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A comparative study of the cytotoxicity and corrosion resistance of nickel-titanium and titanium-niobium shape memory alloys

机译:镍钛和钛铌形状记忆合金的细胞毒性和耐腐蚀性的比较研究

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Nickel-titanium (NiTi) shape memory alloys (SMAs) are commonly used in a range of biomedical applications. However, concerns exist regarding their use in certain biomedical scenarios due to the known toxicity of Ni and conflicting reports of NiTi corrosion resistance, particularly under dynamic loading. Titanium-niobium (TiNb) SMAs have recently been proposed as an alternative to NiTi SMAs due to the biocompatibility of both constituents, the ability of both Ti and Nb to form protective surface oxides, and their superior workability. However, several properties critical to the use of TiNb SMAs in biomedical applications have not been systematically explored in comparison with NiTi SMAs. These properties include cytocompatibility, corrosion resistance, and alterations in alloy surface composition in response to prolonged exposure to physiological solutions. Therefore, the goal of the present work was to comparatively investigate these aspects of NiTi (49.2 at.% Ti) and TiNb (26 at.% Nb) SMAs. The results from the current studies indicate that TiNb SMAs are less cytotoxic than NiTi SMAs, at least under static culture conditions. This increased TiNb cytocompatibility was correlated with reduced ion release as well as with increased corrosion resistance according to potentio-dynamic tests. Measurements of the surface composition of samples exposed to cell culture medium further supported the reduced ion release observed from TiNb relative to NiTi SMAs. Alloy composition depth profiles also suggested the formation of calcium phosphate deposits within the surface oxide layers of medium-exposed NiTi but not of TiNb. Collectively, the present results indicate that TiNb SMAs may be promising alternatives to NiTi for certain biomedical applications.
机译:镍钛(NiTi)形状记忆合金(SMAs)通常用于一系列生物医学应用中。然而,由于已知的镍毒性和关于镍钛耐蚀性的报道相互矛盾,特别是在动态负载下,人们担心它们在某些生物医学中的应用。由于两种成分的生物相容性,Ti和Nb形成保护性表面氧化物的能力以及优异的可加工性,最近已提出钛铌(SMA)替代NiTi SMA。然而,与NiTi SMA相比,尚未系统地探索对于在生物医学应用中使用TiNb SMA至关重要的几种性能。这些特性包括细胞相容性,耐腐蚀性以及响应于长时间暴露于生理溶液而引起的合金表面组成的变化。因此,本工作的目的是比较研究NiTi(49.2 at。%Ti)和TiNb(26 at。%Nb)SMA的这些方面。当前研究的结果表明,至少在静态培养条件下,TiNb SMAs的细胞毒性比NiTi SMA小。根据电位动力学测试,这种增加的TiNb细胞相容性与减少离子释放以及提高抗腐蚀性有关。暴露于细胞培养基的样品表面组成的测量进一步支持了相对于NiTi SMA从TiNb观察到的离子释放减少。合金成分深度曲线也表明在中等暴露的NiTi而不是TiNb的表面氧化物层内形成了磷酸钙沉积物。总体而言,目前的结果表明,对于某些生物医学应用,TiNb SMA可能是NiTi的有前途的替代品。

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