WO2005025481A2 - Resealable nurser liner - Google Patents

Resealable nurser liner Download PDF

Info

Publication number
WO2005025481A2
WO2005025481A2 PCT/US2004/029539 US2004029539W WO2005025481A2 WO 2005025481 A2 WO2005025481 A2 WO 2005025481A2 US 2004029539 W US2004029539 W US 2004029539W WO 2005025481 A2 WO2005025481 A2 WO 2005025481A2
Authority
WO
WIPO (PCT)
Prior art keywords
liner
layers
volume
assembly
inner volume
Prior art date
Application number
PCT/US2004/029539
Other languages
French (fr)
Other versions
WO2005025481A3 (en
Inventor
Rosemary F. Knuth
John Rousso
Henry Kalinoski
Paul Siracusa
Original Assignee
Playtex Products, Inc.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Playtex Products, Inc. filed Critical Playtex Products, Inc.
Priority to CA2537817A priority Critical patent/CA2537817C/en
Publication of WO2005025481A2 publication Critical patent/WO2005025481A2/en
Publication of WO2005025481A3 publication Critical patent/WO2005025481A3/en

Links

Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J9/00Feeding-bottles in general
    • A61J9/001Feeding-bottles in general with inner liners

Definitions

  • the present invention relates generally to liners for nurser bottles. More particularly, the present invention relates to liners that are resealable.
  • breast milk is a valuable source of nutrition for0 infants. It contains carbohydrates, proteins, fats, enzymes, minerals, vitamins, and hormones that infants require. It also contains valuable antibodies that can help infants resist infections. Many nutrients found in milk can deteriorate depending on storage conditions and length of storage time. For example, nutrients, such as fats/lipids and vitamins, can degrade5 when exposed to oxygen and/or light. Milk can turn rancid when lipids degrade as a result of oxidative deterioration, or lipid peroxidation. This produces a foul, offensive odor. Some vitamins degrade when exposed to light and/or oxygen. This deterioration of nutrients leads to decreased nutritional value, decreased freshness, and decreases the benefits of o feeding the infant breast milk.
  • Disposable liners for containing breast milk are used with rigid holders to provide a clean, sanitary container for each use, instead of reusable bottles, which require regular washing. Resealable closure members have been incorporated laterally or horizontally across such5 liners.
  • a nurser liner is shown having a continuous, elongated, profiled reclosable fastener disposed laterally across the periphery of the top portion of the enclosure area.
  • a nurser liner is shown having a sealing member made up of cooperating projection members that are o disposed laterally across the periphery of the top portion of the enclosure area.
  • Such liners suffer from the drawback of allowing degradation of the breast milk due to oxygen or U V rays.
  • the oxygen or UV transmission can occur because the contemporary bags do not provide proper air-tight sealing mechanisms, and also fail to adequately prevent oxygen and UV transmission through the bag itself. Accordingly, there is a need for a breast milk storage bag, which reduces or eliminates degradation of the breast milk due to oxygen or UV rays.
  • a liner having properties that reduce or eliminate degradation of the breast milk over time due to oxygen It is another object of the present invention to provide such a liner having properties that reduce or eliminate degradation of the breast milk over time due to light and/or UV rays. It is yet another object of the present invention to provide such a liner that has improved tactile properties. It is a further object of the present invention to provide such a liner that is easily manufactured. It is yet a further object of the present invention to provide such a liner with a multi-layer construction so that different materials having different desired properties can be utilized to provide a liner with all of the desired properties.
  • a breast milk storage bag that protects the nutrients of breast milk.
  • the bag limits the transmission of oxygen through the bag and absorbs UV rays or impedes them from transmitting through the bag to the breast milk. By limiting the transmission of oxygen and light, degradation of nutrients, such as lipids and vitamins, is greatly inhibited.
  • the bag utilizes materials with low oxygen transmission rates, thus giving extremely good barrier properties to oxygen.
  • an airtight sealing mechanism can be incorporated into the bag so that the material along with the closure results in a bag with an overall very low oxygen transmission rate.
  • UV absorbers and/or inhibitors can also be added to the materials that comprise the bag. This limits damage to vitamins due to light or UV rays.
  • a nurser liner that has a body defining an inner volume, and the liner has an oxygen transmission rate into the inner volume of less than about 2.0 cubic centimeters over a 24-hour period.
  • a nurser liner is provided that has a body defining an inner volume, and the body is at least partially made with an anti-UV component that reduces transmission of UV rays into the inner volume.
  • a nurser liner is provided that has a body defining an inner volume, and the body is at least partially made of a material selected from nylon, ethylene vinyl alcohol, polyester, or any combinations thereof.
  • an infant feeding assembly is provided having a liner and a holder.
  • the liner has a body defining a first volume.
  • the holder has an open end and defines a second volume.
  • the liner is disposed in the second volume.
  • the liner has an oxygen transmission rate into the first volume of less than about 2.0 cubic centimeters over a 24-hour period.
  • an infant feeding assembly is provided having a liner and a holder.
  • the liner has a body defining a first volume.
  • the holder has an open end and defines a second volume.
  • the liner is disposed in the second volume.
  • the body is at least partially made with an anti-UV component that reduces transmission of UV rays into the first volume.
  • an infant feeding assembly is provided having a liner and a holder.
  • the liner has a body defining a first volume.
  • the holder has an open end and defines a second volume.
  • the liner is disposed in the second volume.
  • the body is at least partially made from a material selected from nylon, ethylene vinyl alcohol, polyester, and any combinations thereof.
  • a method of storing breast milk is provided in which UV ray transmission into an inner volume of a nurser liner used for storing the breast milk is impeded.
  • the liner body can be at least partially made from a material that impedes transmission of UV rays.
  • the liner body can be at least partially made from: nylon, ethylene vinyl alcohol, polyester, and any combinations thereof.
  • the liner preferably has a closure member that is selectively resealable and provides selective access to the inner volume.
  • the liner body can have a plurality of layers secured to each other, with at least one of the layers having a different material from another of the layers.
  • the at least one of the plurality of layers can be at least partially made from ethylene vinyl acetate.
  • the at least one of the plurality of layers can be at least partially made from low-density polyethylene.
  • Other materials and combinations of materials can also be used, such as, for example, combining ethylene vinyl acetate and low-density polyethylene in one or more layers.
  • the anti-UV component can be added to the body at about 0.1 percentage by weight (wt%) to 10 wt%.
  • the anti-UV component can also be added to the body at about 1.5 wt% to 4 wt%.
  • the liner body can have first and second panels with the same size and shape, and each of the first and second panels can have the plurality of layers.
  • the plurality of layers can be laminated together.
  • the plurality of layers can be at least an outer layer made of a first material, an intermediate layer made of a second material, and an inner layer made of a third material. At least one of the first material, the second material or the third material can be ethylene vinyl acetate. At least one of the first material, the second material or the third material can be low-density polyethylene.
  • other materials and combinations of materials can also be used for each, some or all of the plurality of layers, such as, for example, combining ethylene vinyl acetate and low-density polyethylene in one or more of the plurality of layers.
  • FIG. 1 is a plan view of a liner of the present invention
  • FIG. 2 is a side cross-sectional view of a portion of the liner of FIG.1 taken along line 2-2 of FIG. 1.
  • a liner of the preferred embodiment which is generally represented by reference numeral 10.
  • the liner 10 preferably, has a collapsed or flattened rectangular shape and can be manipulated into a tubular or cylindrical shape by expanding the inner volume of the liner.
  • alternative shapes can also be used, such as, for example, tubular.
  • the liner 10 has an upper end 20 and a lower end 25.
  • the liner 10 is preferably formed by a first panel 50 and a second panel 100.
  • First and second panels 50, 100 are connected along a periphery 30 of the liner 10, except at upper end 20, to form a sealable enclosure 40.
  • enclosure 40 can be alternatively formed, such as, for example, a tubular sidewall.
