Claims
- 1. A method for preparing a biodegradable microfiber absorbent, the method comprising electrohydrodynamic processing of a mixture containing:
(a) at least one hydrophilic polymer which is a poly (N-vinyl) lactam; and (b) at least one biodegradable polyester; wherein the lactam is not poly-(N-vinyl) pyrrolidone and/or the polyester is not polylactide.
- 2. A method for preparing a biodegradable microfiber absorbent, the method comprising electrohydrodynamic processing of a mixture containing:
(a) a solvent; (b) poly-(N-vinyl) pyrrolidone; and (c) a biodegradable polyester which is polylactide of a molecular mass at least 125000 Dalton, with a component ratio of the poly-(N-vinyl) pyrrolidone to the polylactide by weight being from about 2:98 to about 9:91 or from about 31:69 to about 50:50.
- 3. A method for preparing a biodegradable microfiber absorbent, the method comprising electrohydrodynamic processing of a mixture containing:
(a) a solvent; (b) poly-(N-vinyl) pyrrolidone; and (c) a biodegradable polyester which is a copolymer of lactide with glycolide or a blend of a copolymer of lactide with glycolide with a homopolymer of lactide, with a component ratio of the poly-(N-vinyl) pyrrolidone to the biodegradable polyester by weight being from about 2:98 to about 50:50.
- 4. A method for preparing a biodegradable microfiber absorbent, the method comprising electrohydrodynamic processing of a mixture containing:
(a) at least one hydrophilic polymer which is a poly (N-vinyl) lactam; and (b) at least one biodegradable polyester; wherein said hydrophilic polymer is poly-(N-vinyl) pyrrolidone and said biodegradable polyester is a homopolymer of caprolactone or a copolymer of caprolactone and lactide or a blend thereof, wherein a component ratio by weight of the poly-(N-vinyl) pyrrolidone to the biodegradable polyester is from about 10:90 to about 50:50.
- 5. A method for preparing a biodegradable microfiber absorbent, the method comprising electrohydrodynamic processing of a mixture containing:
(a) at least one hydrophilic polymer which is a poly (N-vinyl) lactam; and (b) at least one biodegradable polyester; wherein said hydrophilic polymer is poly-(N-vinyl) pyrrolidone and said biodegradable polyester is a homopolymer of p-dioxanon, or a copolymer of p-dioxanon and glycolide, or a copolymer of p-dioxanon and lactide or a blend thereof, wherein a component ratio by weight of the poly-(N-vinyl) pyrrolidone to the biodegradable polyester is from about 10:90 to about 50:50.
- 6. The method of any one of claims 2-5 wherein said mixture further comprises one or more low molecular weight biodegradable polyesters with hydroxyl, carboxyl or amino-terminal groups, and/or one or more polyoxyethylene glycols, and/or one or more low molecular weight alcohols selected from the group containing alcohols, including alcohols of natural origin.
- 7. A method for preparing a biodegradable microfiber absorbent, the method comprising electrohydrodynamic processing of a mixture containing:
(a) a solvent; (b) at least one hydrophilic polymer which is a polyvinyl lactam; and (c) at least one biodegradable polyester; wherein the microfiber absorbent is deposited on a biodegradable hydrophobic thin film at most 15 μm in thickness, where the film is prepared from homopolymers of lactide, or glycolide, or caprolactone, or p-dioxanon, or copolymers and/or the blends thereof.
- 8. The method of claim 7 wherein the hydrophobic film comprises a blend of a biodegradable polymer and a low molecular weight biodegradable polyester with hydroxyl, carboxyl and/or amino-terminal groups, and/or polyoxyethylene glycols, and/or low molecular alcohols selected from the group containing of multifunctional alcohols, including alcohols of natural origin.
- 9. The method of any one of claims 1-5, 7 further comprising incorporating into the absorbent at least one therapeutic performance enhancing additive comprising one or more of living cells, proteins, peptides, antibiotic compounds, bacteriocidal compounds, fungicidal compounds, bacteriostatic compounds, analgesic compounds, trombogenic compounds that promote wound healing, wherein the absorbent is deposited on a backing film and the baking film containing the same or different medications.
- 10. A method for preparing a biodegradable microfiber absorbent, the method comprising forming a plurality of layers comprising a first biodegradable microfiber absorbent layer and a second biodegradable microfiber absorbent layer over the first biodegradable microfiber absorbent layer, wherein each of the first and second layers is formed by electrohydrodynamic processing of a mixture containing:
(a) a solvent; (b) at least one hydrophilic polymer which is a polyvinyl lactam; and (c) one or more biodegradable polyesters; (d) one or more medications; wherein the one or more medications of the first layer are different from the one or more medications of the second layer, and/or the one or more biodegradable polymers of the first layer have a different composition than the one or more biodegradable polymers of the second layer.
- 11. A method for preparing a biodegradable microfiber absorbent, the method comprising electrohydrodynamic spinning of a substantially homogeneous mixture comprising at least one hydrophilic polymer and at least one biodegradable polymer, the electrohydrodynamic spinning being performed at a voltage from about 20 to about 30 kV or from about 65 to about 90 kV.
- 12. The method of any one of claims 1, 2, 3, 7, 11 wherein the electrohydrodynamic processing comprises emitting a flow of said mixture into an area in which said mixture flies in an electrical field towards a substrate; and the method further comprises emitting a flow of dry particles into said area and the dry particles being deposited over said substrate.
- 13. The method of claim 12 wherein the flow of dry particles and the flow of said mixture are emitted into said area in overlapping periods of time.
