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用于骨整合的钛支架:力学性能、体外性能及腐蚀行为

Titanium scaffolds for osteointegration: mechanical, in vitro and corrosion behaviour.

作者信息

Cachinho Sandra C P, Correia Rui N

机构信息

Department of Ceramics and Glass Engineering, University of Aveiro, 3810-193 Aveiro, Portugal.

出版信息

J Mater Sci Mater Med. 2008 Jan;19(1):451-7. doi: 10.1007/s10856-006-0052-7. Epub 2007 Jul 3.

Abstract

While titanium has been successful as an orthopaedic or dental implant material, performance problems still persist concerning implant-bone interfacial strength and mechanical modulus mismatch between metal and tissue. Porous structures are an advantageous alternative because the elastic modulus can be adjusted to match that of bone, thereby preventing bone resorption. Furthermore, to achieve early and strong stabilization theses structures may be coated with bioactive deposits, as hydroxyapatite. In the present work, titanium porous scaffolds were produced from TiH(2) slurry by a replication sponge reactive sintering method, and coated with hydroxyapatite by the sol-gel process. The obtained structures were microstructurally and mechanically characterized. Their in vitro bioactivity was investigated by soaking in a simulated body fluid (SBF). Electrochemical characterization was also performed in order to evaluate the effect of coating on corrosion resistance. The scaffolds exhibit a three-dimensionally interconnected porous structure that can be mechanically and morphologically compared to trabecular bone. Their in vitro bioactivity suggests potential for osseous integration. Coating also improves corrosion resistance in physiologically saline environment.

摘要

虽然钛作为骨科或牙科植入材料已取得成功,但在植入物与骨的界面强度以及金属与组织之间的机械模量不匹配方面,性能问题仍然存在。多孔结构是一种有利的替代方案,因为其弹性模量可以调整以匹配骨的弹性模量,从而防止骨吸收。此外,为了实现早期和牢固的稳定,这些结构可以涂覆有生物活性沉积物,如羟基磷灰石。在本工作中,通过复制海绵反应烧结法由TiH₂浆料制备了钛多孔支架,并通过溶胶 - 凝胶法涂覆了羟基磷灰石。对所得结构进行了微观结构和力学表征。通过浸泡在模拟体液(SBF)中来研究它们的体外生物活性。还进行了电化学表征以评估涂层对耐腐蚀性的影响。支架呈现出三维相互连接的多孔结构,在机械性能和形态上可与松质骨相比较。它们的体外生物活性表明具有骨整合的潜力。涂层还提高了在生理盐环境中的耐腐蚀性。

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