  • first and second panels 50, 100 are heat-sealed together along the periphery 30 of the panels.
  • alternative securing methods and structures can be used to form enclosure 40, such as, for example, adhesive.
  • Lower end 25 of the liner 10 preferably has a gusset 27 or other type of fold, which provides added strength and facilitates opening of the liner from its collapsed state. Additionally, gusset 27 allows the bag to stand on its own when in an opened state for convenience to the user.
  • first and second panels 50, 100 along upper end 20 have first and second tabs 60, 110, respectively.
  • First and second tabs 60, 110 preferably have a trapezoidal shape such that the left side of the tab is substantially symmetrical to the right side of the tab.
  • First and second tabs 60, 110 preferably each have first, textured surfaces 65, 115 and second, non-textured surfaces 70, 120 (not shown), which are opposite the first surfaces.
  • a tab perforation 45 is provided at the base of each tab 60, 110 to facilitate removal of the tabs after the liner 10 has been assembled in a rigid holder (not shown).
  • An example of a holder usable with liner 10 is disclosed in U.S. Application Serial No.
  • first surfaces 65, 115 of tabs 60, 110 are preferably at least partially textured and have a tactile feel, whereas the second surfaces 70, 120 have a non-tactile feel.
  • the textured surface 115 is positioned adjacent a non-textured surface 70 when the liner 10 is in its collapsed or flattened form.
  • First and second tabs 60, 110 have a plurality of protuberances 75,
  • Liner 10 preferably has a resealable, closure member 200.
  • Closure member 200 allows selective access to the interior volume of enclosure 40 and provides a substantially air-tight seal for the enclosure for the storage of liquids, such as, breast milk.
  • closure member 200 is preferably a plurality or series of corresponding projection members disposed adjacent to each other, which engage with each other when pressed together.
  • the projection members can have shapes that facilitate the engagement and o disengagement of the closure member 200, and maintain the air-tight seal.
  • sealing projection members of closure or sealing member 200 the present invention contemplates the use of alternative resealable closure structures, shapes, and/or methods that provide for an air-tight seal, such as, for example, a zipper-type5 closure.
  • closure member 200 can be heat-sealed into position along first and second panels 50, 100.
  • first and second panels 50, 100 are heat-sealed along periphery 30.
  • first and second panels 50, 100 are o preferably constructed into a multi-layered film to provide for improved barrier protection for the enclosure 40, such as, for example, to limit the transmission of oxygen through the liner 10 or to absorb UV rays or impede them from transmitting through the liner to the breast milk stored in enclosure 40.
  • first and second panels 50, 100 each have an outer layer 500, an intermediate layer 550, and an inner layer 600.
  • the multi-layered construction allows for the use of different materials having different desired properties, e.g., low oxygen transmission rate or low UV transmission rate, to be combined to provide all of the desired properties to the liner 10.
  • Liner 10 preferably uses materials, which provide for clarity or transparency, as well as strength and flexibility. While the preferred embodiment uses three layers, i.e., outer layer 500, intermediate layer 550 and inner layer 600, the present invention contemplates the use of any number of layers to achieve the desired properties of liner 10.
  • outer, intermediate, and inner layers 500, 550 and 600 are secured together through a lamination process, such as, for example, providing an adhesive layer 650 between each of the outer, intermediate and inner layers.
  • Adhesive layers 650 can be made from any suitable bonding material.
  • the adhesive layers 650 can be the same material or different materials.
  • the adhesive layers 650 can be selected as suited for adhering the particular layers, e.g., outer layer 500 to intermediate layer 550, and their corresponding materials, together.
  • Outer layer 500 will be handled by a user and preferably has good tactile properties to facilitate manipulation of the liner 10.
  • outer layer 500 is made from ethylene vinyl acetate (EVA).
  • EVA provides the desired tactile property including flexibility and gripability.
  • the present invention contemplates the use of other materials for outer layer 500 that provide these desired tactile properties.
  • the intermediate layer 550 is not in contact with either the user and/or the atmosphere, nor with the inner volume of liner 10 and the breast milk stored therein. However, intermediate layer 550 should provide for an acceptable bond between the other two layers, e.g., outer layer 500 and inner layer 600, and their corresponding materials.
  • the intermediate layer 550 is made from nylon.
  • Nylon provides the desired barrier property of a low oxygen transmission rate.
  • the present disclosure contemplates the use of other materials for intermediate layer 550 that provide this desired barrier property of low oxygen transmission rate, such as, for example, polyester or ethylene vinyl alcohol (EVOH).
  • EVOH ethylene vinyl alcohol
  • the present invention contemplates the positioning of the nylon in other layers of liner 10 to provide the desired barrier property of the low oxygen transmission rate.
  • the inner layer 600 is in contact with the inner volume of liner 10 and the breast milk stored therein.
  • inner layer 600 is made from low-density polyethylene (LDPE). LDPE provides the desired properties of flexibility, sealability, moisture barrier, and strength.
  • LDPE low-density polyethylene
  • the preferred embodiment uses the multi-layered construction of liner 10 to achieve the desired properties of low oxygen transmission rate, low UV transmission rate, strong moisture barrier, flexibility, and strength.
  • the present invention contemplates the use of the multi-layered construction of liner 10 to achieve other desired properties of the liner, such as, for example, low gas permeability, barrier properties to water vapors and aromas, easy thermoforming, and high strength parameters.
  • the preferred embodiment uses the multi-layered construction to achieve a liner 10 with both a low oxygen transmission rate, and acceptable moisture barrier, flexibility, and strength properties
  • the present invention contemplates the use of alternative methods and material(s), such as, for example, co-extrusion or coatings on a core or substrate, for providing liner 10 with the attributes described herein.
  • Liner 10 also provides for UV resistivity.
  • liner 10 has one or more anti-UV transmission components and/or additives and/or combinations of anti-UV transmission components, such as, for example, UV absorbers and/or UV inhibitors, incorporated into the liner.
  • the UV absorbers and/or UV inhibitors are components and/or additives that are known in the art or known in the future.
  • a UV absorber is added to the material during the manufacturing process.
  • alternative methods can also be used to resist transmission of the UV rays through liner 10 and penetration into the breast milk stored therein, such as, for example, including an additional layer of material having strong UV resistive properties.
  • the UV absorbers are added to the material of liner 10 in the range of about 0.1 wt% to 10 wt%. More preferably, the UV absorbers are added to the material of liner 10 in the range of about 1.5 wt% to 4 wt%.
  • the following non-limiting example serves to further illustrate the present invention. It will be appreciated by one of ordinary skill in the art that variations in the arrangements and alternatives in the elements of the components of this example are within the scope of the present invention.
  • Liner 10 was tested against liners made by GERBER®, MEDELA®, LANSINOH®, and AVENT® for oxygen transmission rates (OTR).
  • the GERBER® liner was made from LDPE and EVA, and the MEDELA® liner was made from LDPE and polyethylene terephthalate.
  • the test was performed at ambient conditions of temperature 23C° +/- 2C° with a humidity of O 2 of 39% using a MOCON® 2/20 T model instrument and a MOCON® 2/60 model instrument.
  • a first side of each of the liners was placed at a pressure of 760 mm Hg with a content of 21 % O 2 and a second side of each of the liners was placed at a pressure of 760 mm Hg with a content of 100% N 2 .
  • Table One indicates the results of the testing for oxygen transmission rates in cubic centimeters for the entire liner over a 24-hour time period:
  • liner 10 had an OTR that was one order of magnitude less than the next closest liner, which was manufactured by MEDELA®, and two orders of magnitude less than the other liners.
  • the OTR of liner 10 should preferably be less than 2.0 cc over a 24-hour period for substantially eliminating the degradation of nutrients in the breast milk, such as, for example, lipids and vitamins. More preferably, the OTR for liner 10 should be less than 1.0 cc over a 24-hour period for substantially eliminating the degradation of nutrients in the breast milk. Most preferably, the OTR for liner 10 should be less than 0.284 over a 24-hour period for substantially eliminating the degradation of nutrients in the breast milk.

