Claims
- 1. A film-forming composition comprising:
a) a first siloxane polymer having a viscosity of less than about 50 centistokes; b) a second siloxane polymer having a viscosity of greater than about 1,000 centistokes; c) a reactive silicone polymer capable of crosslinking upon exposure to radiation; and d) a photoinitiator for promoting crosslinking of the reactive silicone polymer upon exposure to radiation.
- 2. A film-forming composition as in claim 1, wherein the first siloxane polymer and the second siloxane polymer are independently selected from compounds defined by the formula:
- 3. A film-forming composition as in claim 2, wherein the first siloxane polymer is a polydimethylsiloxane having a molecular weight of from about 400 to about 1300.
- 4. A film-forming composition as in claim 3, wherein the first siloxane polymer has a viscosity of from about 2 to about 10 centistokes.
- 5. A film-forming composition as in claim 2, wherein the second siloxane polymer is a polydimethylsiloxane having a molecular weight of from about 60,000 to about 70,000.
- 6. A film-forming composition as in claim 5, wherein the second siloxane polymer has a viscosity of from about 10,000 to about 15,000 centistokes.
- 7. A film-forming composition as in claim 1, wherein the reactive silicone polymer is capable of crosslinking upon exposure to ultraviolet light.
- 8. A film-forming composition as in claim 1, wherein the reactive silicone polymer is a silicone acrylate.
- 9. A film-forming composition as in claim 8, wherein the reactive silicone polymer is defined by the structure:
- 10. A film-forming composition as in claim 1, wherein the photoinitiator is an alpha-hydroxy ketone.
- 11. A film-forming composition as in claim 1, further comprising a crosslinking agent.
- 12. A film-forming composition as in claim 11, wherein the crosslinking agent is gamma-methylacryloxypropyl-trimethoxysilane.
- 13. A film-forming composition as in claim 1, further comprising an adhesion promoter for promoting adhesion to a substrate surface.
- 14. A film-forming composition as in claim 1, further comprising a third siloxane polymer having amino functionality.
- 15. A film-forming composition as in claim 1, wherein the third siloxane polymer is an aminopropyl dimethylsiloxane copolymer.
- 16. A medical device comprising a metal surface having a lubricious coating thereon, said lubricious coating comprising the reaction product of claim 15.
- 17. A medical device comprising a polymeric surface having a lubricious coating thereon, said lubricious coating comprising the reaction product of claim 1.
- 18. A lubricious coating comprising:
a) a first layer comprising an adhesion promoter; and b) a second layer comprising the film-forming composition of claim 1, wherein the adhesive promoter promotes adhesion of the film-forming composition to a substrate surface.
- 19. A lubricious coating as in claim 18, wherein the adhesion promoter comprises an amino-functional siloxane polymer.
- 20. A lubricious coating as in claim 18, wherein the adhesion promoter comprises an aminopropyl dimethylsiloxane copolymer.
- 21. A lubricious coating as in claim 18, wherein the film-forming composition further comprises an adhesion promoter for promoting adhesion of the film-forming composition to a substrate surface.
- 22. A lubricious coating as in claim 21, wherein the adhesion promoter in the film-forming composition comprises an amino-functional siloxane polymer.
- 23. A lubricious coating as in claim 21, wherein the adhesion promoter in the film-forming composition comprises an aminopropyl dimethylsiloxane copolymer.
- 24. A film-forming composition comprising:
a) from about 40 weight % to about 80 weight %, based on the total weight of the composition, of a first polyalkylsiloxane having a viscosity of less than about 50 centistokes; b) from about 5 weight % to about 20 weight %, based on the total weight of the composition, of a second polyalkylsiloxane having a viscosity of greater than about 1,000 centistokes; c) from about 5 weight % to about 40 weight %, based on the total weight of the composition, of a reactive silicone polymer capable of crosslinking upon exposure to radiation; d) from about 0.5 weight % to about 10 weight %, based on the total weight of the composition, of a photoinitiator for promoting crosslinking of the reactive silicone polymer upon exposure to radiation; and e) optionally, from about 0.1 weight % to about 5 weight %, based on the total weight of the composition, of a crosslinking agent.
