dependent kinase 7 (cdk7)
WO2016106309A1 (en) 2014-12-23 2016-06-30 Axikin Pharmaceuticals, Inc. 3,5-diaminopyrazole kinase inhibitors
US10227343B2 (en) * 2015-01-30 2019-03-12 Vanderbilt University Isoquiniline and napthalene-substituted compounds as mGluR4 allosteric potentiators, compositions, and methods of treating neurological dysfunction
EP3273966B1 (en) 2015-03-27 2023-05-03 Dana-Farber Cancer Institute, Inc. Inhibitors of cyclin-dependent kinases
AU2016247858B2 (en) 2015-04-17 2020-10-15 Ludwig Institute For Cancer Research Ltd. PLK4 inhibitors
CN111362975B (en) 2015-05-28 2022-04-05 施万生物制药研发Ip有限责任公司 Naphthyridine compounds as JAK kinase inhibitors
JP2018135268A (en) * 2015-06-05 2018-08-30 大日本住友製薬株式会社 Novel heteroaryl amino-3-pyrazole derivative and pharmacologically acceptable salt thereof
EP3347018B1 (en) 2015-09-09 2021-09-01 Dana-Farber Cancer Institute, Inc. Inhibitors of cyclin-dependent kinases
WO2017044434A1 (en) 2015-09-11 2017-03-16 Sunshine Lake Pharma Co., Ltd. Substituted heteroaryl compounds and methods of use
PT3386511T (en) * 2015-12-10 2021-07-14 Ptc Therapeutics Inc Methods for treating huntington's disease
CN105399695B (en) * 2015-12-11 2019-04-19 浙江大学 Compound in triazine class and its preparation method and application
CN105384702B (en) * 2015-12-11 2018-04-10 浙江大学 Three substitution s-triazine compounds and preparation method thereof
CN105503754B (en) * 2015-12-11 2017-11-17 浙江大学 The triazine of 2 amino, 4 benzyl, 6 morpholine 1,3,5 and its preparation and application
US10894784B2 (en) 2015-12-18 2021-01-19 Bayer Pharma Aktiengesellschaft Heteroarylbenzimidazole compounds
KR102489454B1 (en) 2016-03-14 2023-01-17 애퍼런트 파마슈티컬스 인크. Pyrimidines and variants thereof, and uses therefor
WO2017165255A1 (en) 2016-03-25 2017-09-28 Afferent Pharmaceuticals Inc. Pyrimidines and variants thereof, and uses therefor
MX2018013191A (en) 2016-04-28 2019-02-13 Theravance Biopharma R&D Ip Llc Pyrimidine compounds as jak kinase inhibitors.
WO2017207534A1 (en) 2016-06-03 2017-12-07 Bayer Pharma Aktiengesellschaft Substituted heteroarylbenzimidazole compounds
TW201815418A (en) 2016-09-27 2018-05-01 Vertex Pharma Method for treating cancer using a combination of DNA-damaging agents and DNA-PK inhibitors
US10858319B2 (en) 2016-10-03 2020-12-08 Iomet Pharma Ltd. Indole derivatives for use in medicine
WO2018089546A1 (en) * 2016-11-08 2018-05-17 Vanderbilt University Isoquinoline ether compounds as mglur4 allosteric potentiators, compositions, and methods of treating neurological dysfunction
CN108239071B (en) * 2016-12-27 2020-12-04 沈阳药科大学 Amide and thioamide derivatives, and preparation method and application thereof
FR3064275B1 (en) 2017-03-21 2019-06-07 Arkema France METHOD FOR HEATING AND / OR AIR CONDITIONING A VEHICLE
EP3630731B1 (en) 2017-05-30 2023-08-09 Basf Se Pyridine and pyrazine compounds for combating phytopathogenic fungi
WO2018226622A1 (en) 2017-06-05 2018-12-13 Ptc Therapeutics, Inc. Compounds for treating huntington's disease
CA3067591A1 (en) 2017-06-28 2019-01-03 Ptc Therapeutics, Inc. Methods for treating huntington's disease
MX2019015580A (en) 2017-06-28 2020-07-28 Ptc Therapeutics Inc Methods for treating huntington's disease.
