为了改善有机多孔支架的生物活性,利用磷酸钙骨水泥在潮湿空气中的自固化特性,以α-磷酸钙骨水泥为浆料体系,采用涂覆法对多孔聚氨酯进行表面修饰,获得了表面被羟基磷灰石(Cai0(PO4)6(OH)2,HAp)修饰层包裹的多孔复合材料.结果表明:在α-磷酸钙骨水泥浆料中加入2.5%(质量分数)的聚丙烯酸铵,通过与水化中成核的羟基磷灰石相互作用,改变表面电荷,能有效抑制羟基磷灰石的生长;水化后的修饰层主要由原位生长的纳米HAp晶须和多孔构成,晶须直径约为10~30nm;多孔体结构与模板相似,为贯通式通孔,孔径范围在150~500μm之间.通过自固化修饰技术,在保持原有材料的孔结构基础上,可有效改善其生物活性.
参考文献
[1] | 郇春艳,胡平.组织工程用生物材料的表面修饰技术[J].化工进展,2003(01):13-17. |
[2] | Anselme K;Bigerelle M;Noel B;Dufresne E;Judas D;Iost A;Hardouin P .Qualitative and quantitative study of human osteoblast adhesion on materials with various surface roughnesses.[J].Journal of biomedical materials research, Part B. Applied biomaterials,2000(2):155-166. |
[3] | Yokoyama A;Yamamoto S;Kawasaki T;Kohgo T;Nakasu M .Development of calcium phosphate cement using chitosan and citric acid for bone substitute materials.[J].Biomaterials,2002(4):1091-1101. |
[4] | Wang X;Ma J;Wang Y;He B .Structural characterization of phosphorylated chitosan and their applications as effective additives of calcium phosphate cements.[J].Biomaterials,2001(16):2247-2255. |
[5] | 蔡开勇,林松柏,姚康德.组织工程相关生物材料表面工程的研究进展[J].化学进展,2001(01):56-64. |
[6] | Varma HK;Yokogawa Y;Espinosa FF;Kawamoto Y;Nishizawa K;Nagata F;Kameyama T .Porous calcium phosphate coating over phosphorylated chitosan film by a biomimetic method.[J].Biomaterials,1999(9):879-884. |
[7] | Barrere F;Layroole P;Van Blifferawijk C A et al.Influence of ionic strength and carbonate on the Ca-P coating formation from SBF×5 solution[J].BIOMATERIALS,1999,25(z2):107-111. |
[8] | Mccarthy SJ.;Mitchell N.;Gunatillake PA.;Heath G.;Brandwood A.;Schindhelm K.;Meijs GF. .IN-VIVO DEGRADATION OF POLYURETHANES - TRANSMISSION-FTIR MICROSCOPIC CHARACTERIZATION OF POLYURETHANES SECTIONED BY CRYOMICROTOMY[J].Biomaterials,1997(21):1387-1409. |
[9] | Hsu SH;Chen WC .Improved cell adhesion by plasma-induced grafting of L-lactide onto polyurethane surface.[J].Biomaterials,2000(4):359-367. |
[10] | 蔡舒,王彦伟,姚康德.骨水泥自固化法制备磷酸钙多孔材料[J].硅酸盐学报,2004(09):1174-1177. |
[11] | Kitsugi T;Yamamuro T;Nakamura T et al.Bonding behavior between two bioactive ceramics in vivo[J].Journal of Biomedical Materials Research,1987,21:1109-1123. |
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