- 25. A film-forming composition as in claim 24, wherein the first siloxane polymer and the second siloxane polymer are independently selected from compounds defined by the structure:
- 26. A film-forming composition as in claim 24, wherein the reactive silicone polymer is a silicone acrylate.
- 27. A film-forming composition as in claim 26, wherein the reactive silicone polymer is defined by the structure:
- 28. A film-forming composition as in claim 24, further comprising a third siloxane polymer having amino functionality.
- 29. A film-forming composition as in claim 28, wherein the third siloxane polymer is an aminopropyl dimethylsiloxane copolymer.
- 30. A medical device coated with a lubricious coating, said lubricious coating comprising the reaction product of:
a) a first siloxane polymer having a viscosity of less than about 50 centistokes; b) a second siloxane polymer having a viscosity of greater than about 1,000 centistokes; c) a reactive silicone polymer capable of crosslinking upon exposure to radiation; and d) a photoinitiator for promoting crosslinking of the reactive silicone polymer upon exposure to radiation.
- 31. A medical device as in claim 30, wherein the medical device comprises a polymeric material.
- 32. A medical device as in claim 31, wherein the medical device comprises a catheter.
- 33. A medical device as in claim 30, wherein the lubricious coating further comprises a third siloxane polymer having amino functionality.
- 34. A medical device as in claim 33, wherein the medical device comprises a metallic material.
- 35. A medical device as in claim 34, wherein the medical device comprises a stainless steel needle cannula.
- 36. A medical device as in claim 30, wherein said lubricious coating further includes an adhesion promoting layer coated on said device, said reaction product being coated on said adhesion promoting layer.
- 37. A medical device as in claim 36, wherein said adhesion promoting layer comprises an amino-functional siloxane polymer.
- 38. A medical device as in claim 36, wherein said adhesion promoting layer comprises an aminopropyl dimethylsiloxane copolymer.
- 39. A method for providing the surface of a medical device with a lubricous coating comprising:
a) contacting the medical device with a liquid composition substantially free of volatile organic solvent comprising:
i) a first siloxane polymer having a viscosity of less than about 50 centistokes; ii) a second siloxane polymer having a viscosity of greater than about 1,000 centistokes; iii) a reactive silicone polymer capable of crosslinking upon exposure to radiation; and iv) a photoinitiator for promoting crosslinking of the reactive silicone polymer upon exposure to radiation; and b) exposing the thus coated surface to radiation to promote curing of the composition.
- 40. A method as in claim 39, wherein the exposing step b) comprises exposing the surface to ultraviolet light.
- 41. A method as in claim 39, further comprising a step of evenly distributing the liquid composition on the surface prior to the exposing step b).
- 42. A method as in claim 41, wherein the step of evenly distributing the liquid composition comprises vibrating the surface.
- 43. A method as in claim 39 further comprising, prior to step (a), a step of coating the medical device with an adhesion promoting composition, such that the liquid composition of step (a) is coated on the adhesion promoting composition.
- 44. A method as in claim 43, wherein the adhesion promoting composition comprises an amino-functional siloxane polymer.
- 45. A method as in claim 43, wherein the adhesive promoting composition comprises an aminopropyl dimethylsiloxane copolymer.
