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Ti-6Al-7Nb 合金降低了毒性并提高了前成骨细胞的细胞反应能力,并与 Ti-6Al-4V 进行了比较。

Reduced toxicity and superior cellular response of preosteoblasts to Ti-6Al-7Nb alloy and comparison with Ti-6Al-4V.

机构信息

Biomaterials and Biomedical Engineering Research Laboratory, Center for Structural and Functional Materials, University of Louisiana at Lafayette, P.O. Box 44130, Lafayette, Louisiana 70504, USA.

出版信息

J Biomed Mater Res A. 2013 Jul;101(7):2083-9. doi: 10.1002/jbm.a.34492. Epub 2013 Jan 24.

Abstract

There are serious concerns on the toxicity of vanadium in Ti-6Al-4V alloy. In this regard, we describe the biological footprint of Ti-6Al-4V and compare with a viable alternate Ti-6Al-7Nb alloy, in terms of novel experimentation pertaining to cellular activity that include qualitative and quantitative analysis of Feret's diameter of cells, area, and perimeter, and proteins-actin, vinculin, and fibronectin. Interestingly, Ti-6Al-7Nb was characterized by superior cell attachment, proliferation, viability, morphology, and spread, which were significantly different from Ti-6Al-4V alloy. Additionally, immunofluorescence studies demonstrated stronger vinculin signals associated with actin stress fibers in the outer regions of the cells and cellular extensions in Ti-6Al-7Nb alloy. These striking observations suggest enhanced cell-substrate interaction and activity on the surface of niobium-containing titanium alloy. The significant differences in the cellular response between the two alloys clearly point to the determining role of alloying element (Nb versus V) in a conclusive manner. Based on this study, next generation of titanium alloys is proposed to focus on niobium-containing alloy.

摘要

人们对 Ti-6Al-4V 合金中钒的毒性存在严重担忧。有鉴于此,我们描述了 Ti-6Al-4V 的生物学足迹,并将其与一种可行的替代 Ti-6Al-7Nb 合金进行了比较,比较的方面包括与细胞活性相关的新型实验,包括细胞 Feret 直径、面积和周长的定性和定量分析,以及蛋白质-肌动蛋白、纽蛋白和纤连蛋白。有趣的是,Ti-6Al-7Nb 的特点是细胞附着、增殖、活力、形态和扩散能力更好,与 Ti-6Al-4V 合金有明显差异。此外,免疫荧光研究表明,在 Ti-6Al-7Nb 合金中,细胞外区域的肌动蛋白应力纤维和细胞突起与纽蛋白的结合信号更强。这些显著的观察结果表明,含铌钛合金表面的细胞-基底相互作用和活性增强。两种合金之间细胞反应的显著差异明确地以一种决定性的方式指出了合金元素(Nb 与 V)的决定性作用。基于这项研究,提出了下一代钛合金将侧重于含铌合金。

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