Abstract

There is provided a nurser liner having a closure member for selectively sealing the liner. The nurser liner limits the transmission of oxygen and/or UV rays into the inner volume of the liner.

Description

RESEALABLE NURSER LINER
BACKGROUND OF THE INVENTION 1. Field of the Invention
5 The present invention relates generally to liners for nurser bottles. More particularly, the present invention relates to liners that are resealable.
2. Description of the Prior Art Breast milk is a valuable source of nutrition for0 infants. It contains carbohydrates, proteins, fats, enzymes, minerals, vitamins, and hormones that infants require. It also contains valuable antibodies that can help infants resist infections. Many nutrients found in milk can deteriorate depending on storage conditions and length of storage time. For example, nutrients, such as fats/lipids and vitamins, can degrade5 when exposed to oxygen and/or light. Milk can turn rancid when lipids degrade as a result of oxidative deterioration, or lipid peroxidation. This produces a foul, offensive odor. Some vitamins degrade when exposed to light and/or oxygen. This deterioration of nutrients leads to decreased nutritional value, decreased freshness, and decreases the benefits of o feeding the infant breast milk. Disposable liners for containing breast milk are used with rigid holders to provide a clean, sanitary container for each use, instead of reusable bottles, which require regular washing. Resealable closure members have been incorporated laterally or horizontally across such5 liners. In U.S. Patent No. 6,576,278 to Sprehe, a nurser liner is shown having a continuous, elongated, profiled reclosable fastener disposed laterally across the periphery of the top portion of the enclosure area. In U.S. Patent No. 5,385,251 to Dunn, a nurser liner is shown having a sealing member made up of cooperating projection members that are o disposed laterally across the periphery of the top portion of the enclosure area. Such liners suffer from the drawback of allowing degradation of the breast milk due to oxygen or U V rays. The oxygen or UV transmission can occur because the contemporary bags do not provide proper air-tight sealing mechanisms, and also fail to adequately prevent oxygen and UV transmission through the bag itself. Accordingly, there is a need for a breast milk storage bag, which reduces or eliminates degradation of the breast milk due to oxygen or UV rays.
SUMMARY OF THE INVENTION Against the foregoing background, it is an object of the present invention to provide a liner having properties that reduce or eliminate degradation of the breast milk over time due to oxygen. It is another object of the present invention to provide such a liner having properties that reduce or eliminate degradation of the breast milk over time due to light and/or UV rays. It is yet another object of the present invention to provide such a liner that has improved tactile properties. It is a further object of the present invention to provide such a liner that is easily manufactured. It is yet a further object of the present invention to provide such a liner with a multi-layer construction so that different materials having different desired properties can be utilized to provide a liner with all of the desired properties. These and other objects and advantages of the present invention are provided by a breast milk storage bag that protects the nutrients of breast milk. The bag limits the transmission of oxygen through the bag and absorbs UV rays or impedes them from transmitting through the bag to the breast milk. By limiting the transmission of oxygen and light, degradation of nutrients, such as lipids and vitamins, is greatly inhibited. The bag utilizes materials with low oxygen transmission rates, thus giving extremely good barrier properties to oxygen. Also, an airtight sealing mechanism can be incorporated into the bag so that the material along with the closure results in a bag with an overall very low oxygen transmission rate. In order to incorporate properties to resist UV transmission, UV absorbers and/or inhibitors can also be added to the materials that comprise the bag. This limits damage to vitamins due to light or UV rays. In one aspect of the present invention, a nurser liner is provided that has a body defining an inner volume, and the liner has an oxygen transmission rate into the inner volume of less than about 2.0 cubic centimeters over a 24-hour period. In another aspect of the present invention, a nurser liner is provided that has a body defining an inner volume, and the body is at least partially made with an anti-UV component that reduces transmission of UV rays into the inner volume. In another aspect of the present invention, a nurser liner is provided that has a body defining an inner volume, and the body is at least partially made of a material selected from nylon, ethylene vinyl alcohol, polyester, or any combinations thereof. In another aspect of the present invention, an infant feeding assembly is provided having a liner and a holder. The liner has a body defining a first volume. The holder has an open end and defines a second volume. The liner is disposed in the second volume. The liner has an oxygen transmission rate into the first volume of less than about 2.0 cubic centimeters over a 24-hour period. In another aspect of the present invention, an infant feeding assembly is provided having a liner and a holder. The liner has a body defining a first volume. The holder has an open end and defines a second volume. The liner is disposed in the second volume. The body is at least partially made with an anti-UV component that reduces transmission of UV rays into the first volume. In another aspect of the present invention, an infant feeding assembly is provided having a liner and a holder. The liner has a body defining a first volume. The holder has an open end and defines a second volume. The liner is disposed in the second volume. The body is at least partially made from a material selected from nylon, ethylene vinyl alcohol, polyester, and any combinations thereof. In another aspect of the present invention, a method of storing breast milk is provided in which UV ray transmission into an inner volume of a nurser liner used for storing the breast milk is impeded. As stated above, for another embodiment, the liner body can be at least partially made from a material that impedes transmission of UV rays. The liner body can be at least partially made from: nylon, ethylene vinyl alcohol, polyester, and any combinations thereof. The liner preferably has a closure member that is selectively resealable and provides selective access to the inner volume. The liner body can have a plurality of layers secured to each other, with at least one of the layers having a different material from another of the layers. The at least one of the plurality of layers can be at least partially made from ethylene vinyl acetate. The at least one of the plurality of layers can be at least partially made from low-density polyethylene. Other materials and combinations of materials can also be used, such as, for example, combining ethylene vinyl acetate and low-density polyethylene in one or more layers. The anti-UV component can be added to the body at about 0.1 percentage by weight (wt%) to 10 wt%. The anti-UV component can also be added to the body at about 1.5 wt% to 4 wt%. The liner body can have first and second panels with the same size and shape, and each of the first and second panels can have the plurality of layers. The plurality of layers can be laminated together. The plurality of layers can be at least an outer layer made of a first material, an intermediate layer made of a second material, and an inner layer made of a third material. At least one of the first material, the second material or the third material can be ethylene vinyl acetate. At least one of the first material, the second material or the third material can be low-density polyethylene. Additionally, other materials and combinations of materials can also be used for each, some or all of the plurality of layers, such as, for example, combining ethylene vinyl acetate and low-density polyethylene in one or more of the plurality of layers.