JP7039802B2 (en) 2017-06-30 2022-03-23 ベイジン タイド ファーマシューティカル カンパニー リミテッド Pharmaceutical composition containing RHO-related protein kinase inhibitor, RHO-related protein kinase inhibitor, preparation method and use of the pharmaceutical composition.
CN111217797B (en) 2017-06-30 2021-02-05 北京泰德制药股份有限公司 Rho-related protein kinase inhibitor, pharmaceutical composition containing same, and preparation method and application thereof
JP2020525525A (en) * 2017-06-30 2020-08-27 ベイジン タイド ファーマシューティカル カンパニー リミテッドBeijing Tide Pharmaceutical Co., Ltd. RHO-related protein kinase inhibitor, pharmaceutical composition containing RHO-related protein kinase inhibitor, preparation method and use of the pharmaceutical composition
WO2019046163A1 (en) * 2017-08-28 2019-03-07 Zhihong Chen Substituted pyrimidines, pharmaceutical compositions and therapeutic methods thereof
EP3676264A1 (en) * 2017-08-28 2020-07-08 Acurastem Inc. Pikfyve kinase inhibitors
IL274037B2 (en) 2017-10-27 2023-11-01 Theravance Biopharma R& D Ip Llc Pyrimidine compound as jak kinase inhibitor
MX2020004536A (en) * 2017-11-23 2020-08-03 Biomed X Gmbh Pyrimidine derivatives as tropomyosin receptor kinase a (trka) inhibitors.
EP3720560A4 (en) * 2017-12-06 2022-01-05 Ludwig Institute for Cancer Research Ltd Methods of treating cancer with plk4 inhibitors
CA3094703A1 (en) 2018-03-27 2019-10-03 Ptc Therapeutics, Inc. Compounds for treating huntington's disease
JP2021528470A (en) * 2018-06-25 2021-10-21 ダナ−ファーバー キャンサー インスティテュート, インコーポレイテッド TAIRE Family Kinase Inhibitors and Their Use
EP3814360A1 (en) 2018-06-27 2021-05-05 PTC Therapeutics, Inc. Heteroaryl compounds for treating huntington's disease
SG11202012674PA (en) 2018-06-27 2021-01-28 Ptc Therapeutics Inc Heterocyclic and heteroaryl compounds for treating huntington's disease
JP2022529371A (en) 2019-04-24 2022-06-21 セラヴァンス バイオファーマ アール&ディー アイピー, エルエルシー Background of the invention of pyrimidine JAK inhibitor for the treatment of skin diseases
EP3958969B1 (en) 2019-04-24 2024-01-10 Theravance Biopharma R&D IP, LLC Ester and carbonate pyrimidine compounds as jak kinase inhibitors
CN114728949A (en) * 2019-08-01 2022-07-08 整体生物科学私人有限公司 Heterocyclic compounds as kinase inhibitors and uses thereof
US11787796B2 (en) 2019-09-18 2023-10-17 Takeda Pharmaceutical Company Limited Plasma Kallikrein inhibitors and uses thereof
CN110483493A (en) * 2019-09-19 2019-11-22 广东工业大学 A kind of diazole analog derivative and its preparation method and application
US11213502B1 (en) 2020-11-17 2022-01-04 Neuroderm, Ltd. Method for treatment of parkinson's disease
US11331293B1 (en) 2020-11-17 2022-05-17 Neuroderm, Ltd. Method for treatment of Parkinson's disease
US11844754B2 (en) 2020-11-17 2023-12-19 Neuroderm, Ltd. Methods for treatment of Parkinson's disease
TW202237119A (en) 2020-12-10 2022-10-01 美商住友製藥腫瘤公司 Alk-5 inhibitors and uses thereof
JP2024510504A (en) * 2021-03-17 2024-03-07 武田薬品工業株式会社 Polycyclic inhibitor of plasma kallikrein
JP2024511466A (en) * 2021-03-26 2024-03-13 スミトモ ファーマ オンコロジー, インコーポレイテッド ALK-5 inhibitors and their uses
TW202309008A (en) 2021-05-11 2023-03-01 美商歐瑞克製藥公司 Polo like kinase 4 inhibitors
UY39832A (en) 2021-06-28 2023-01-31 Blueprint Medicines Corp CDK2 INHIBITORS
CN116354938B (en) * 2021-12-28 2024-02-20 沈阳药科大学 Preparation method and application of quinazoline derivatives and analogues thereof
