IP Library Granted Patent US 8,491,936
Granted Patent B2
US 8,491,936 · App. 11/082,180 · Granted Jul 23, 2013

Functionally graded biocompatible coating and coated implant

Inventors: Afsaneh Rabiei (Raleigh, NC); Jerome J. Cuomo (Cary, NC); Brent C. Thomas (Lillington, NC)
Assignee: North Carolina State University
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Quick Facts
Patent No.
US 8,491,936
App. No.
11/082,180
Granted
Jul 23, 2013
Kind
B2
Abstract

The present invention provides a biocompatible coating comprising calcium phosphate that is functionally graded across the thickness of the coating. The coating, which preferably includes hydroxyapatite, is particularly useful for coating implants, such as dental or orthopedic implants. The functionally graded coating is generally crystalline near the interface with the surface of the implant, with crystallinity and crystal diameter decreasing toward the outer layer of the coating. The invention further provides methods for preparing a coated implant comprising a functionally graded calcium phosphate coating thereon.

Claims (25)

1. A biocompatible coating comprising a layer of a calcium phosphate film having a top and a bottom and having a defined thickness of about 100 nm to about 2,000 nm, wherein, at the bottom of the layer, the calcium phosphate is predominately crystalline and has a crystal diameter of up to about 50 nm, and wherein said layer of said film is functionally graded in crystallinity and crystal diameter such that crystallinity and crystal diameter each gradually reduces across the thickness of said layer such that, at the top of the layer, the calcium phosphate is at least about 75% amorphous and any crystalline calcium phosphate has a crystal diameter of less than about 10 nm.

2. The biocompatible coating of claim 1 , wherein said calcium phosphate is selected from the group consisting of hydroxyapatite, tricalcium phosphate, and mixtures thereof.

3. The biocompatible coating of claim 1 , wherein the crystal diameter of any crystalline calcium phosphate gradually reduces from the bottom to the top of the film from a diameter of about 50 nm to a diameter of about 2 nm.

4. The biocompatible coating of claim 1 , wherein said layer further comprises one or more additional component in addition to said calcium phosphate.

5. A dental implant comprising:

a dentally implantable substrate having a surface, and

a biocompatible coating according to claim 1 bonded to the surface of the dentally implantable substrate.

6. An orthopedic implant comprising:

an orthopedically implantable substrate having a surface, and

a biocompatible coating according to claim 1 bonded to the surface of the orthopedically implantable substrate.

7. A biocompatible coated substrate comprising: a substrate having a surface; and

a biocompatible coating bonded to the substrate surface and comprising a layer of a calcium phosphate film having a top and bottom and having a defined thickness of about 100 nm to about 2,000 nm, wherein, at the bottom of the layer, the calcium phosphate is predominately crystalline and has a crystal diameter of up to about 50 nm and wherein said layer of said film is functionally graded in crystallinity and crystal diameter such that crystallinity and crystal diameter each gradually reduces across the thickness of said layer such that, at the top of the layer, the calcium phosphate is at least about 75% amorphous and any crystalline calcium phosphate has a crystal diameter of less than about 10 nm.

8. The coated substrate of claim 7 , wherein said substrate is a prosthetic implant.

9. The coated substrate of claim 8 , wherein said prosthetic implant is selected from the group consisting of a dental implant and an orthopedic implant.

10. The coated substrate of claim 7 , wherein said substrate comprises one or more metallic material.

11. The coated substrate of claim 10 , wherein said substrate comprises a material selected from the group consisting of titanium, titanium alloys, cobalt/chromium alloys, steel, and mixtures thereof.

12. The coated substrate of claim 7 , wherein said layer of said calcium phosphate film has a thickness of about 100 nm to about 2,000 nm.

13. The coated substrate of claim 12 , wherein said layer of said calcium phosphate film has a thickness of about 200 nm to about 1,500 nm.

14. The coated substrate of claim 12 , wherein said layer of said calcium phosphate film has a thickness of about 300 nm to about 1,000 nm.

15. The coated substrate of claim 7 , wherein said calcium phosphate is selected from the group consisting of hydroxyapatite, tricalcium phosphate, and mixtures thereof.

16. The coated substrate of claim 7 , wherein said layer of said film comprises a portion of crystalline calcium phosphate having crystals with a diameter in the range of about 2 nm to about 50 nm.

17. The coated substrate of claim 7 , wherein said layer of said film comprise a mixture of crystalline calcium phosphate and amorphous calcium phosphate.

18. The coated substrate of claim 7 , wherein said layer of said film is bonded to said surface of said substrate through intermolecular bonding with substrate molecules at or beneath the surface of the substrate.

19. The coated substrate of claim 7 , wherein said film further comprises one or more additional component in addition to said calcium phosphate.

20. The biocompatible coating of claim 4 , wherein the additional component is yttrium.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2005
From: RABIEI, AFSANEH; CUOMO, JEROME J.; THOMAS, BRENT C.
To: NORTH CAROLINA STATE UNIVERSITY
Reel/Frame 016314/0014 →
Continuity (1)
Related Publication 20060210494A1 · Sep 21, 2006