BRIEF DESCRIPTION OF THE DRAWINGS The foregoing, and still further objects and advantages of the present invention, will be more apparent from the following detailed explanation of the preferred embodiments of the invention in connection with the accompanying drawings: FIG. 1 is a plan view of a liner of the present invention; and FIG. 2 is a side cross-sectional view of a portion of the liner of FIG.1 taken along line 2-2 of FIG. 1.
DETAILED DESCRIPTION OF THE INVENTION Referring to the drawings and, in particular, to FIG. 1 , there is provided a liner of the preferred embodiment, which is generally represented by reference numeral 10. The liner 10, preferably, has a collapsed or flattened rectangular shape and can be manipulated into a tubular or cylindrical shape by expanding the inner volume of the liner. However, alternative shapes can also be used, such as, for example, tubular. In an alternative tubular liner 10, there is no seam along the outer sidewall of the liner. The liner 10 has an upper end 20 and a lower end 25. The liner 10 is preferably formed by a first panel 50 and a second panel 100. First and second panels 50, 100 are connected along a periphery 30 of the liner 10, except at upper end 20, to form a sealable enclosure 40. However, enclosure 40 can be alternatively formed, such as, for example, a tubular sidewall. Preferably, first and second panels 50, 100 are heat-sealed together along the periphery 30 of the panels. However, alternative securing methods and structures can be used to form enclosure 40, such as, for example, adhesive. Lower end 25 of the liner 10 preferably has a gusset 27 or other type of fold, which provides added strength and facilitates opening of the liner from its collapsed state. Additionally, gusset 27 allows the bag to stand on its own when in an opened state for convenience to the user. Preferably, first and second panels 50, 100 along upper end 20 have first and second tabs 60, 110, respectively. First and second tabs 60, 110 preferably have a trapezoidal shape such that the left side of the tab is substantially symmetrical to the right side of the tab. First and second tabs 60, 110 preferably each have first, textured surfaces 65, 115 and second, non-textured surfaces 70, 120 (not shown), which are opposite the first surfaces. In the preferred embodiment, a tab perforation 45 is provided at the base of each tab 60, 110 to facilitate removal of the tabs after the liner 10 has been assembled in a rigid holder (not shown). An example of a holder usable with liner 10 is disclosed in U.S. Application Serial No. 10/426,902, filed April 30, 2003, which is commonly owned with this pending application. Applicants hereby incorporate by reference the disclosure of that application in its entirety. However, the present invention is usable with other types of holders of varying sizes, shapes and securing structures. Additionally, liner 10 is usable without a holder. In a preferred embodiment, the first surfaces 65, 115 of tabs 60, 110 are preferably at least partially textured and have a tactile feel, whereas the second surfaces 70, 120 have a non-tactile feel. The textured surface 115 is positioned adjacent a non-textured surface 70 when the liner 10 is in its collapsed or flattened form. First and second tabs 60, 110 have a plurality of protuberances 75,
125 on their first, textured surfaces 65, 115 and a plurality of penetrated depressions 80 on their second, non-textured surfaces 70, 120, respectively. Preferably, the protuberances 125 of second tab 110 correspondingly mate with the depressions 80 on the first tab 60 when the liner 10 is in its collapsed or flattened form. The texture of the first surfaces 65, 115 remains, even when the first and second tabs 60, 110 are separated from each other. Liner 10 preferably has a resealable, closure member 200. Closure member 200 allows selective access to the interior volume of enclosure 40 and provides a substantially air-tight seal for the enclosure for the storage of liquids, such as, breast milk. Throughout this specification, reference is 5 made to the storage of "breast milk." However, the present invention contemplates the storage of other liquids, including formula or milk, which contain nutrients that are subject to degradation and require barrier protection from such. Also, the present invention contemplates the use of the features of liner 10 described herein with a non-resealable closure0 member or no closure member, such as, for example, liner 10 being pre- filled with formula and pre-sealed. An example of an alternative closure member 200 usable with liner 10 is disclosed in U.S. Application Serial No. 10/643,595, filed August 19, 2003, which is commonly owned with this pending application. Applicants hereby incorporate by reference the5 disclosure of that application in its entirety. In this embodiment, closure member 200 is preferably a plurality or series of corresponding projection members disposed adjacent to each other, which engage with each other when pressed together. The projection members can have shapes that facilitate the engagement and o disengagement of the closure member 200, and maintain the air-tight seal. While the preferred embodiment uses sealing projection members of closure or sealing member 200, the present invention contemplates the use of alternative resealable closure structures, shapes, and/or methods that provide for an air-tight seal, such as, for example, a zipper-type5 closure. Also, closure member 200 can be heat-sealed into position along first and second panels 50, 100. This heat-sealing can be done at the same time that the first and second panels 50, 100 are heat-sealed along periphery 30. Referring to FIGS. 1 and 2, first and second panels 50, 100 are o preferably constructed into a multi-layered film to provide for improved barrier protection for the enclosure 40, such as, for example, to limit the transmission of oxygen through the liner 10 or to absorb UV rays or impede them from transmitting through the liner to the breast milk stored in enclosure 40. In the preferred embodiment, first and second panels 50, 100 each have an outer layer 500, an intermediate layer 550, and an inner layer 600. The multi-layered construction allows