CN114276302B (en) * 2022-01-11 2023-07-25 山东百启生物医药有限公司 Method for preparing 2, 4-diaminoquinazoline derivative
WO2024003773A1 (en) 2022-07-01 2024-01-04 Pfizer Inc. 2,7-naphthyridine compounds as mastl inhibitors
CN117736198A (en) * 2022-09-21 2024-03-22 科辉智药生物科技(深圳)有限公司 Macrocyclic nitrogen crown ether compounds and their use as protein kinase inhibitors
CN115403568B (en) * 2022-09-21 2023-09-29 中山大学 Quinazoline Aurora A covalent inhibitor and preparation method and application thereof

Family Cites Families (97)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2585906A (en) 1952-02-12 Quaternary salts of pyrimdjines
US3133081A (en) 1964-05-12 J-aminoindazole derivatives
US18436A (en) * 1857-10-20 And saml
US3935183A (en) 1970-01-26 1976-01-27 Imperial Chemical Industries Limited Indazole-azo phenyl compounds
BE754242A (en) 1970-07-15 1971-02-01 Geigy Ag J R DIAMINO-S-TRIAZINES AND DINITRO-S-TRIAZINES
US3755332A (en) * 1971-07-01 1973-08-28 Ciba Geigy Corp Substituted 4 indazolaminoquinolines
US3998951A (en) 1974-03-13 1976-12-21 Fmc Corporation Substituted 2-arylquinazolines as fungicides
DE2458965C3 (en) 1974-12-13 1979-10-11 Bayer Ag, 5090 Leverkusen 3-Amino-indazole-N-carboxylic acid derivatives, process for their preparation and pharmaceuticals containing them
MA18829A1 (en) 1979-05-18 1980-12-31 Ciba Geigy Ag PYRIMIDINE DERIVATIVES, METHODS FOR THEIR PREPARATION, PHARMACEUTICAL COMPOSITIONS CONTAINING THESE COMPOUNDS AND THEIR THERAPEUTIC USE
DOP1981004033A (en) * 1980-12-23 1990-12-29 Ciba Geigy Ag PROCEDURE TO PROTECT CROP PLANTS FROM PHYTOTOXIC ACTION OF HERBICIDES.
SE8102194L (en) 1981-04-06 1982-10-07 Pharmacia Ab THERAPEUTIC ACTIVE ORGANIC ASSOCIATION AND PHARMACEUTICAL PREPARATION INCLUDING THIS
SE8102193L (en) 1981-04-06 1982-10-07 Pharmacia Ab THERAPEUTIC ACTIVE ORGANIC ASSOCIATION AND ITS USE
JPS58124773A (en) 1982-01-20 1983-07-25 Mitsui Toatsu Chem Inc 5-methylthiopyrimidine derivative, its preparation and fungicide for agricultural and horticultural purposes
EP0136976A3 (en) 1983-08-23 1985-05-15 Ciba-Geigy Ag Use of phenyl pyrimidines as plant regulators
DE3725638A1 (en) 1987-08-03 1989-02-16 Bayer Ag NEW ARYLOXY (OR THIO) AMINOPYRIMIDINE
JPH0532662A (en) 1990-11-09 1993-02-09 Nissan Chem Ind Ltd Substituted pyrazole derivative and agricultural and horticultural fungicide
US5714493A (en) * 1991-05-10 1998-02-03 Rhone-Poulenc Rorer Pharmaceuticals, Inc. Aryl and heteroaryl quinazoline compounds which inhibit CSF-1R receptor tyrosine kinase
US5710158A (en) 1991-05-10 1998-01-20 Rhone-Poulenc Rorer Pharmaceuticals Inc. Aryl and heteroaryl quinazoline compounds which inhibit EGF and/or PDGF receptor tyrosine kinase
US5597920A (en) 1992-04-30 1997-01-28 Neurogen Corporation Gabaa receptor subtypes and methods for screening drug compounds using imidazoquinoxalines and pyrrolopyrimidines to bind to gabaa receptor subtypes
JPH0665237A (en) * 1992-05-07 1994-03-08 Nissan Chem Ind Ltd Substituted pyrazole derivative and germicide for agriculture and horticulture
JP3588116B2 (en) 1993-10-01 2004-11-10 ノバルティス アクチェンゲゼルシャフト Pharmacologically active pyrimidineamine derivatives and process for their production
ATE262902T1 (en) 1994-11-10 2004-04-15 Millennium Pharm Inc USE OF PYRAZOLE COMPOUNDS TO TREAT GLOMERULONEPHRITIS, CANCER, ATHEROSCLERosis OR RESTENOSIS
IL117659A (en) 1995-04-13 2000-12-06 Dainippon Pharmaceutical Co Substituted 2-phenyl pyrimidino amino acetamide derivative process for preparing the same and a pharmaceutical composition containing same
