Claims
- 1. A hydrogel composition comprised of a discontinuous hydrophobic phase and a hydrophilic phase, wherein:
(a) the discontinuous hydrophobic phase comprises (i) a hydrophobic polymer, (ii) a plasticizer, (iii) a tackifying resin, and (iv) an optional antioxidant; and (b) the hydrophilic phase is either discontinuous or continuous.
- 2. The hydrogel composition of claim 1, wherein the hydrophilic phase is discontinuous.
- 3. The hydrogel composition of claim 2, wherein the hydrophilic phase is comprised of a crosslinked hydrophilic polymer that is insoluble in water.
- 4. The hydrogel composition of claim 3, wherein the water-swellable polymer is a crosslinked cellulosic polymer.
- 5. The hydrogel composition of claim 4, wherein the water-swellable polymer is crosslinked sodium carboxymethylcellulose.
- 6. The hydrogel composition of claim 1, wherein the hydrophilic phase is continuous.
- 7. The hydrogel composition of claim 6, wherein the hydrophilic phase is comprised of: (a) a water-swellable polymer that is insoluble in water at a pH of less than 8.5; (b) a blend of a hydrophilic polymer and a complementary oligomer capable of hydrogen bonding thereto; and (c) an optionally added low molecular weight plasticizer.
- 8. The hydrogel composition of claim 7, wherein the water-swellable polymer comprises a cellulose ester composition.
- 9. The hydrogel composition of claim 8, wherein the cellulose ester composition is comprised of at least one cellulosic polymer containing unesterified cellulose units, cellulose acetate units, and either cellulose butyrate units or cellulose propionate units.
- 10. The hydrogel composition of claim 9, wherein the cellulosic polymer is cellulose acetate butyrate.
- 11. The hydrogel composition of claim 9, wherein the cellulosic polymer is cellulose acetate propionate.
- 12. The hydrogel composition of claim 9, wherein the cellulose ester composition comprises a mixture of cellulose acetate butyrate and cellulose acetate propionate.
- 13. The hydrogel composition of claim 7, wherein the water-swellable polymer is selected from polymers and copolymers of acrylic acid, methacrylic acid, methyl acrylate, ethyl acrylate, methyl methacrylate, and/or ethyl methacrylate.
- 14. The hydrogel composition of claim 13, wherein the water-swellable polymer is f a copolymer of methacrylic acid and methyl methacrylate.
- 15. The hydrogel composition of claim 14, wherein the copolymer has a ratio of free carboxyl groups to ester groups in the range of about 1:1 to 1:2.
- 16. The hydrogel composition of claim 7, wherein the hydrophilic polymer is selected from the group consisting of poly(N-vinyl lactams), poly(N-vinyl amides), poly(N-alkylacrylamides), polyacrylic acid, polymethacrylic acid, polyvinyl alcohol, polyvinylamine, and copolymers and blends thereof.
- 17. The hydrogel composition of claim 16, wherein the hydrophilic polymer is selected from the group consisting of poly(N-vinyl lactams), poly(N-vinyl amides), poly(N-alkylacrylamides), and copolymers and blends thereof.
- 18. The hydrogel composition of claim 17, wherein the hydrophilic polymer is a poly(N-vinyl lactam).
- 19. The hydrogel composition of claim 18, wherein the hydrophilic polymer is a poly(N-vinyl lactam) homopolymer.
- 20. The hydrogel composition of claim 18, wherein the poly(N-vinyl lactam) is selected from the group consisting of polyvinyl pyrrolidone, polyvinyl caprolactam, and blends thereof.
- 21. The hydrogel composition of claim 20, wherein the poly(N-vinyl lactam) is polyvinyl pyrrolidone.
- 22. The hydrogel composition of claim 20, wherein the poly(N-vinyl lactam) is polyvinyl caprolactam.
- 23. The hydrogel composition of claim 7, wherein the hydrophilic polymer has a number average molecular weight in the range of approximately 100,000 to 2,000,000.
- 24. The hydrogel composition of claim 23, wherein the hydrophilic polymer has a number average molecular weight in the range of approximately 500,000 to 1,500,000.
- 25. The hydrogel composition of claim 7, wherein the complementary oligomer has a molecular weight in the range of about 45 to 800.
- 26. The hydrogel composition of claim 25, wherein the complementary oligomer has a molecular weight in the range of about 45 to 600.
- 27. The hydrogel composition of claim 25, wherein the complementary oligomer has a molecular weight in the range of about 300 to 600.