for the use of different materials having different desired properties, e.g., low oxygen transmission rate or low UV transmission rate, to be combined to provide all of the desired properties to the liner 10. Liner 10 preferably uses materials, which provide for clarity or transparency, as well as strength and flexibility. While the preferred embodiment uses three layers, i.e., outer layer 500, intermediate layer 550 and inner layer 600, the present invention contemplates the use of any number of layers to achieve the desired properties of liner 10. In the preferred embodiment, outer, intermediate, and inner layers 500, 550 and 600 are secured together through a lamination process, such as, for example, providing an adhesive layer 650 between each of the outer, intermediate and inner layers. Adhesive layers 650 can be made from any suitable bonding material. The adhesive layers 650 can be the same material or different materials. The adhesive layers 650 can be selected as suited for adhering the particular layers, e.g., outer layer 500 to intermediate layer 550, and their corresponding materials, together.
Alternative methods can also be used to secure outer, intermediate, and inner layers 500, 550 and 600. Outer layer 500 will be handled by a user and preferably has good tactile properties to facilitate manipulation of the liner 10. Preferably, outer layer 500 is made from ethylene vinyl acetate (EVA). EVA provides the desired tactile property including flexibility and gripability. However, the present invention contemplates the use of other materials for outer layer 500 that provide these desired tactile properties. The intermediate layer 550 is not in contact with either the user and/or the atmosphere, nor with the inner volume of liner 10 and the breast milk stored therein. However, intermediate layer 550 should provide for an acceptable bond between the other two layers, e.g., outer layer 500 and inner layer 600, and their corresponding materials. Preferably, the intermediate layer 550 is made from nylon. Nylon provides the desired barrier property of a low oxygen transmission rate. However, the present disclosure contemplates the use of other materials for intermediate layer 550 that provide this desired barrier property of low oxygen transmission rate, such as, for example, polyester or ethylene vinyl alcohol (EVOH). Additionally, the present invention contemplates the positioning of the nylon in other layers of liner 10 to provide the desired barrier property of the low oxygen transmission rate. The inner layer 600 is in contact with the inner volume of liner 10 and the breast milk stored therein. Preferably, inner layer 600 is made from low-density polyethylene (LDPE). LDPE provides the desired properties of flexibility, sealability, moisture barrier, and strength. The preferred embodiment uses the multi-layered construction of liner 10 to achieve the desired properties of low oxygen transmission rate, low UV transmission rate, strong moisture barrier, flexibility, and strength. However, the present invention contemplates the use of the multi-layered construction of liner 10 to achieve other desired properties of the liner, such as, for example, low gas permeability, barrier properties to water vapors and aromas, easy thermoforming, and high strength parameters. Also, while the preferred embodiment uses the multi-layered construction to achieve a liner 10 with both a low oxygen transmission rate, and acceptable moisture barrier, flexibility, and strength properties, the present invention contemplates the use of alternative methods and material(s), such as, for example, co-extrusion or coatings on a core or substrate, for providing liner 10 with the attributes described herein. Liner 10 also provides for UV resistivity. Preferably, liner 10 has one or more anti-UV transmission components and/or additives and/or combinations of anti-UV transmission components, such as, for example, UV absorbers and/or UV inhibitors, incorporated into the liner. The UV absorbers and/or UV inhibitors are components and/or additives that are known in the art or known in the future. In the preferred embodiment, a UV absorber is added to the material during the manufacturing process. However, alternative methods can also be used to resist transmission of the UV rays through liner 10 and penetration into the breast milk stored therein, such as, for example, including an additional layer of material having strong UV resistive properties. Preferably, the UV absorbers are added to the material of liner 10 in the range of about 0.1 wt% to 10 wt%. More preferably, the UV absorbers are added to the material of liner 10 in the range of about 1.5 wt% to 4 wt%. The following non-limiting example serves to further illustrate the present invention. It will be appreciated by one of ordinary skill in the art that variations in the arrangements and alternatives in the elements of the components of this example are within the scope of the present invention. Liner 10 was tested against liners made by GERBER®, MEDELA®, LANSINOH®, and AVENT® for oxygen transmission rates (OTR). The GERBER® liner was made from LDPE and EVA, and the MEDELA® liner was made from LDPE and polyethylene terephthalate. The test was performed at ambient conditions of temperature 23C° +/- 2C° with a humidity of O2 of 39% using a MOCON® 2/20 T model instrument and a MOCON® 2/60 model instrument. A first side of each of the liners was placed at a pressure of 760 mm Hg with a content of 21 % O2 and a second side of each of the liners was placed at a pressure of 760 mm Hg with a content of 100% N2. Table One indicates the results of the testing for oxygen transmission rates in cubic centimeters for the entire liner over a 24-hour time period:
TABLE 1
Figure imgf000013_0001
As indicated in Table One, liner 10 had an OTR that was one order of magnitude less than the next closest liner, which was manufactured by MEDELA®, and two orders of magnitude less than the other liners. By significantly reducing the oxygen transmission through liner 10 and into the breast milk stored therein, degradation of nutrients in the breast milk, such as, for example, lipids and vitamins, is greatly inhibited. Liner 10, and its significantly reduced oxygen transmission rate, prevents the breast milk from turning rancid from lipids degrading as a result of oxidative deterioration, or lipid peroxidation. From the test data, it was determined that the OTR of liner 10 should preferably be less than 2.0 cc over a 24-hour period for substantially eliminating the degradation of nutrients in the breast milk, such as, for example, lipids and vitamins. More preferably, the OTR for liner 10 should be less than 1.0 cc over a 24-hour period for substantially eliminating the degradation of nutrients in the breast milk. Most preferably, the OTR for liner 10 should be less than 0.284 over a 24-hour period for substantially eliminating the degradation of nutrients in the breast milk. The present invention having been thus described with particular reference to the preferred forms thereof, it will be obvious that various changes and modifications may be made therein without departing from the spirit and scope of the invention as defined in the appended claims.

