钛及钛合金具有较好的生物相容性及优良的机械性能,在临床上得到了越来越广泛的应用.表面生物活性化能够进一步改善其表面性能,提高表面生物活性.本文对钛及其合金的仿生表面改性进行了综述,具体介绍了化学法、促形核剂法、自组装单分子法的活化机理,并对仿生表面改性的发展方向进行了探讨.
参考文献
[1] | Kokubo T;Miyaji F;Kim H M .[J].American Ceramic Society Bulletin,1996,79:1127-1129. |
[2] | Chen MF.;Yang XJ.;Liu Y.;Zhu SL.;Cui ZD.;Man HC. .Study on the formation of an apatite layer on NiTi shape memory alloy using a chemical treatment method[J].Surface & Coatings Technology,2003(2/3):229-234. |
[3] | Lenka J;Frank A M;Helebrant A et al.[J].BIOMATERIALS,2004,25:1187-1194. |
[4] | Chen M F;Yang X J;Hu R X et al.[J].Materials Science and Engineering C,2004,24:497-502. |
[5] | 付涛,徐可为.仿生法沉积磷灰石层的研究进展[J].生物医学工程学杂志,2001(01):116-118. |
[6] | Wen HB.;Dewijn JR.;Liu Q.;Cui FZ.;Degroot K.;Wolke JGC. .FAST PRECIPITATION OF CALCIUM PHOSPHATE LAYERS ON TITANIUM INDUCED BY SIMPLE CHEMICAL TREATMENTS[J].Biomaterials,1997(22):1471-1478. |
[7] | David A A;David M G .[J].Materials Science and Engineering A,2003,349:89-97. |
[8] | Lee BH;Kim YD;Lee KH .XPS study of bioactive graded layer in Ti-In-Nb-Ta alloy prepared by alkali and heat treatments.[J].Biomaterials,2003(13):2257-2266. |
[9] | Takadama H;Kim H M;Kokubo T et al.[J].Science and Technology of Advanced Materials,2001,2:389-396. |
[10] | 杨贤金,梁玉,朱胜利,崔振铎.钙磷层对NiTi形状记忆合金与骨组织结合特性的影响[J].材料热处理学报,2002(01):40-42. |
[11] | Nishio K.;Neo M. .The effect of alkali- and heat-treated titanium and apatite-formed titanium on osteoblastic differentiation of bone marrow cells[J].Journal of biomedical materials research, Part B. Applied biomaterials,2000(4):652-661. |
[12] | Yoshinari M;Oda Y;Inoue T;Matsuzaka K;Shimono M .Bone response to calcium phosphate-coated and bisphosphonate-immobilized titanium implants.[J].Biomaterials,2002(14):2879-2885. |
[13] | Feng QL.;Wang H.;Kim TN.;Kim JO.;Cui FZ. .Influence of solution conditions on deposition of calcium phosphate on titanium by NaOH-treatment[J].Journal of Crystal Growth,2000(4):735-740. |
[14] | Rhee SH;Tanaka J .Effect of citric acid on the nucleation of hydroxyapatite in a simulated body fluid.[J].Biomaterials,1999(22):2155-2160. |
[15] | Morra M;Cassinelli C;Cascardo G;Cahalan P;Cahalan L;Fini M;Giardino R .Surface engineering of titanium by collagen immobilization. Surface characterization and in vitro and in vivo studies.[J].Biomaterials,2003(25):4639-4654. |
[16] | 段可,程俊秋,翁杰,张兴栋.聚丙烯酸钠对钛表面仿生生长磷灰石涂层的调制[J].化学研究与应用,2001(04):468-470. |
[17] | Liu Y L;Layrolle P;Bruijn J D et al.[J].Journal of Biomedical Materials Research,2001,57:327-335. |
[18] | SerroAPVAD;FernandesAC;SaramagoBDJ V et al.[J].Journal of Biomedical Materials Research,2000,49:345-352. |
[19] | Shirkhanzadeh M. .Nanoporous alkoxy-derived titanium oxide coating: a reactive overlayer for functionalizing titanium surface[J].Journal of Materials Science. Materials in Medicine,1998(6):355-362. |
[20] | Campell A A;Fryxell G E et al.[J].Journal of Biomedical Materials Research,1996,32(01):111-118. |
[21] | Liu Q;Ding J;Mante FK;Wunder SL;Baran GR .The role of surface functional groups in calcium phosphate nucleation on titanium foil: a self-assembled monolayer technique.[J].Biomaterials,2002(15):3103-3111. |
[22] | Ma C L;Lu H B;Wang R Z et al.[J].Journal of Crystal Growth,1997,173:141-149. |
[23] | Zhu P X;Yoshitake M;Tetstu Y et al.[J].Journal of the American Ceramic Society,2003,86(05):782-790. |
[24] | Roveri N;Falini G .[J].Materials Science and Engineering,2003,23:441-446. |
[25] | Yang B C;Uchida M .[J].BIOMATERIALS,2004,25:1003-1010. |
[26] | 石建民,丁传贤,吴益华.生物活性钛涂层[J].无机材料学报,2001(03):515-521. |
[27] | 曲海波,宋晨路,程逵,沈鸽,翁文剑,杜丕一,韩高荣.纳米含氟磷灰石涂层及其在模拟溶液中的行为[J].过程工程学报,2002(04):370-374. |
[28] | 陈晓明,李世普.钛合金表面钙磷生物医学陶瓷涂层的稳定性[J].硅酸盐通报,2001(01):30-33. |
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