Claims
- 1. A method for treating the surface of a medical device comprising:
(a) forming a medical device from a material comprising monomeric units having reactive functionalities selected from the group consisting of azlactone, carboxylic acid, amine, hydroxy and epoxy functionalities, and combinations thereof; (b) forming a hydrophilic reactive polymer having complementary reactive functionalities along the polymer chain selected from the group comprising azlactone, isocyanate, acid anhydride, epoxy, hydroxy, primary or secondary amine, or carboxylic acid functionalities, and combinations thereof, wherein in the case of the hydroxy or amine complementary reactive functionalities, the material comprises azlactone reactive functionalities and in the case of the carboxylic acid complementary functionality, the material comprises epoxy reactive functionalities; (c) reacting the hydrophilic reactive polymer of (b) having complementary reactive functionalities along the polymer chain with said reactive functionalities on or near the surface of the medical device of (a), thus forming a biocompatible surface on the medical device; (d) removing the biocompatible surface of step (c); and (e) repeating steps (b) and (c) to form a renewed biocompatible surface on said medical device having properties substantially similar to the original biocompatible surface of step (c).
- 2. The method of claim 1, wherein the medical device is a silicone contact lens or intraocular lens and the coating is uncolored.
- 3. The method of claim 1, wherein the medical device is a silicone hydrogel, continuous-wear contact lens.
- 4. The method of claim 1, wherein the hydrophilic reactive polymer comprises 1 to 100 mole percent of monomeric units having said reactive functionalities.
- 5. The method of claim 1, wherein the hydrophilic reactive polymer comprises 0 to 99 mole percent of monomeric units that are derived from non-reactive hydrophilic monomers.
- 6. The method of claim 1, wherein the polymer comprises 50 to 95 mole percent of monomeric units derived from non-reactive hydrophilic monomers selected from the group consisting of acrylamides, lactones, poly(alkylenepoxy)methacrylates, methacrylic acid or hydroxyalkyl methacrylates and 5 to 50 percent of monomeric units derived from functionally reactive monomers selected from the group consisting of epoxy, azlactone, and anhydride containing monomers, wherein the alkyl or alkylene groups have 1 to 6 carbon atoms.
- 7. The method of claim 1, wherein the functionally reactive monomers are selected from the group consisting of glycidyl methacrylate, maleic anhydride, itaconic anhydride, and isocyanomethacrylate.
- 8. The method of claim 1, wherein the hydrophilic monomers are selected from the group consisting of dimethylacrylamide, acrylamide, N-vinyl pyrrolidinone methacrylic acid.
- 9. The method of claim 1, wherein the hydrophilic reactive polymer comprises 0 to 35 mole percent monomeric units derived from hydrophobic monomers.
- 10. The method of claim 1, wherein the hydrophilic polymer comprises oxazolinone moieties having the following formula:
- 11. The method of claim 10, wherein the polymer comprises the reaction product of a mixture of monomers comprising the monomer represented by the general formula:
- 12. The method of claim 11, wherein the monomer is selected from the group consisting of 2-vinyl-4, 4-dimethyl-2-oxazolin-5-one; 2-isopropenyl-4,4-dimethyl-2-oxazolin-5-one; 2-isopropenyl-4 ,4-dimethyl-2-oxazolin-5-one; and 2-vinyl-4,4-dimethyl-2-oxazol in-5-one.
- 13. The method of claim 10, wherein the medical device is dipped in a solution comprising at least one hydrophilic reactive polymer in the absence of a coloring substance.
- 14. The method of claim 1 wherein said removing step (d) further comprises abrading said biocompatible surface.
- 15. The method of claim 3 wherein said removing step (d) further comprises abrading said biocompatible surface with an abrasive particulate in an aqueous carrier solution.
- 16. The method of claim 15 wherein said abrasive particulate comprises silica or alumina.
- 17. A medical device including a hydrophilic surface comprising:
a medical device made from a comprising monomeric units having reactive functionalities selected from the group consisting of azlactone, carboxylic acid, amine, hydroxy, and epoxy functionalities, and compatible combinations thereof; and hydrophilic polymers attached to the medical device wherein the points of attachment are the result of the reaction of isocyanate, hydroxy, amine, carboxylic acid, or ring-opening complementary reactive functionalities or compatible combinations thereof in monomeric units along the hydrophilic reactive polymers with said functionalities on or near the surface of the medical device or the results, wherein in the in the case of the hydroxy or amine complementary reactive functionalities, the material comprises azlactone reactive functionalities and in the case of the carboxylic acid complementary functionality, the silicone material comprises epoxy reactive functionalities, thereby producing a clear, transparent, biocompatible coating which can be removed by mechanical abrasion and re-applied to restore the surface properties of the medical device to substantially as-new condition.
- 18. The medical device of claim 17, wherein the medical device is a silicone contact lens or intraocular device.
- 19. The medical device of claim 17, wherein the medical device is a silicone hydrogel continuous-wear lens.
- 20. The medical device of claim 17, wherein the hydrophilic polymers comprise 1 to 100 mole percent of monomeric units having said reactive functionalities and 0 to 99 mole percent of monomeric units that are derived from non-reactive hydrophilic monomers.
- 21. The medical device of claim 17, wherein the reactive functionalities are derived from monomers containing one or more of the following groups: glycidyl, azlactone, isocyanate, and acid anhydride.
- 22. The medical device of claim 17, wherein the hydrophilic monomeric units are derived from monomers selected from the group consisting of acrylamides, lactams, poly(alkyleneoxy)methacrylates, methacrylic acid or hydroxyalkyl methacrylates.
- 23. The medical device of claim 17, wherein the hydrophilic polymer comprises moieties along the chain having the following formula:
- 24. The medical device of claim 17, wherein the hydrophilic polymer comprises moieties along the chain represented by the general formula:
- 25. The medical device of claim 17, wherein hydrophilic polymer chains attached to the carbonaceous layer are the result of the reaction of a mixture of polymers comprising (a) a first hydrophilic reactive polymer having reactive functionalities in monomeric units along the hydrophilic polymers complementary to reactive functionalities on the surface of the medical device and, in addition, (b) a second hydrophilic reactive polymer having supplemental reactive functionalities that are reactive with the first hydrophilic reactive polymer.
- 26. The medical device of claim 25, wherein the first hydrophilic reactive polymer is an epoxy-functional polymer and the second hydrophilic reactive polymer is an acid-functional polymer, either simultaneously or sequentially applied to the substrate to be coated.
- 27. The medical device of claim 17, wherein the substrate comprises a coating comprising the reaction product of a separate epoxy-functional hydrophilic reactive polymer and an acid-functional hydrophilic polymer.
- 28. The medical device of claim 17, wherein the substrate comprises azlactone-functional monomeric units that have been coverted to acid groups near or on the surface.
- 29. The method of claim 1, wherein the medical device is a rigid contact lens.
- 30. The method of claim 29, wherein the rigid contact lens is a rigid-gas-permeable contact lens.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is related by subject matter to commonly-assigned U.S. application Ser. No. 09/315,620, filed May 20, 1999.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09541588 |
Apr 2000 |
US |
Child |
10427055 |
Apr 2003 |
US |