Claims

WHAT IS CLAIMED IS:
1. A nurser liner comprising: a body defining an inner volume, wherein the liner has an oxygen transmission rate into said inner volume of less than about 2.0 cubic centimeters over a 24-hour period.
2. The liner of claim 1 , wherein said oxygen transmission rate into said inner volume is less than about 1.0 cubic centimeters over a 24- hour period.
3. The liner of claim 1 , wherein said oxygen transmission rate into said inner volume is less than about 0.284 cubic centimeters over a5 24-hour period.
4. The liner of claim 1 , wherein said body comprises a material that impedes transmission of UV rays.
0 5. The liner of claim 1 , wherein said body comprises a material selected from the group consisting essentially of nylon, ethylene vinyl alcohol, polyester, and any combinations thereof.
6. The liner of claim 1 , further comprising a closure member5 being selectively resealable and providing selective access to said inner volume.
7. The liner of claim 1 , wherein said body comprises a plurality of layers secured to each other, and wherein at least one of said plurality of o layers has a different material from another of said plurality of layers.
8. The liner of claim 1 , wherein said body comprises a plurality of layers secured to each other, and wherein at least one of said plurality of layers comprises ethylene vinyl acetate.
9. The liner of claim 1 , wherein said body comprises a plurality of layers secured to each other, and wherein at least one of said plurality of layers comprises low-density polyethylene.
10. A nurser liner comprising: a body defining an inner volume, wherein said body has an anti-UV component that reduces transmission of UV rays into said inner volume.
11. The liner of claim 10, wherein said anti-UV component is added to said body at about 0.1 wt% to 10 wt%.
12. The liner of claim 10, wherein said anti-UV component is added to said body at about 1.5 wt% to 4 wt%.
13. The liner of claim 10, wherein the liner has an oxygen transmission rate into said inner volume of less than about 2.0 cubic centimeters over a 24-hour period.
14. The liner of claim 10, wherein said body is made of a material selected from the group consisting essentially of nylon, ethylene vinyl alcohol, polyester, and any combinations thereof.
15. The liner of claim 10, further comprising a closure member being selectively resealable and providing selective access to said inner volume.
16. The liner of claim 10, wherein said body comprises a plurality of layers secured to each other, at least one of said plurality of layers comprising a different material from another of said plurality of layers.
17. The liner of claim 16, wherein said body has first and second panels with the same size and shape, said first and second panels opposing each other and being connected along a periphery to define said inner volume, each of said first and second panels having said plurality of layers.
18. The liner of claim 10, wherein said body comprises a plurality of layers secured to each other, and wherein at least one of said plurality of layers comprises ethylene vinyl acetate.
19. The liner of claim 10, wherein said body comprises a plurality of layers secured to each other, and wherein at least one of said plurality of layers comprises low-density polyethylene.
20. A nurser liner comprising: a body defining an inner volume, wherein said body has a material selected from the group consisting essentially of nylon, ethylene vinyl alcohol, polyester, and any combinations thereof.
21. The liner of claim 20, wherein said body further comprises an anti-UV component that reduces transmission of UV rays into said inner volume.
22. The liner of claim 21 , wherein said anti-UV component is added to said body at about 0.1 wt% to 10 wt%.
23. The liner of claim 20, wherein the liner has an oxygen transmission rate into said inner volume of less than about 2.0 cubic centimeters over a 24-hour period.
5 24. The liner of claim 20, further comprising a closure member being selectively resealable and providing selective access to said inner volume.
25. The liner of claim 20, wherein said body has a plurality of0 layers secured to each other, at least one of said plurality of layers comprising a different material from another of said plurality of layers.
26. The liner of claim 25, wherein said plurality of layers are laminated together.5
27. The liner of claim 25, wherein said body has first and second panels with the same size and shape, said first and second panels opposing each other and being connected along a periphery to define said inner volume, each of said first and second panels having said plurality of o layers.
28. The liner of claim 25, wherein said plurality of layers has an outer layer made of a first material, an intermediate layer made of a second material, and an inner layer made of a third material.5 29. The liner of claim 28, wherein at least one of said first material, said second material or said third material is ethylene vinyl acetate.
o
30. The liner of claim 28, wherein at least one of said first material, said second material or said third material is low-density polyethylene.
31. An infant feeding assembly comprising: a liner having a body defining a first volume; and a holder having an open end and defining a second volume, wherein said liner is disposed in said second volume, and wherein said liner has an oxygen transmission rate into said first volume of less than about 2.0 cubic centimeters over a 24-hour period.
32. The assembly of claim 31 , wherein said oxygen transmission rate into said first volume is less than about 1.0 cubic centimeters over a 24-hour period.
33. The assembly of claim 31 , wherein said oxygen transmission rate into said first volume is less than about 0.284 cubic centimeters over a
24-hour period.
34. The assembly of claim 31 , wherein said body has a material that impedes transmission of UV rays.
35. The assembly of claim 31 , wherein said body is made of a material selected from the group consisting essentially of nylon, ethylene vinyl alcohol, polyester, and any combinations thereof.
36. The assembly of claim 31 , further comprising a closure member being selectively resealable and providing selective access to said first volume.
37. An infant feeding assembly comprising: a liner having a body defining a first volume; and a holder having an open end and defining a second volume, wherein said liner is disposed in said second volume, and wherein said body comprises an anti-UV component that reduces transmission of UV rays into said first volume.
5 38. The assembly of claim 37, wherein said anti-UV component is added to said body at about 0.1 wt% to 10 wt%.
39. The assembly of claim 37, wherein said anti-UV component0 is added to said body at about 1.5 wt% to 4 wt%.
40. The assembly of claim 37, wherein said liner has an oxygen transmission rate into said first volume of less than about 2.0 cubic centimeters over a 24-hour period.5 41. The assembly of claim 37, wherein said body is made of a material selected from the group consisting essentially of nylon, ethylene vinyl alcohol, polyester, and any combinations thereof.
o
42. The assembly of claim 37, further comprising a closure member being selectively resealable and providing selective access to said first volume.
43. The assembly of claim 37, wherein said body has a plurality5 of layers secured to each other, at least one of said plurality of layers comprising a different material from another of said plurality of layers.
44. The assembly of claim 43, wherein said plurality of layers are laminated together.0
45. An infant feeding assembly comprising: a liner having a body defining a first volume; and
5 a holder having an open end and defining a second volume, wherein said liner is disposed in said second volume, and wherein said body comprises a material selected from the group consisting essentially of nylon, ethylene vinyl alcohol, polyester, and any combinations thereof. 0 46. The assembly of claim 45, wherein said body has an anti-UV component that reduces transmission of UV rays into said first volume.
47. The assembly of claim 46, wherein said anti-UV component is added to said body at about 0.1 wt% to 10 wt%.5 48. The assembly of claim 45, wherein said liner has an oxygen transmission rate into said first volume of less than about 2.0 cubic centimeters over a 24-hour period.
o
49. The assembly of claim 45, further comprising a closure member being selectively resealable and providing selective access to said first volume.
50. The assembly of claim 45, wherein said body has a plurality5 of layers secured to each other, at least one of said plurality of layers having a different material from another of said plurality of layers.
51. The assembly of claim 50, wherein said plurality of layers are laminated together.0
52. The assembly of claim 50, wherein said body has first and second panels with the same size and shape, said first and second panels opposing each other and being connected along a periphery to define said first volume, each of said first and second panels having said plurality of layers.
5 53. The assembly of claim 50, wherein said plurality of layers has an outer layer made of a first material, an intermediate layer made of a second material, and an first layer made of a third material.
54. The assembly of claim 53, wherein at least one of said first0 material, said second material or said third material is ethylene vinyl acetate.
55. The assembly of claim 53, wherein at least one of said first material, said second material or said third material is low-density5 polyethylene.
56. A method of storing breast milk comprising: limiting an oxygen transmission rate into an inner volume of a nurser o liner used for storing said breast milk to less than about 2.0 cubic centimeters over a 24-hour time period.
57. The method of claim 56, further comprising limiting said oxygen transmission rate into said inner volume to less than about 1.0 5 cubic centimeters over a 24-hour period.
58. The method of claim 56, further comprising limiting said oxygen transmission rate into said inner volume to less than about 0.284 cubic centimeters over a 24-hour period.0
59. The method of claim 56, wherein the step of limiting said oxygen transmission rate comprises: providing said nurser liner with a substantially air-tight closure member; and forming at least a portion of a body of said nurser liner of a material selected from the group consisting essentially of nylon, ethylene vinyl alcohol, polyester, and any combinations thereof.
60. The method of claim 56, further comprising adding an anti- UV component to said nurser liner to impede transmission of UV rays into said inner volume.
61. A method of storing breast milk comprising: impeding UV ray transmission into an inner volume of a nurser liner used for storing said breast milk.
62. The method of claim 61 , further comprising adding an anti- UV component to said nurser liner for impeding said UV ray transmission.
63. The method of claim 62, wherein said anti-UV component is about 0.1 wt% to 10 wt% of said body.
64. The method of claim 62, wherein said anti-UV component is about 1.5 wt% to 4 wt% of said body.
PCT/US2004/029539 2003-09-10 2004-09-10 Resealable nurser liner WO2005025481A2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CA2537817A CA2537817C (en) 2003-09-10 2004-09-10 Resealable nurser liner