- 28. The hydrogel composition of claim 25, wherein the complementary oligomer is selected from the group consisting of polyalcohols, monomeric and oligomeric alkylene glycols, polyalkylene glycols, carboxyl-terminated polyalkylene glycols, amino-terminated polyalkylene glycols, ether alcohols, alkane diols and carbonic diacids.
- 29. The hydrogel composition of claim 28, wherein the complementary oligomer is selected from the group consisting of polyalkylene glycols and carboxyl-terminated polyalkylene glycols.
- 30. The hydrogel composition of claim 29, wherein the complementary oligomer is selected from the group consisting of polyethylene glycol and carboxyl-terminated polyethylene glycol.
- 31. The hydrogel composition of claim 29, wherein the complementary oligomer is polyethylene glycol.
- 32. The hydrogel composition of claim 31, wherein the complementary oligomer is polyethylene glycol 400.
- 33. The hydrogel composition of claim 7, wherein the low molecular weight plasticizer is selected from the group consisting of dialkyl phthalates, dicycloalkyl phthalates, diaryl phthalates, mixed alkyl-aryl phthalates, alkyl phosphates, aryl phosphates, alkyl citrates, citrate esters, alkyl adipates, dialkyl tartrates, dialkyl sebacates, dialkyl succinates, alkyl glycolates, alkyl glycerolates, glycol esters, glycerol esters, and mixtures thereof.
- 34. The hydrogel composition of claim 33, wherein the low molecular weight plasticizer is selected from the group consisting of dimethyl phthalate, diethyl phthalate, dipropyl phthalate, di(2-ethylhexyl)phthalate, di-isopropyl phthalate, diamyl phthalate, dicapryl phthalate, tributyl phosphate, trioctyl phosphate, tricresyl phosphate, triphenyl phosphate, trimethyl citrate, triethyl citrate, tributyl citrate, acetyl triethyl citrate, trihexyl citrate, dioctyl adipate, diethyl adipate, di(2-methylethyl)adipate, dihexyl adipate, diethyl tartrate, dibutyl tartrate, diethyl sebacate, dipropyl sebacate, dinonyl sebacate, diethyl succinate, dibutyl succinate, glycerol diacetate, glycerol triacetate, glycerol monolactate diacetate, methyl phthalyl ethyl glycolate, butyl phthalyl butyl glycolate, ethylene glycol diacetate, ethylene glycol dibutyrate, triethylene glycol diacetate, triethylene glycol dibutyrate, triethylene glycol dipropionate, and mixtures thereof.
- 35. The hydrogel composition of claim 34, wherein the low molecular weight plasticizer is dioctyl adipate.
- 36. The hydrogel composition of claim 1, wherein the optional antioxidant is present.
- 37. The hydrogel composition of claim 36, wherein the antioxidant is a sterically hindered phenol.
- 38. The hydrogel composition of claim 1, wherein the hydrophobic polymer is a hydrophobic pressure-sensitive adhesive.
- 39. The hydrogel composition of claim 38, wherein the hydrophobic polymer is selected from the group consisting of crosslinked butyl rubbers, natural rubber adhesives, vinyl ether polymers, polysiloxanes, polyisoprene, isobutylene-isoprene copolymers, butadiene acrylonitrile rubber, polychloroprene, atactic polypropylene, ethylene-propylene-diene terpolymers, and combinations thereof.
- 40. The hydrogel composition of claim 39, wherein the hydrophobic polymer is a crosslinked butyl rubber.
- 41. The hydrogel composition of claim 1, wherein the plasticizer is an elastomeric polymer.
- 42. The hydrogel composition of claim 41, wherein the elastomeric polymer is a styrene-based plasticizer selected from the group consisting of styrene-isoprene block copolymers, styrene-butadiene block copolymers, styrene-isoprene-styrene block copolymers, styrene-butadiene-styrene block copolymers, and combinations thereof.
- 43. The hydrogel composition of claim 7, wherein the hydrophilic polymer is crosslinked.
- 44. The hydrogel composition of claim 1, further including an active agent.
- 45. The hydrogel composition of claim 1, further including at least one additive selected from the group consisting of fillers, preservatives, pH regulators, softeners, thickeners, pigments, dyes, refractive particles, stabilizers, toughening agents and detackifiers.
- 46. The hydrogel composition of claim 7, wherein the relative quantities of the water-swellable polymer, the low molecular weight plasticizer, the hydrophilic polymer, and the complementary oligomer are selected so as to render the hydrogel composition translucent.