- 46. A lubricious coating for a polymeric substrate substantially free of volatile organic solvents consisting essentially of:
a) a first siloxane polymer having a viscosity of less than about 50 centistokes and defined by the following structure: 8wherein R is selected from the group consisting of alkyl C1-20, haloalkyl, aryl, haloaryl, cycloalkyl, aralkyl, and mixtures thereof, and n is an integer from about 3 to about 50; b) a second siloxane polymer having a viscosity of greater than about 1,000 centistokes and defined by the following structure: 9wherein R is selected from the group consisting of alkyl C1-20, haloalkyl, aryl, haloaryl, cycloalkyl, aralkyl, and mixtures thereof, and n is an integer from about 350 to about 1500; c) a reactive silicone polymer capable of crosslinking upon exposure to radiation and defined by the following structure: 10wherein R is selected from the group consisting of C1-20 alkyl, aryl, cycloalkyl, aralkyl, and mixtures thereof, R1 may or may not be present and if present is a divalent linking group comprising C1-20 alkylene, hydroxy-functional alkylene, oxyalkylene, hydroxy-functional oxyalkylene, polyoxyalkylene, hydroxy-functional polyoxyalkylene, and mixtures thereof, A is an acrylic or methacrylic terminal group; each a is 0, 1, 2, or 3 and b is 0 or 1, provided that both a and b cannot be 0; x is an integer from 0 to about 1500; and y is an integer from about 1 to about 1500; and d) a photoinitiator for promoting crosslinking of the reactive silicone polymer upon exposure to radiation.
- 47. A lubricious coating for a metallic substrate substantially free of volatile organic solvent consisting essentially of:
a) a first siloxane polymer having a viscosity of less than about 50 centistokes and defined by the following structure: 11wherein R is selected from the group consisting of alkyl C1-20, haloalkyl, aryl, haloaryl, cycloalkyl, aralkyl, and mixtures thereof, and n is an integer from about 3 to about 50; b) a second siloxane polymer having a viscosity of greater than about 1,000 centistokes and defined by the following structure: 12wherein R is selected from the group consisting of alkyl C1-20, haloalkyl, aryl, haloaryl, cycloalkyl, aralkyl, and mixtures thereof, and n is an integer from about 350 to about 1500; c) a reactive silicone polymer capable of crosslinking upon exposure to radiation and defined by the following structure: 13wherein R is selected from the group consisting of C1-20 alkyl, aryl, cycloalkyl, aralkyl, and mixtures thereof, R1 may or may not be present and if present is a divalent linking group comprising C1-20 alkylene, hydroxy-functional alkylene, oxyalkylene, hydroxy-functional oxyalkylene, polyoxyalkylene, hydroxy-functional polyoxyalkylene, and mixtures thereof; A is an acrylic or methacrylic terminal group; each a is 0, 1, 2, or 3 and b is 0 or 1, provided that both a and b cannot be 0; x is an integer from 0 to about 1500; and y is an integer from about 1 to about 1500; d) a photoinitiator for accelerating crosslinking of the reactive silicone polymer upon exposure to radiation; and e) a polyorganosiloxane having amino functionality.
- 48. A coating as in claim 47, wherein the polyorganosiloxane having amino functionality comprises an aminopropyl dimethylsiloxane copolymer.
- 49. A lubricious coating comprising the reaction product of a composition comprising a first siloxane polymer having a viscosity of less than about 50 centistokes, a second siloxane polymer having a viscosity of greater than about 1,000 centistokes, a reactive silicone polymer, and a photoinitiator, which composition has been at least partially cured by exposure to a source of radiation for a sufficient time period to promote crosslinking of the reactive silicone polymer to form a three-dimensional network structure with at least a portion of the first siloxane polymer and/or the second siloxane polymer contained within and upon the network structure.
- 50. A lubricious coating as in claim 49 further comprising an adhesion promoting layer coated by said reaction product.
- 51. A lubricious coating as in claim 50, wherein said adhesion promoting layer comprises an amino-functional siloxane polymer.
- 52. A lubricious coating as in claim 50, wherein said adhesion promoting layer comprises an aminopropyl dimethylsiloxane copolymer.
CROSS REFERENCE TO RELATED APPLICATION
[0001] The present application claims the benefit of U.S. Provisional Application No. 60/454,735 filed Mar. 14, 2003 entitled “Non-Volatile Lubricant System for Medical Devices”, incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60454735 |
Mar 2003 |
US |