US5935966A (en) 1995-09-01 1999-08-10 Signal Pharmaceuticals, Inc. Pyrimidine carboxylates and related compounds and methods for treating inflammatory conditions
AU726058B2 (en) 1995-09-01 2000-10-26 Signal Pharmaceuticals, Inc. Pyrimidine carboxylates and related compounds and methods for treating inflammatory conditions
GB9523675D0 (en) 1995-11-20 1996-01-24 Celltech Therapeutics Ltd Chemical compounds
US6716575B2 (en) 1995-12-18 2004-04-06 Sugen, Inc. Diagnosis and treatment of AUR1 and/or AUR2 related disorders
ID19609A (en) 1996-07-13 1998-07-23 Glaxo Group Ltd HETEROSICLIC COMPOUNDS
JPH10130150A (en) 1996-09-05 1998-05-19 Dainippon Pharmaceut Co Ltd Medicine comprising acetic acid amide derivative
GB9619284D0 (en) 1996-09-16 1996-10-30 Celltech Therapeutics Ltd Chemical compounds
ATE291022T1 (en) 1996-10-02 2005-04-15 Novartis Pharma Gmbh PYRIMIDE DERIVATIVES AND PROCESS FOR THE PRODUCTION THEREOF
CA2268098A1 (en) 1996-10-11 1998-04-23 Warner-Lambert Company Aspartate ester inhibitors of interleukin-1.beta. converting enzyme
CN1138472C (en) 1997-10-10 2004-02-18 西托维亚公司 Dipeptide apoptosis inhibitors and the use thereof
US6267952B1 (en) 1998-01-09 2001-07-31 Geltex Pharmaceuticals, Inc. Lipase inhibiting polymers
JP2000026421A (en) 1998-01-29 2000-01-25 Kumiai Chem Ind Co Ltd Diaryl sulfide derivative and pest controlling agent
CN1297447A (en) 1998-02-17 2001-05-30 图拉列克股份有限公司 Anti-viral pyrimidine derivs
EP1076563B1 (en) 1998-03-16 2005-05-11 Cytovia, Inc. Dipeptide caspase inhibitors and the use thereof
CZ302486B6 (en) 1998-06-02 2011-06-15 Osi Pharmaceuticals, Inc. N-6-Substituted-7-deazapurine, process for its preparation and pharmaceutical composition containing thereof
JP4533534B2 (en) 1998-06-19 2010-09-01 ノバルティス バクシンズ アンド ダイアグノスティックス,インコーポレーテッド Inhibitor of glycogen synthase kinase 3
WO2000003901A1 (en) * 1998-07-16 2000-01-27 Continental Teves Ag & Co. Ohg Method and device for detecting the critical driving states in vehicles which are being driven
CA2339188A1 (en) 1998-08-21 2000-03-02 Dupont Pharmaceuticals Company Isoxazolo¬4,5-d|pyrimidines as crf antagonists
US6184226B1 (en) 1998-08-28 2001-02-06 Scios Inc. Quinazoline derivatives as inhibitors of P-38 α
US7262201B1 (en) 1998-10-08 2007-08-28 Astrazeneca Ab Quinazoline derivatives
GB9828640D0 (en) 1998-12-23 1999-02-17 Smithkline Beecham Plc Novel method and compounds
GB9828511D0 (en) 1998-12-24 1999-02-17 Zeneca Ltd Chemical compounds
DE69926914T2 (en) 1999-01-13 2006-06-29 Warner-Lambert Co. Llc 1-HETEROCYCLE SUBSTITUTED DIARYLAMINES
BR0009507A (en) 1999-03-30 2002-01-15 Novartis Ag Phthalazine derivatives for the treatment of inflammatory diseases
JP2003502424A (en) * 1999-06-17 2003-01-21 シオノギ バイオリサーチ コーポレイション Inhibitor of IL-12 production
GB9914258D0 (en) 1999-06-18 1999-08-18 Celltech Therapeutics Ltd Chemical compounds
JP2003531103A (en) 1999-08-12 2003-10-21 バーテックス ファーマシューティカルズ インコーポレイテッド Inhibitors of c-JUNN-terminal kinase (JNK) and other protein kinases
JP2003511378A (en) * 1999-10-07 2003-03-25 アムジエン・インコーポレーテツド Triazine kinase inhibitors
EA200200411A1 (en) 1999-11-30 2002-10-31 Пфайзер Продактс Инк. 2,4-DIAMINOPYRIMIDINE COMPOUNDS USEFUL AS IMMUNOSUPRESSORS
ES2269217T3 (en) 1999-12-02 2007-04-01 Osi Pharmaceuticals, Inc. SPECIFIC COMPOUNDS FOR ADENOSINE A1, A2A AND A3 RECEPTORS AND THEIR USES.
