随着纳米和生物技术的进步,国内外学者制备了一系列新型的骨组织工程支架材料.为了更好地认识纳米生物材料的优点和指导制备新型的骨组织工程支架材料,综述了近年来纳米磷酸钙相关支架材料研究进展,着重介绍了纳米磷酸钙陶瓷、纳米磷酸钙复合陶瓷以及纳米磷酸钙/聚合物复合材料制备方法、性能和应用,并总结了各类方法的不足之处和将来发展的趋势.
参考文献
[1] | Crane G M;Ishau S L;Mikos A G .[J].Nature Medicine,1995,1:1322-1324. |
[2] | Kim,BS;Mooney,DJ .Development of biocompatible synthetic extracellular matrices for tissue engineering.[J].Trends in Biotechnology,1998(5):224-230. |
[3] | Albee F H;Morrison H F .[J].Annals of Surgery,1920,1:32-39. |
[4] | Nery E B;Lynch K L;Rooney G E .[J].Journal of Prosthetic Dentistry,1978,40:668-675. |
[5] | Zhang X D;Zou P;Wu C.A Study of Porous Block HA Ceramics and Its Osteogeneses[M].London:Elsevier Applied Science,1991:408-415. |
[6] | 刘宣勇.硬组织植入材料表/界面研究进展[J].无机材料学报,2011(01):1-11. |
[7] | Liu H N;Webster T J .[J].Biomaterials,2007,28:354-369. |
[8] | Guo X Y;Gough J E;Xiao P et al.[J].Journal of Biomedical Materials Research Part A,2007,82:1022-1032. |
[9] | Zhao Y T;Zhang Y M;Ning F et al.[J].Journal of Biomedical Materials Research Part B:Applied Biomaterials,2007,83:121-126. |
[10] | Webster TJ.;Doremus RH.;Siegel RW.;Bizios R.;Ergun C. .Enhanced functions of osteoblasts on nanophase ceramics[J].Biomaterials,2000(17):1803-1810. |
[11] | Webster TJ;Hellenmeyer EL;Price RL .Increased osteoblast functions on theta+delta nanofiber alumina.[J].Biomaterials,2005(9):953-960. |
[12] | Webster TJ;Schadler LS;Siegel RW;Bizios R .Mechanisms of enhanced osteoblast adhesion on nanophase alumina involve vitronectin.[J].Tissue engineering,2001(3):291-301. |
[13] | Colon G;Ward B C;Webster T J .[J].Journal of Biomedical Materials Research Part A,2006,78:595-604. |
[14] | Li,B;Chen,X;Guo,B;Wang,X;Fan,H;Zhang,X .Fabrication and cellular biocompatibility of porous carbonated biphasic calcium phosphate ceramics with a nanostructure.[J].Acta Biomaterialia,2009(1):134-143. |
[15] | Hong Y L;Fan H S;Li B et al.[J].Materials Science and Engineering R:Reports,2010,70:225-242. |
[16] | Li Z S;Qu Y;Yang B C et al.[J].Journal of Biomedical Materials Research Part A,2008,86:333-338. |
[17] | Cui K;Zhu Y;Wang M H et al.[J].Journal of Bioactive and Compatible Polymers,2004,9:17-31. |
[18] | Liao SS;Cui FZ .In vitro and in vivo degradation of mineralized collagen-based composite scaffold: nanohydroxyapatite/collagen/poly(L-lactide).[J].Tissue engineering,2004(1/2):73-80. |
[19] | Liao S S;Cui F Z;Zhu Y .[J].Journal of Bioactive and Compatible Polymers,2004,19:117-130. |
[20] | Liao S S;Cui F Z;Zhang W et al.[J].Journal of Biomedical Materials Research Part B:Applied Biomaterials,2004,69:158-165. |
[21] | Liao S S;Wang W;Uo M et al.[J].Biomaterials,2005,26:7564-7571. |
[22] | Liao S S;Watari F;Uo M et al.[J].Journal of Biomedical Materials Research Part B:Applied Biomaterials,2005,74:817-821. |
[23] | Cui FZ;Li Y;Ge J .Self-assembly of mineralized collagen composites[J].Materials Science & Engineering, R. Reports: A Review Journal,2007(1/6):1-27. |
[24] | 冯庆玲,崔福斋,张伟.纳米羟基磷灰石/胶原骨修复材料[J].中国医学科学院学报,2002(02):124-128. |
[25] | Zhou D S;Zhao K B;Li Y et al.[J].Journal of Bioactive and Compatible Polymers,2006,21:373-384. |
[26] | Liao S S;Tamura K;Zhu Y H et al.[J].Journal of Biomedical Materials Research Part A,2006,76:820-825. |
[27] | Yamaguchi I;Tokuchi K;Fukuzaki H et al.[J].Journal of Biomedical Materials Research,2001,55:20-27. |
[28] | Rusu VM;Ng CH;Wilke M;Tiersch B;Fratzl P;Peter MG .Size-controlled hydroxyapatite nanoparticles as self-organized organic-inorganic composite materials.[J].Biomaterials,2005(26):5414-5426. |
[29] | Hu Q L;Li B Q;Wang M et al.[J].Biomaterials,2004,25:779-785. |
[30] | Murugan R;Ramakrishna S .Bioresorbable composite bone paste using polysaccharide based nano hydroxyapatite.[J].Biomaterials,2004(17):3829-3835. |
[31] | Zhang Y;Venugopal JR;El-Turki A;Ramakrishna S;Su B;Lim CT .Electrospun biomimetic nanocomposite nanofibers of hydroxyapatite/chitosan for bone tissue engineering.[J].Biomaterials,2008(32):4314-4322. |
[32] | Zhao Y;Chen J;Alex H K et al.[J].Journal of Biomedical Materials Research Part A,2009,91:1140-1149. |
[33] | Fan YW;Duan K;Wang R .A composite coating by electrolysis-induced collagen self-assembly and calcium phosphate mineralization.[J].Biomaterials,2005(14):1623-1632. |
[34] | Deng X M;Hao J Y;Wang C S .[J].Biomaterials,2001,22:2867-2873. |
[35] | Tampieri A;Landi E;Valentini F et al.[J].Nanotechnology,2011,22:015104. |
[36] | Xiao Y M;Li D X;Fan H S et al.[J].Materials Letters,2007,61:59-62. |
[37] | Deng C;Weng J;Duan K et al.[J].Journal of Materials Science: Materials in Medicine,2010,21:3059-3064. |
[38] | Wei J.;Li YB.;Chen WQ.;Zuo Y. .A study on nano-composite of hydroxyapatite and polyamide[J].Journal of Materials Science,2003(15):3303-3306. |
[39] | Wei J;Li Y B .[J].European Polymer Journal,2004,40:509-515. |
[40] | Shen J;Li Y;Zuo Y;Zou Q;Cheng L;Zhang L;Gong M;Gao S .Characterization and cytocompatibility of biphasic calcium phosphate/polyamide 6 scaffolds for bone regeneration.[J].Journal of biomedical materials research, Part B. Applied biomaterials,2010(2):330-338. |
[41] | Bonfield W;Wang M;Tanner K E .[J].Acta Materialia,1998,46:2509-2518. |
[42] | Bonner M;Ward I M;McGregor W et al.[J].Journal of Materials Science Letters,2001,20:2049-2051. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%