Biocompatible material and uses thereof
The present invention relates to a biocompatible material and in particular to a two-phase or composite biocompatible ceramic material, wherein the first phase is a doped calcium zinc silicate and the second phase is a metal oxide. In an embodiment, the invention has been developed for use in tissue regeneration including bone tissue. In other embodiments, the invention has been developed as a coating to improve the long-term stability of prior art implantable medical devices.
1. A composite biocompatible ceramic material comprising a first and a second phase, wherein said first phase is doped hardystonite (Ca 2 ZnSi 2 O 7 ) and said second phase is a metal oxide belonging to the spinel group of minerals.
2. A material according to claim 1 , wherein said hardystonite is doped with at least one of strontium, barium or magnesium.
3. A material according to claim 1 , wherein said first phase comprises a molecular formula [(Sr a Ba b Mg c )Ca [2.0-Σ(a, b, c)] ZnSi 2 O 7 ], wherein Σ(a, b, c) is between 0.05 and 0.9; and wherein the second phase comprises a molecular formula [(Mg x Zn y Fe z )Al 2 O 4 ], wherein Σ(x, y, z)=1.
4. A material according to claim 1 , wherein said first phase is a strontium calcium zinc silicate of the formula Sr 0.1 Ca 1.9 ZnSi 2 O 7 .
5. A material according to claim 1 , wherein said metal oxide is gahnite (ZnAl 2 O 4 ), spinel (MgAl 2 O 4 ), hercynite (FeAl 2 O 4 ), or combinations thereof.
6. A material according to claim 1 , wherein the weight percentage of said first phase is between 70 and 99%.
7. A material according to claim 6 , wherein the respective weight percentage of said second phase is between 30 and 1%.
8. A material according to claim 1 , wherein the material is an implant grade or medical grade material.
9. A material according to claim 1 , wherein the material forms a hydroxyapatite layer upon exposure to bodily fluids, thereby to enhance biocompatibility within a mammalian body.
10. A material according to claim 1 , wherein said material is suited for the regeneration of bone and other tissue, or for resurfacing arthritic joints to promote the growth of articular cartilage, or for the development of 3D scaffolds which promote migration, proliferation and differentiation of bone and endothelial cells, or for orthopaedic and maxillofacial surgeries, or for load-bearing parts, or to support bone tissue regeneration/formation and vascularisation, or for scaffolds for osteochondral defects, or as a coating on currently-used orthopaedic and dental implants to provide enhanced long-term implant stability, or for cosmetic purposes.
11. A material according to claim 1 , wherein the porosity of said material is between 20 and 80%.
12. A material according to claim 1 , wherein the pore size of said material is between 20 and 500 microns.
13. A material according to claim 1 , wherein the compressive strength of said material is between 2 and 15 MPa.
14. A material according to claim 1 , comprising a coating with at least one resorbable polymer material, selected from polyglycolides, polydioxanones, polyhydroxyalkanoates, polylactides, alginates, collagens, chitosans, polyalkylene oxalate, polyanhydrides, poly(glycolide-co-trimethylene carbonate), polyesteramides, and/or polydepsipeptides.
15. A composite biocompatible ceramic material comprising a first and a second phase, wherein said first phase comprises calcium zinc silicate doped with an element selected from the group of dopants consisting of Sr, Mg, Ba or a combination thereof; and the second phase comprises a metal aluminum oxide, wherein the metal is chosen from Mg, Zn, Fe or a combination thereof.
16. A material according to claim 15 , wherein said first phase comprises a molecular formula [Sr x Ca (2-x) ZnSi 2 O 7 ], wherein x is between 0.05 and 0.9.
17. A material according to claim 15 , wherein said first phase comprises the molecular formula [Sr 0.1 Ca 1.9 ZnSi 2 O 7 ].
18. A material according to claim 15 , wherein said second phase is gahnite (ZnAl 2 O 4 ).
19. A material according to claim 15 , wherein said calcium is at least partially substituted with magnesium.
20. A composite biocompatible ceramic material comprising strontium calcium zinc silicate and gahnite (ZnAl 2 O 4 ).
21. A material according to claim 20 , comprising strontium calcium zinc silicate of the approximate molecular formula Sr 0.1 Ca 1.9 ZnSi 2 O 7 and gahnite.
22. An implantable medical device, a bone implant, a tooth filling, or a biocement comprising a composite biocompatible ceramic material defined according to claim 1 .
23. The material according to claim 10 , wherein said cosmetic purpose is nose enhancement, chin enhancement or leg lengthening.