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US10/659,759 US7073674B2 (en) 2003-09-10 2003-09-10 Resealable nurser liner
US10/659,759 2003-09-10

Publications (2)

Publication Number Publication Date
WO2005025481A2 true WO2005025481A2 (en) 2005-03-24
WO2005025481A3 WO2005025481A3 (en) 2005-11-03

Family

ID=34227004

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US2004/029539 WO2005025481A2 (en) 2003-09-10 2004-09-10 Resealable nurser liner

Country Status (3)

Country Link
US (1) US7073674B2 (en)
CA (1) CA2537817C (en)
WO (1) WO2005025481A2 (en)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7467893B2 (en) * 2000-03-14 2008-12-23 Com-Pac International, Inc. Reclosable plastic bag
US8083421B2 (en) * 2007-05-07 2011-12-27 Flextronics Ap, Llc AF/zoom shutter with two blades function
US8192085B2 (en) * 2009-08-20 2012-06-05 S.C. Johnson & Son, Inc. Enhancement to a closure mechanism for a reclosable pouch and a method of opening same
US20120051670A1 (en) * 2010-02-24 2012-03-01 Illinois Tool Works Inc. Storage bag for breast pump
US8678651B2 (en) * 2010-07-19 2014-03-25 S.C. Johnson & Son, Inc. Disposable storage bags
US8757405B2 (en) 2012-03-01 2014-06-24 Drinknrinse, Llc Apparatus and composition for inhibiting dental caries

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4634006A (en) * 1983-06-08 1987-01-06 Shozaburo Yanase Bag for mothers milk
WO1990014066A1 (en) * 1989-05-23 1990-11-29 E.I. Du Pont De Nemours And Company Disposable pre-sterilized feeding package
US5295957A (en) * 1991-12-23 1994-03-22 Pigeon Co., Ltd. Breast pump having a pressure adjusting mechanism
US5617972A (en) * 1994-03-25 1997-04-08 Playtex Products Inc. Nurser liner
US5750226A (en) * 1994-03-02 1998-05-12 Abbott Laboratories Light excluding multi-layer plastic barrier bottle
US6479160B1 (en) * 2001-03-09 2002-11-12 Honeywell International Inc. Ultra high oxygen barrier films and articles made therefrom
US6576278B1 (en) * 2000-03-14 2003-06-10 Com-Pac International, Inc. Reclosable baby bottle liner and baby bottle having reclosable liner

Family Cites Families (42)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE489576A (en) * 1948-12-21
US2697531A (en) * 1951-06-08 1954-12-21 Robert C Hood Flexible disposable nursing bottle
US3394018A (en) * 1966-05-04 1968-07-23 Medics Res And Dev Inc Package-nurser
US3334764A (en) * 1966-10-25 1967-08-08 John P Fouser Infant nurser
US3931886A (en) * 1970-03-17 1976-01-13 Akira Yamauchi Inner bag for containers
US3822806A (en) * 1971-11-24 1974-07-09 Quester Corp Infant feeding means
US3871542A (en) * 1973-09-24 1975-03-18 Ilse M Hammer Disposable nursing container
US4051265A (en) * 1974-10-10 1977-09-27 Celanese Corporation Package for light and oxygen sensitive food
US4139517A (en) * 1977-11-25 1979-02-13 Mobay Chemical Corporation Transparent pigmented polycarbonate container
US4392576A (en) * 1981-06-04 1983-07-12 The Reseal Container Corporation Of America Multilayered container including a layer of microcrimped metallic foil
US4623069A (en) * 1984-04-12 1986-11-18 Baxter Travenol Laboratories, Inc. Nipple and nursing container
US4640424A (en) * 1984-04-12 1987-02-03 Baxter Travenol Laboratories, Inc. Self-opening nipple construction and nursing container
US4706827A (en) * 1984-04-12 1987-11-17 Baxter Travenol Laboratories, Inc. Container such as a nursing container, and packaging arrangement therefor
US4640425A (en) * 1984-04-12 1987-02-03 Baxter Travenol Laboratories, Inc. One-piece nursing container with means for storing nipple
US4657151A (en) * 1984-04-12 1987-04-14 Baxter Travenol Laboratories, Inc. Container such as a nursing container, with flexible liner
US4637934A (en) * 1984-04-12 1987-01-20 Baxter Travenol Laboratories, Inc. Liquid container with integral opening apparatus
US4629080A (en) * 1984-04-12 1986-12-16 Baxter Travenol Laboratories, Inc. Container such as a nursing container, having formed enclosure chamber for a dispensing member
GB8503140D0 (en) * 1985-02-07 1985-03-13 Wyeth John & Brother Ltd Teat unit
JPS62221352A (en) * 1986-03-22 1987-09-29 株式会社新素材総合研究所 Liquid drug containing container preventing deterioratioan of liquid drug by oxygen and its production
EP0280691B1 (en) 1986-07-04 1994-01-05 WALKER, Rohan Charles Wilson Disposable inserts for nursing bottles
US4983432A (en) * 1987-07-30 1991-01-08 E. I. Du Pont De Nemours And Company Ethylene vinyl alcohol copolymers containing platelet-type mica fillers of multi-layer containers
US4869912A (en) * 1988-02-12 1989-09-26 Abbott Laboratories Pre-filled nurser pouch
US5424086A (en) * 1988-03-02 1995-06-13 Walker; Rohan C. W. Method of manufacturing disposable inserts for nursing bottles
US4919983A (en) * 1988-04-04 1990-04-24 Fremin Kit C Thermochromatic infant feeding container
US5061534A (en) * 1988-04-22 1991-10-29 American National Can Company High oxygen barrier film
DE68901110D1 (en) * 1988-05-16 1992-05-07 Hosokawa Yoko Kk SEALABLE BAG.
US4930690A (en) * 1988-09-07 1990-06-05 Nestec S.A. Container and teat feeding assembly
US4928474A (en) * 1988-09-21 1990-05-29 W. R. Grace & Co.-Conn. Oxygen-barrier retort pouch
US4950236A (en) * 1988-10-21 1990-08-21 Aurora Search Ltd. Breast pump adapter for filling infant nursers having disposable liners
US5358476A (en) * 1990-08-17 1994-10-25 Aurora Search Ltd. Breast pump adapter for filling infant nursers having disposable liners and methods of operation
JPH0798541B2 (en) * 1991-06-25 1995-10-25 東洋製罐株式会社 Laminated bag for food packaging
WO1994026231A1 (en) * 1993-05-11 1994-11-24 Munchkin Bottling, Inc. Disposable bottle bags for use with infant nursing systems
US6117506A (en) * 1994-03-30 2000-09-12 Silgan Plastics Corporation Multilayer bottle with encapsulated dark layer
EP0700777B1 (en) * 1994-09-07 2000-12-27 Cryovac, Inc. Chlorine-free multilayer film material, process for its manufacture and its use
US5622431A (en) * 1995-06-26 1997-04-22 Reynolds Consumer Products Inc. External zipper clip for a bag
US5830545A (en) * 1996-04-29 1998-11-03 Tetra Laval Holdings & Finance, S.A. Multilayer, high barrier laminate
US5910138A (en) * 1996-05-13 1999-06-08 B. Braun Medical, Inc. Flexible medical container with selectively enlargeable compartments and method for making same
NZ333941A (en) * 1996-08-16 2000-11-24 Cryovac Inc Multilayered film comprising a polyamide sealant, a polyamide core layer, and an oxygen barrier layer
US5896989A (en) * 1998-02-20 1999-04-27 Bracco Research Usa Flexible medical container packaging
US6500559B2 (en) * 1998-05-04 2002-12-31 Cryovac, Inc. Multiple layer film with amorphous polyamide layer
US6050432A (en) * 1998-06-09 2000-04-18 Koehnke; Diane Lynn Sealable slip-in baby bottle liner
US6861127B2 (en) * 1999-10-20 2005-03-01 Curwood, Inc. Thermoformable multi-layer film

