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评价 NiTi 形状记忆合金中被动氧化层形成-生物相容性关系:几何形状和身体位置的依赖性。

Evaluation of passive oxide layer formation-biocompatibility relationship in NiTi shape memory alloys: geometry and body location dependency.

机构信息

Koc University, Advanced Materials Group (AMG), Department of Mechanical Engineering, Sariyer, 34450 Istanbul, Turkey.

Koc University, Advanced Materials Group (AMG), Department of Mechanical Engineering, Sariyer, 34450 Istanbul, Turkey.

出版信息

Mater Sci Eng C Mater Biol Appl. 2014 Mar 1;36:118-29. doi: 10.1016/j.msec.2013.11.040. Epub 2013 Dec 6.

Abstract

A systematic set of ex-situ experiments were carried out on Nickel-Titanium (NiTi) shape memory alloy (SMA) in order to identify the dependence of its biocompatibility on sample geometry and body location. NiTi samples with three different geometries were immersed into three different fluids simulating different body parts. The changes observed in alloy surface and chemical content of fluids upon immersion experiments designed for four different time periods were analyzed in terms of ion release, oxide layer formation, and chemical composition of the surface layer. The results indicate that both sample geometry and immersion fluid significantly affect the alloy biocompatibility, as evidenced by the passive oxide layer formation on the alloy surface and ion release from the samples. Upon a 30 day immersion period, all three types of NiTi samples exhibited lower ion release than the critical value for clinic applications. However; a significant amount of ion release was detected in the case of gastric fluid, warranting a thorough investigation prior to utility of NiTi in gastrointestinal treatments involving long-time contact with tissue. Furthermore, certain geometries appear to be safer than the others for each fluid, providing a new set of guidelines to follow while designing implants making use of NiTi SMAs to be employed in treatments targeting specific body parts.

摘要

为了确定镍钛形状记忆合金(NiTi SMA)的生物相容性与其样品几何形状和身体位置的关系,进行了一系列的原位实验。将三种不同几何形状的 NiTi 样品浸入三种不同的流体中,以模拟不同的身体部位。根据离子释放、氧化层形成和表面层化学成分,分析了针对四个不同时间段设计的浸入实验中合金表面和流体化学成分的变化。结果表明,样品几何形状和浸入流体都会显著影响合金的生物相容性,这可以从合金表面形成的被动氧化层和样品中释放的离子中得到证明。在 30 天的浸泡期内,所有三种类型的 NiTi 样品的离子释放量均低于临床应用的临界值。然而,在胃液的情况下,检测到了大量的离子释放,这需要在将 NiTi 用于涉及长时间与组织接触的胃肠道治疗之前进行彻底的研究。此外,对于每种流体,某些几何形状似乎比其他形状更安全,为在针对特定身体部位的治疗中使用 NiTi SMA 设计植入物提供了一套新的指导原则。

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