- 14. The method of claim 11 wherein the mixture further comprises at least one therapeutic performance-enhancing additive.
- 15. The method of claim 11 wherein the mixture has an intrinsic viscosity from about 0.1 to about 10 poise.
- 16. A medical dressing comprising a biodegradable microfiber absorbent prepared by the method of claim 2, 3, 4 or 5.
- 17. The medical dressing of claim 14 wherein the absorbent is capable to absorb at 20 g/g of water or blood or both.
- 18. A medical dressing comprising a biodegradable microfiber absorbent prepared by the method of claim 7 wherein the hydrophobic film is a protective backing layer and the biodegradable microfiber absorbent is a facing layer.
- 19. A product made by the method of claim 1.
- 20. A product made by the method of claim 2.
- 21. A product made by the method of claim 3.
- 22. A product made by the method of claim 4.
- 23. A product made by the method of claim 5.
- 24. A product made by the method of claim 7.
- 25. A product made by the method of claim 10.
- 26. A product made by the method of claim 11.
- 27. A biodegradable microfiber absorbent comprising:
(a) at least one hydrophilic polymer which is a polyvinyl lactam; and (b) at least one biodegradable polymer that is a biodegradable polyester; wherein the lactam is not PVP and/or the polyester is not polylactide; and wherein the biodegradable microfiber absorbent is haemostatic, antiseptic, and has a wound healing ability.
- 28. A biodegradable microfiber absorbent comprising:
(a) poly-(N-vinyl) pyrrolidone; and (b) a biodegradable polyester which is polylactide of molecular mass at least 1250000 Dalton, with a component ratio of the poly-(N-vinyl) pyrrolidone to the polylactide by weight being from about 2:98 to about 9:91 or from about 31:69 to about 50:50; wherein the biodegradable microfiber absorbent is haemostatic, antiseptic and has a wound healing ability.
- 29. A biodegradable microfiber absorbent comprising:
(a) poly-(N-vinyl) pyrrolidone; and (c) a biodegradable polyester which is a copolymer of lactide with glycolide or a blend of a copolymer of lactide with glycolide with a homopolymer of lactide, with a component ratio of the poly (N-vinyl) pyrrolidone to the biodegradable polyester by weight being from about 2:98 to about 50:50, wherein the biodegradable microfiber absorbent is haemostatic, antiseptic and has a wound healing ability.
- 30. The absorbent of claim 27 wherein said hydrophilic polymer is poly-(N-vinyl) pyrrolidone and said biodegradable polyester is a homopolymer of caprolactone or a copolymer of caprolactone and lactide or a blend, wherein a component ratio by weight of the poly-(N-vinyl) pyrrolidone to the biodegradable polyester is from about 10:90 to about 50:50.
- 31. The absorbent of claim 27 wherein said hydrophilic polymer is poly-(N-vinyl) pyrrolidone and said biodegradable polyester is a homopolymer of p-dioxanon, or a copolymer of p-dioxanon and glycolide, or a copolymer of p-dioxanon and lactide, or a blend thereof, wherein a component ratio by weight from about 10:90 to about 50:50.
- 32. The absorbent of any one of claims 28, 29 further comprising one or more low molecular weight biodegradable polyesters with hydroxyl, carboxyl or amino-terminal groups, and/or one or more polyoxyethylene glycols, and/or one or more low molecular weight alcohols selected from the group containing alcohols, including alcohols of natural origin.
- 33. A biodegradable microfiber absorbent comprising:
(a) at least one hydrophilic polymer which is a polyvinyl lactam; and (b) at least one biodegradable polyester; wherein the microfiber absorbent is deposited on a biodegradable hydrophobic thin film at most 15 μm in thickness, where the film is prepared from homopolymers of lactide, or glycolide, or caprolactone, or p-dioxanon, or copolymers and/or the blends thereof; and wherein the biodegradable microfiber absorbent is haemostatic, antiseptic and has a wound healing ability.
- 34. The biodegradable microfiber absorbent of claim 33 wherein the hydrophobic film comprises a blend of a biodegradable polymer and a low molecular weight biodegradable polyester with hydroxyl, carboxyl and/or amino-terminal groups, and/or polyoxyethylene glycols, and/or low molecular alcohols selected from the group containing of multifunctional alcohols, including alcohols of natural origin.
- 35. The biodegradable microfiber absorbent of any one of claims 27-29, 33 further comprising at least one therapeutic performance enhancing additive selected from the group consisting of living cells like keratinocytes or fibroblasts, or antibiotic compounds, bacteriocidal compounds, fungicidal compounds, bacteriostatic compounds, analgesic compounds, trombogenic compounds that promote wound healing, and proteins containing drugs, wherein the absorbent is formed on a backing film, the backing film and the absorbent containing the same or different medications.
- 36. A biodegradable microfiber absorbent, comprising a plurality of layers comprising a first biodegradable microfiber absorbent layer and a second biodegradable microfiber absorbent layer over the first biodegradable microfiber absorbent layer, wherein each of the first and second layers comprises:
(a) at least one hydrophilic polymer which is a polyvinyl lactam; and (b) one or more biodegradable polyesters; (c) one or more medications; wherein the one or more medications of the first layer are different from the one or more medications of the second layer, and/or the one or more biodegradable polymers of the first layer have a different composition than the one or more biodegradable polymers of the second layer.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims priority of U.S. provisional patent application No. 60/328,454 filed on Oct. 10, 2001, incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60328454 |
Oct 2001 |
US |