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4634006A (en) * 1983-06-08 1987-01-06 Shozaburo Yanase Bag for mothers milk
WO1990014066A1 (en) * 1989-05-23 1990-11-29 E.I. Du Pont De Nemours And Company Disposable pre-sterilized feeding package
US5295957A (en) * 1991-12-23 1994-03-22 Pigeon Co., Ltd. Breast pump having a pressure adjusting mechanism
US5750226A (en) * 1994-03-02 1998-05-12 Abbott Laboratories Light excluding multi-layer plastic barrier bottle
US5617972A (en) * 1994-03-25 1997-04-08 Playtex Products Inc. Nurser liner
US6576278B1 (en) * 2000-03-14 2003-06-10 Com-Pac International, Inc. Reclosable baby bottle liner and baby bottle having reclosable liner
US6479160B1 (en) * 2001-03-09 2002-11-12 Honeywell International Inc. Ultra high oxygen barrier films and articles made therefrom

Also Published As

Publication number Publication date
WO2005025481A3 (en) 2005-11-03
US20050053698A1 (en) 2005-03-10
CA2537817C (en) 2012-08-28
US7073674B2 (en) 2006-07-11
CA2537817A1 (en) 2005-03-24

Similar Documents

Publication Publication Date Title
JP5640519B2 (en) Method for manufacturing self-supporting container
US9862512B2 (en) Method for sealing a food storage bag
JP6876468B2 (en) Manufacturing method of intermediate material for soft packaging material container, manufacturing method of soft packaging material container and manufacturing method of soft packaging material container package
JP6920077B2 (en) Flexible packaging material container and flexible packaging material container packaging
US20120208039A1 (en) Multilayer film of a wall of a bag having seams and intended for a biopharmaceutical product
JP2008515533A (en) A bottle liner of a ready-to-use type containing a predetermined amount of infant milk and a method for producing the same.
US20200140178A1 (en) Packaging material, packaging bag, packaged article, and packaging method
JP2007020710A (en) Medical container packing body
BR112017021137B1 (en) Package, packaged product, method of releasing at least one agent into the chamber part of the package, and packaging process
CA2537817C (en) Resealable nurser liner
JP2018115026A (en) Packaging bag and producing method thereof
US20130213827A1 (en) Flexible Container with Liquid Block
JPH08132573A (en) Oxygen absorbing laminate
KR101538051B1 (en) A tetrahedral shape packaging container and a tetrahedral shape packaging container method
JP2004345731A (en) Packaging bag for vegetable and fruit and package using it
JP2000072161A (en) Irregularly-shaped container with mouth stopper
JP2008213875A (en) Multichambered bag and package
JP2007112489A (en) Self-standing packaging bag with re-seal function
JP2006056526A (en) Deoxidation packaging container for heat treatment
CN109310150B (en) Collapsible tobacco container
JPH09328142A (en) Container having deoxygenation property provided with spout, and method for filling liquid or semi-liquid substance
CN220054865U (en) Packaging bag and combined packing assembly
JP2006008180A (en) Inner packaging bag for bag-in-box
JPS5916303Y2 (en) packaging
JP2019026307A (en) Standing pouch

Legal Events

Date Code Title Description
AK Designated states

Kind code of ref document: A2

Designated state(s): AE AG AL AM AT AU AZ BA BB BG BW BY BZ CA CH CN CO CR CU CZ DK DM DZ EC EE EG ES FI GB GD GE GM HR HU ID IL IN IS JP KE KG KP KZ LC LK LR LS LT LU LV MA MD MK MN MW MX MZ NA NI NO NZ PG PH PL PT RO RU SC SD SE SG SK SY TJ TM TN TR TT TZ UA UG US UZ VN YU ZA ZM

AL Designated countries for regional patents

Kind code of ref document: A2

Designated state(s): GM KE LS MW MZ NA SD SZ TZ UG ZM ZW AM AZ BY KG MD RU TJ TM AT BE BG CH CY DE DK EE ES FI FR GB GR HU IE IT MC NL PL PT RO SE SI SK TR BF CF CG CI CM GA GN GQ GW ML MR SN TD TG

121 Ep: the epo has been informed by wipo that ep was designated in this application
WWE Wipo information: entry into national phase

Ref document number: 2537817

Country of ref document: CA

DPEN Request for preliminary examination filed prior to expiration of 19th month from priority date (pct application filed from 20040101)
122 Ep: pct application non-entry in european phase