采用光刻技术和反应离子刻蚀法(RIE)先在硅表面制备出一系列平面尺寸不同的微图形阵列,然后采用溶胶凝胶(sol-gel)浸渍提拉法在其表面制备出均匀致密、表面粗糙度一致的锐钛矿型纳米晶TiO2薄膜.利用扫描电镜(SEM)和免疫荧光标记实验研究图形尺寸对人脐静脉内皮细胞(HUVEC)附着形态的影响.实验结果发现在化学成分、细胞毒性、表面粗糙度都不对细胞附着形态产生影响的条件下,HUVEC对图形尺寸的响应为:当平面空间足够时细胞的附着伸展性能较好,而当没有足够的平面空间时细胞的附着伸展性能较差.
参考文献
[1] | Curtis A;Wilkinson C .Review topographical control of cells[J].BIOMATERIALS,1997,18:1573-1583. |
[2] | Brunette DM;Hamilton DW;Chehroudi B et al.Update on improving the bio -implant interface by controlling cell behaviour using surface topography[J].International Congress Series,2005,1284:229-238. |
[3] | Den Brabor ET;Deruijter JE;Smith HTJ et al.Effect of parallel surface microgrooves and surface energy on cell growth[J].Journal of Biomedical Materials Research,1995,29:511-518. |
[4] | Wan YQ;wang Y;Liu ZM et al.Adhesion and proliferation of OTC-1 osteoblast-like cells on micro-and nano-scale topography structured poly(L-lactide)[J].Biomaterials,2005,26:4453-4459. |
[5] | Rolando Barbucci;Stefania Lamponi;Agnese Magnani;Daniela Pasqui .Micropatterned surfaces for the control of endothelial cell behaviour[J].Biomolecular engineering,2002(2/6):161-170. |
[6] | Winkelmann M.;Gold J.;Hauert R.;Kasemo B.;Spencer ND.;Brunette DM. Textor M. .Chemically patterned, metal oxide based surfaces produced by photolithographic techniques for studying protein- and cell-surface interactions I: Microfabrication and surface characterization[J].Biomaterials,2003(7):1133-1145. |
[7] | Zinger O;Anselme K;Denzer A;Habersetzer P;Wieland M;Jeanfils J;Hardouin P;Landolt D .Time-dependent morphology and adhesion of osteoblastic cells on titanium model surfaces featuring scale-resolved topography.[J].Biomaterials,2004(14):2695-2711. |
[8] | Zhang F;Zheng Z;Chen Y;Liu X;Chen A;Jiang Z .In vivo investigation of blood compatibility of titanium oxide films.[J].Journal of biomedical materials research, Part B. Applied biomaterials,1998(1):128-133. |
[9] | Akin FA;Zreiqat H;Jordan S et al.Preparation and analysis of macroporous TiO2 films on Ti surfaces for bone/ tissue implants[J].Journal of Biomedical Materials Research,2001,57(04):588-596. |
[10] | Samuneva B;Kozhukarov V;Trapalis CH .Sol-gel processing of titanium-containing thin coatings[J].Journal of Materials Science,1993,28:2353-2360. |
[11] | Kajihara K.;Tanaka K.;Hirao K.;Soga N.;Nakanishi K. .Preparation of macroporous titania films by a sol-gel dip-coating method from the system containing poly(ethylene glycol)[J].Journal of the American Ceramic Society,1998(10):2670-2676. |
[12] | Haddow DB;James PF;Van Noort R .Characterization of sol-gel surfaces for biomedical applications[J].Journal of Materials Science:Materials in Medicine,1996,7:255-260. |
[13] | Chung TW;Liu DZ;Wang SY;Wang SS .Enhancement of the growth of human endothelial cells by surface roughness at nanometer scale.[J].Biomaterials,2003(25):4655-4661. |
[14] | Suzuki K;Aoki K;Ohya K .Effects of surface roughness of titanium implants on bone remodeling activity of femur in rabbits[J].Bone,1997,21(06):507-514. |
[15] | Wennerberg A .The importance of surface roughness for implant incorporation[J].International Journal of Machine Tools and Manufacture,1998,38(5-6):657-62. |
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