- 47. The hydrogel composition of claim 46, wherein the water-swellable polymer represents approximately 2 wt. % to approximately 15 wt. % of the hydrogel composition, the hydrophilic polymer and the complementary oligomer together represent approximately 17.5 wt. % to approximately 45 wt. % of the hydrogel composition, the low molecular weight plasticizer represents approximately 2.5 wt. % to approximately 5.0 wt. % of the hydrogel composition, and the weight ratio of the hydrophilic polymer to the complementary oligomer is in the range of about 70:30 to about 40:60.
- 48. The hydrogel composition of claim 1, further including an amount of an ionically conductive electrolyte effective to render the composition electrically conductive.
- 49. A translucent hydrogel composition comprising:
(a) a water-swellable polymer that is insoluble in water at a pH of less than 8.5; and (b) a blend of a hydrophilic polymer and a complementary oligomer capable of hydrogen bonding to the hydrophilic polymer, wherein the relative quantities of the water-swellable polymer, the hydrophilic polymer, and the complementary oligomer are selected so as to render the hydrogel composition translucent.
- 50. The translucent hydrogel composition of claim 49, comprising approximately 30 wt. % to approximately 40 wt. % of the water-swellable polymer, approximately 25 wt. % to approximately 30 wt. % of the hydrophilic polymer, and approximately 30 wt. % to approximately 35 wt. % of the complementary oligomer.
- 51. A translucent hydrogel composition comprising:
(a) approximately 30 wt. % to approximately 40 wt. % of a cellulose ester composition selected from the group consisting of cellulose acetate butyrate, cellulose acetate propionate, and mixtures thereof; (b) approximately 25 wt. % to approximately 30 wt. % of a hydrophilic polymer composed of a poly(N-vinyl lactam); and (c) approximately 30 wt. % to approximately 35 wt. % of a complementary oligomer capable of hydrogen bonding to the hydrophilic polymer, wherein the complementary oligomer is polyethylene glycol having a molecular weight in the range of 300 to 600.
- 52. The translucent hydrogel composition of claim 51, wherein the poly(N-vinyl lactam) is selected from the group consisting of polyvinyl pyrrolidone, polyvinyl caprolactam, and blends thereof.
- 53. The translucent hydrogel composition of claim 52, wherein the poly(N-vinyl lactam) is polyvinyl pyrrolidone.
- 54. The translucent hydrogel composition of claim 52, wherein the poly(N-vinyl lactam) is polyvinyl caprolactone.
- 55. The translucent hydrogel composition of claim 52, further including an active agent.
- 56. A hydrogel composition comprising:
(a) a water-swellable polymer insoluble in water at a pH of less than 8.5, said polymer selected from polymers and copolymers of acrylic acid, methacrylic acid, methyl acrylate, ethyl acrylate, methyl methacrylate, and/or ethyl methacrylate; and (b) a blend of a hydrophilic polymer and a complementary oligomer capable of hydrogen bonding thereto.
- 57. The hydrogel composition of claim 56, wherein the water-swellable polymer is comprised of a copolymer of methacrylic acid and methyl methacrylate.
- 58. The hydrogel composition of claim 57, wherein the copolymer has a ratio of free carboxyl groups to ester groups in the range of about 1:1 to 1:2.
- 59. The hydrogel composition of claim 56, wherein the water-swellable polymer is selected to provide water uptake of 400% to 1500% upon immersion of the hydrogel composition in water.
- 60. The hydrogel composition of claim 56, wherein the water-swellable polymer represents approximately 2 wt. % to 15 wt. % of the composition.
- 61. The hydrogel composition of claim 56, further including an active agent.
- 62. A wound dressing comprising a laminated composite of a body facing layer having a body-contacting surface, and an outwardly facing backing layer, wherein at least a portion of the body-contacting surface is comprised of the hydrogel composition of claim 1.
- 63. The wound dressing of claim 62, wherein the entire body-contacting surface is comprised of the hydrogel composition.
- 64. The wound dressing of claim 62, wherein the body-facing layer has a perimeter comprised of a skin-contact adhesive and an inner region containing the hydrogel composition.
- 65. The wound dressing of claim 64, wherein a central, wound-contacting portion of the inner region is comprised of the hydrogel composition.
- 66. The wound dressing of claim 62, wherein the backing layer is nonocclusive.
- 67. The wound dressing of claim 62, wherein the backing layer is occlusive.