MY125768A (en) 1999-12-15 2006-08-30 Bristol Myers Squibb Co N-[5-[[[5-alkyl-2-oxazolyl]methyl]thio]-2-thiazolyl]-carboxamide inhibitors of cyclin dependent kinases
US6376489B1 (en) 1999-12-23 2002-04-23 Icos Corporation Cyclic AMP-specific phosphodiesterase inhibitors
US20020065270A1 (en) 1999-12-28 2002-05-30 Moriarty Kevin Joseph N-heterocyclic inhibitors of TNF-alpha expression
JP4783532B2 (en) 2000-02-05 2011-09-28 バーテックス ファーマシューティカルズ インコーポレイテッド Pyrazole compositions useful as inhibitors of ERK
EP1257546A1 (en) 2000-02-17 2002-11-20 Amgen Inc. Kinase inhibitors
GB0004890D0 (en) * 2000-03-01 2000-04-19 Astrazeneca Uk Ltd Chemical compounds
GB0004887D0 (en) 2000-03-01 2000-04-19 Astrazeneca Uk Ltd Chemical compounds
CA2405043A1 (en) 2000-04-03 2001-10-11 Vertex Pharmaceuticals Incorporated Inhibitors of serine proteases, particularly hepatitis c virus ns3 protease
AU2001249865A1 (en) 2000-04-18 2001-10-30 Agouron Pharmaceuticals, Inc. Pyrazoles for inhibiting protein kinase
JP3890184B2 (en) * 2000-05-15 2007-03-07 Necパーソナルプロダクツ株式会社 Power supply device, power control method thereof, and information processing apparatus
DE60133897D1 (en) 2000-06-28 2008-06-19 Astrazeneca Ab SUBSTITUTED CHINAZOLIN DERIVATIVES AND THEIR USE AS AURORA-2-KINASE INHIBITORS
CN1518543A (en) 2000-08-31 2004-08-04 �Ʒ� Pyrazole derivatives and their use as protein kinase inhibitors
DE60122176T2 (en) 2000-09-15 2007-07-05 Vertex Pharmaceuticals Inc., Cambridge ISOXAZOLE AND ITS USE AS ERK INHIBITORS
US6610677B2 (en) 2000-09-15 2003-08-26 Vertex Pharmaceuticals Incorporated Pyrazole compounds useful as protein kinase inhibitors
US6660731B2 (en) 2000-09-15 2003-12-09 Vertex Pharmaceuticals Incorporated Pyrazole compounds useful as protein kinase inhibitors
EP1317449B1 (en) 2000-09-15 2006-05-31 Vertex Pharmaceuticals Incorporated Pyrazole compounds useful as protein kinase inhibitors
US7473691B2 (en) 2000-09-15 2009-01-06 Vertex Pharmaceuticals Incorporated Pyrazole compounds useful as protein kinase inhibitors
US6613776B2 (en) 2000-09-15 2003-09-02 Vertex Pharmaceuticals Incorporated Pyrazole compounds useful as protein kinase inhibitors
AU2001293817A1 (en) 2000-09-20 2002-04-02 Merck Patent Gmbh 4-amino-quinazolines
US6641579B1 (en) 2000-09-29 2003-11-04 Spectrasonics Imaging, Inc. Apparatus and method for ablating cardiac tissue
DE10061863A1 (en) 2000-12-12 2002-06-13 Basf Ag Preparation of triethylenediamine, useful for making pharmaceuticals and polymers, by reacting ethylenediamine over specific zeolite catalyst
US6716851B2 (en) 2000-12-12 2004-04-06 Cytovia, Inc. Substituted 2-aryl-4-arylaminopyrimidines and analogs as activators or caspases and inducers of apoptosis and the use thereof
