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具有不同形貌的二氧化钛纳米管的生物相容性。

Biocompatibility of TiO2 nanotubes with different topographies.

作者信息

Wang Yu, Wen Cuie, Hodgson Peter, Li Yuncang

机构信息

Institute for Frontier Materials, Deakin University, Geelong, Victoria, 3217, Australia.

出版信息

J Biomed Mater Res A. 2014 Mar;102(3):743-51. doi: 10.1002/jbm.a.34738. Epub 2013 Jun 1.

Abstract

The biological response of osteoblast cells to implant materials depends on the topography and physico-chemistry of the implant surface and this determines the cell behavior such as shaping, adhesion and proliferation, and finally the cell fate. In this study, titanium (Ti) was anodized to create different topographies of titania nanotubes (TNTs) to investigate the cell behavior to them. TNTs with and without a highly ordered nanoporous layer on their top surface were fabricated using two-step and one-step anodizing processes, respectively. The TNTs without a highly ordered nanoporous layer on the top surface exhibited a rougher surface, higher surface energy and better hydrophilicity than the TNTs with such a layer. Osteoblast-like cells (SaOS2) were used to assess the biocompatibility of the TNTs with different topographies in comparison to bare cp-Ti. Results indicated that TNTs can enhance the proliferation and adhesion of osteoblast-like cells. TNTs without a highly ordered nanoporous layer exhibited better biocompatibility than the TNTs covered by such a nanoporous layer. Cell morphology observation using confocal microscopy and SEM indicated that SaOS2 cells that were adhered to the TNTs without the highly ordered nanoporous layer showed the longest filopodia compared to TNTs with a highly ordered nanoporous layer and bare cp-Ti.

摘要

成骨细胞对植入材料的生物学反应取决于植入物表面的形貌和物理化学性质,这决定了细胞的行为,如塑形、黏附和增殖,最终决定细胞命运。在本研究中,对钛(Ti)进行阳极氧化以制造不同形貌的二氧化钛纳米管(TNTs),从而研究细胞对它们的行为。分别采用两步和一步阳极氧化工艺制备了顶面有无高度有序纳米多孔层的TNTs。顶面没有高度有序纳米多孔层的TNTs比有该层的TNTs表现出更粗糙的表面、更高的表面能和更好的亲水性。使用成骨样细胞(SaOS2)来评估不同形貌的TNTs与纯商业纯钛相比的生物相容性。结果表明,TNTs可增强成骨样细胞的增殖和黏附。没有高度有序纳米多孔层的TNTs比覆盖有这种纳米多孔层的TNTs表现出更好的生物相容性。使用共聚焦显微镜和扫描电子显微镜进行的细胞形态观察表明,与具有高度有序纳米多孔层的TNTs和纯商业纯钛相比,黏附在没有高度有序纳米多孔层的TNTs上的SaOS2细胞显示出最长的丝状伪足。

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