- 68. The wound dressing of claim 62, further including a pressure-sensitive adhesive layer between the body-facing layer and the backing layer.
- 69. The wound dressing of claim 62, further including a removable release liner covering and co-extensive with the body-facing surface.
- 70. The wound dressing of claim 62, further including an active agent suitable for application to a wound.
- 71. The wound dressing of claim 70, wherein the active agent is selected from the group consisting of bacteriostatic and bactericidal compounds, antibiotic agents, pain relieving agents, topical vasodilators, tissue-healing enhancing agents, amino acids, proteins, proteolytic enzymes, cytokines, and polypeptide growth factors.
- 72. A wound dressing having a translucent inner region for viewing a covered wound, comprising a substrate having:
a body facing surface; an outwardly facing surface; a peripheral skin contact adhesive on the body facing-surface providing means for affixing the wound dressing to a body surface in the region of a wound; a translucent inner region; and, contained within the translucent inner region and on the body-facing surface of the wound dressing, a translucent hydrogel composition for absorbing wound exudate located within a central wound-contacting portion of the wound dressing.
- 73. The wound dressing of claim 72, wherein the translucent hydrogel is comprised of the hydrogel composition of claim 49.
- 74. In a transdermal drug delivery device comprised of a drug reservoir, an outwardly facing backing layer, and a means for affixing the device to a body surface, the improvement which comprises employing the hydrogel of claim 1 as the drug reservoir, the affixing means, or both.
- 75. The transdermal drug delivery device of claim 74, wherein the drug reservoir serves as the affixing means.
- 76. In a pressure-relieving cushion for application to the body surface wherein the cushion is comprised of an outwardly facing backing layer and a body-facing layer of a crosslinked pressure-sensitive adhesive, the improvement comprising employing the hydrogel composition of claim 43 as the crosslinked pressure-sensitive adhesive.
- 77. A method of forming a hydrogel film having a discontinuous hydrophobic phase comprising a hydrophobic polymer, a plasticizing elastomer, a tackifying resin, and an optional antioxidant, and a hydrophilic phase that is either discontinuous or continuous, wherein the method comprises:
melt processing the components of the hydrophobic and hydrophilic phases through an extruder to form an extruded hydrogel composition; placing the extruded hydrogel composition on a substrate; and applying pressure to the hydrogel layer to form a hydrogel film on the substrate.
- 78. The method of claim 77, wherein the components of the hydrophilic phase are added to the extruder prior to the components of the hydrophobic phase.
- 79. The method of claim 78, further comprising removing the hydrogel film from the substrate.
- 80. A method of forming a translucent hydrogel film comprised of a continuous hydrophilic phase, wherein the method comprises:
melt processing through an extruder a mixture of a cellulose ester composition, a hydrophilic polymer, and a complementary oligomer capable of hydrogen bonding to the hydrophilic polymer, to form an extruded hydrogel composition; placing the extruded hydrogel composition on a substrate; and applying pressure to the hydrogel layer to form a hydrogel film on the substrate, wherein the relative quantities of the cellulose ester composition, the hydrophilic polymer, and the complementary oligomer are selected so as to render the hydrogel composition translucent.
- 81. The method of claim 80, wherein the relative quantities of the cellulose ester composition, the hydrophilic polymer, and the complementary oligomer are selected to provide a hydrogel film comprised of approximately 30 wt. % to approximately 40 wt. % of the cellulose ester composition, approximately 25 wt. % to approximately 30 wt. % of the hydrophilic polymer, and approximately 30 wt. % to approximately 35 wt. % of the complementary oligomer.
- 82. The method of claim 81, further comprising removing the hydrogel film from the substrate.
- 83. A method for preparing a translucent hydrogel film suitable for incorporation into a wound dressing, the method comprising:
preparing a solution of a cellulose ester composition, a hydrophilic polymer, and a complementary oligomer capable of hydrogen bonding to the hydrophilic polymer, in a solvent; depositing a layer of the solution on a substrate to provide a coating thereon; and heating the coated substrate to a temperature in the range of about 80° C. to about 100° C. for a time period in the range of about 1 to 4 hours, thereby providing a hydrogel film on the substrate, wherein the relative quantities of the cellulose ester composition, the hydrophilic polymer, and the complementary oligomer are selected so that the hydrogel film is translucent.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. §119(e)(1) to provisional U.S. Patent Application Serial No. 60/288,008, filed May 1, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60288008 |
May 2001 |
US |