Claims
- 1. A surgical implant for replacing damaged cartilage, comprising:
a. a hydrogel material having at least one smooth and lubricious surface which has a negative electrical charge density that promotes lubricious interactions with mammalian synovial fluid; and, b. a fibrous matrix that extends through at least a portion of the hydrogel material and reinforces the hydrogel material.
- 2. The surgical implant of claim 1, wherein the smooth and lubricious surface has a negative electrical charge density within a range of about −100 to about −250 millimolar, when measured by sodium equilibration.
- 3. The surgical implant of claim 1, wherein the smooth and lubricious surface contains sulfur atoms.
- 4. The surgical implant of claim 3, wherein the smooth and lubricious surface contains sulfate groups.
- 5. The surgical implant of claim 2, wherein the smooth and lubricious surface has been treated with a chemical reagent that creates crosslinking bonds between polymeric molecules.
- 6. The surgical implant of claim 2, wherein the smooth and lubricious surface contains halogen atoms bonded to carbon atoms.
- 7. The surgical implant of claim 1, wherein the implant has two smooth and lubricious surfaces, and is sized and designed to replace a cartilage segment selected from the group consisting of meniscal cartilage in a knee joint, labral cartilage in a hip or shoulder joint, or a triangular fibrocartilage segment in a wrist joint.
- 8. The surgical implant of claim 1, wherein the implant is sized and designed for anchoring to a prepared bone surface.
- 9. The surgical implant of claim 8, wherein the implant has a porous anchoring surface that will promote ingrowth of tissue, after surgical implantation.
- 10. The surgical implant of claim 8, wherein the implant comprises a non-planar interface layer having multiple perforations, positioned between a smooth and lubricious surface and an anchoring surface.
- 11. The surgical implant of claim 8, wherein the synthetic polymer comprises a polyacrylate derivative.
- 12. The surgical implant of claim 8, wherein the synthetic polymer comprises a polyacrylonitrile derivative.
- 13. A surgical implant for replacing meniscal or labrum tissue, comprising:
a. a polymeric hydrogel component, at least a portion of which is reinforced by a flexible fibrous matrix, and having two smooth surfaces for articulation following surgical implantation, both surfaces having negative electrical charges; b. at least one anchoring component that is designed to allow anchoring of the implant to soft tissue.
- 14. The surgical implant of claim 13, wherein at least one smooth surface for articulation has a negative electrical charge density within a range of about −50 to about −250 millimolar, when measured by sodium equilibration.
- 15. The surgical implant of claim 13, wherein the smooth and lubricious surface contains sulfur atoms.
- 16. The surgical implant of claim 2, wherein the smooth and lubricious surface has been treated with a chemical reagent that creates crosslinking bonds between polymeric molecules.
- 17. The surgical implant of claim 2, wherein the smooth and lubricious surface contains halogen atoms bonded to carbon atoms.
- 18. The surgical implant of claim 8, wherein the polymeric hydrogel component comprises a polyacrylate derivative.
- 19. A surgical implant for replacing a cartilage segment that covers a hard bone surface, comprising:
a. a polymeric hydrogel component, at least a portion of which is reinforced by a flexible fibrous matrix, and having at least one smooth and lubricious articulating surface having a negative electrical charge; and, b. at least one anchoring surface designed to promote ingrowth of osseous tissue following surgical implantation.
- 20. The surgical implant of claim 19, wherein the articulating surface has a negative electrical charge density within a range of about −50 to about −250 millimolar, when measured by sodium equilibration.
- 21. The surgical implant of claim 19, wherein the articulating surface contains sulfur atoms.
- 22. The surgical implant of claim 19, wherein the articulating surface has been treated with a chemical reagent that creates crosslinking bonds between polymeric molecules.
- 23. The surgical implant of claim 19, wherein the articulating surface contains halogen atoms bonded to carbon atoms.
- 24. The surgical implant of claim 19, containing a non-planar interface layer having multiple perforations, positioned between the articulating surface and the anchoring surface.
- 25. A method of manufacturing a non-resorbable surgical implant for replacing cartilage in a mammalian joint, comprising the following step:
a. creating a hydrogel material made from a synthetic polymer, and having at least one smooth surface for articulation after surgical implantation, and having a fibrous reinforcing matrix that extends through at least a portion of the hydrogel material; and, b. subjecting at least one smooth surface of the hydrogel material to a chemical treatment that imparts a negative electrical charge to the smooth surface, in a manner that creates a treated charge density that promotes lubricious interactions between the smooth surface and mammalian synovial fluid.
- 26. The method of claim 25, wherein the surgical implant is also provided with an anchoring surface that is designed to promote ingrowth of tissue following surgical implantation.
- 27. The method of claim 25, wherein the hydrogel material is coupled to the anchoring surface that promotes ingrowth of tissue, by means of a non-planar interface layer having multiple perforations.
RELATED APPLICATIONS
[0001] This application is a continuation-in-part of patent application Ser. No. 09/818,811, filed Mar. 27, 2001, which in turn claimed the benefit of provisional application 60/192,482, filed Mar. 27, 2000.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60192482 |
Mar 2000 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09818811 |
Mar 2001 |
US |
Child |
10677444 |
Oct 2003 |
US |