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Electrochemical testing of a novel alloy in natural and artificial body fluids

机译:天然和人工体液中新型合金的电化学试验

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There is a recent trend in tissue engineering and regenerative medicine to use nanotechnology and bionanomaterials to obtain materials that mimic the surface properties of a natural tissue. From this perspective, nanolevel tissue engineering can be viewed as a novel anatomy of the future. In this paper, a novel titanium-based alloy is studied following this strategy. The alloy nanostructuration is proposed as an improved alternative for restorative prosthodontics or an implantable biomaterial. Tests in (i) standard solution of simulated body fluid (SBF) and (ii) natural saliva were performed to investigate the alloy's electrochemical stability. The results show that nanochannel growth on the alloy surface confers a higher stability than that of the untreated one in both natural and simulated environments. (C) 2018 Elsevier GmbH. All rights reserved.
机译:近期组织工程和再生药物的趋势使用纳米技术和生物系,获得模拟天然组织表面性质的材料。 从这个角度来看,纳米螺纹组织工程可以被视为未来的一种新颖解剖学。 本文研究了这种策略之后的新型钛基合金。 合金纳米结构被提出为改进的恢复假期或可植入生物材料的改进替代方案。 进行(i)模拟体液(SBF)和(II)天然唾液的标准溶液的试验,以研究合金的电化学稳定性。 结果表明,合金表面上的纳米通道生长赋予了自然和模拟环境中未处理的稳定性更高的稳定性。 (c)2018年Elsevier GmbH。 版权所有。

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