WO2002047690A1 (en) 2000-12-12 2002-06-20 Cytovia, Inc. Substituted 2-aryl-4-arylaminopyrimidines and analogs as activators of caspases and inducers of apoptosis and the use thereof
ATE340172T1 (en) 2000-12-21 2006-10-15 Vertex Pharma PYRAZOLE COMPOUNDS AS PROTEIN KINASE INHIBITORS
MY130778A (en) 2001-02-09 2007-07-31 Vertex Pharma Heterocyclic inhibitiors of erk2 and uses thereof
DE60223790D1 (en) 2001-03-29 2008-01-10 Vertex Pharma HEMMER OF C-JUN TERMINAL KINASE (JNK) AND OTHER PROTEIN KINASE
MXPA03009378A (en) 2001-04-13 2004-01-29 Vertex Pharma Inhibitors of c-jun n-terminal kinases (jnk) and other protein kinases.
US20030096813A1 (en) 2001-04-20 2003-05-22 Jingrong Cao Compositions useful as inhibitors of GSK-3
WO2002092573A2 (en) 2001-05-16 2002-11-21 Vertex Pharmaceuticals Incorporated Heterocyclic substituted pyrazoles as inhibitors of src and other protein kinases
WO2002102800A1 (en) 2001-06-15 2002-12-27 Vertex Pharmaceuticals Incorporated 5-(2-aminopyrimidin-4-yl) benzisoxazoles as protein kinase inhibitors
US6689778B2 (en) 2001-07-03 2004-02-10 Vertex Pharmaceuticals Incorporated Inhibitors of Src and Lck protein kinases
WO2003026664A1 (en) * 2001-09-26 2003-04-03 Bayer Corporation 2-phenylamino-4- (5-pyrazolylamino) -pyramidine derivatives as kinase inhibitors, in particular, src kinase inhibitors
US6569499B2 (en) 2001-10-02 2003-05-27 Xerox Corporation Apparatus and method for coating photoreceptor substrates
EP1474147B1 (en) 2001-12-07 2010-05-05 Vertex Pharmaceuticals Incorporated Pyrimidine-based compounds useful as gsk-3 inhibitors
WO2003078423A1 (en) 2002-03-15 2003-09-25 Vertex Pharmaceuticals, Inc. Compositions useful as inhibitors of protein kinases
US20040009981A1 (en) 2002-03-15 2004-01-15 David Bebbington Compositions useful as inhibitors of protein kinases
DE60332433D1 (en) 2002-03-15 2010-06-17 Vertex Pharma AZOLYLAMINOAZINE AS PROTEIN KINASE INHIBITOR
EP1485381B8 (en) 2002-03-15 2010-05-12 Vertex Pharmaceuticals Incorporated Azolylaminoazine as inhibitors of protein kinases
US20030207873A1 (en) 2002-04-10 2003-11-06 Edmund Harrington Inhibitors of Src and other protein kinases
AU2003237121A1 (en) 2002-04-26 2003-11-10 Vertex Pharmaceuticals Incorporated Pyrrole derivatives as inhibitors of erk2 and uses thereof
MY141867A (en) 2002-06-20 2010-07-16 Vertex Pharma Substituted pyrimidines useful as protein kinase inhibitors
JP4570955B2 (en) 2002-07-09 2010-10-27 バーテクス ファーマスーティカルズ インコーポレイテッド Imidazoles with protein kinase inhibitory activity
ES2273043T3 (en) 2002-08-02 2007-05-01 Vertex Pharmaceuticals Incorporated PIRAZOL COMPOSITIONS USEFUL AS INHIBITORS OF GSK-3.
DE602007007985D1 (en) 2006-12-19 2010-09-02 Vertex Pharma AS INHIBITORS OF PROTEIN KINASES SUITABLE AMINO-PRIMIDINES

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