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Biocompatibility and biodegradation studies of a commercial zinc alloy for temporary mini-implant applications

机译:用于临时微型植入物的商品锌合金的生物相容性和生物降解研究

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摘要

In this study, the biocompatibility and in vitro degradation behaviour of a commercial zinc-based alloy (Zn-5 Al-4 Mg) were evaluated and compared with that of pure zinc for temporary orthopaedic implant applications. Biocompatibility tests were conducted using human alveolar lung epithelial cells (A549), which showed that the zinc alloy exhibits similar biocompatibility as compared to pure zinc. In vitro degradation evaluation was performed using weight loss and electrochemical methods in simulated body fluid (SBF) at 37 °C. Weight loss measurements revealed that the degradation of the zinc alloy was slightly lower during the initial immersion period (1–3 days), but marginally increased after 5 and 7 days immersion as compared to pure zinc. Potentiodynamic polarisation experiments showed that the zinc alloy exhibits higher degradation rate than pure zinc. However, electrochemical impedance spectroscopy analysis suggests that pure zinc is susceptible to localized degradation, whereas the zinc alloy exhibited passivation behaviour. Post-degradation analysis revealed localized degradation in both pure zinc and the zinc alloy.
机译:在这项研究中,评估了市售锌基合金(Zn-5 Al-4 Mg)的生物相容性和体外降解性能,并将其与纯锌进行临时的骨科植入物应用进行了比较。使用人肺泡肺上皮细胞(A549)进行了生物相容性测试,结果表明锌合金与纯锌相比具有相似的生物相容性。使用失重和电化学方法在37°C的模拟体液(SBF)中进行体外降解评估。失重测量表明,与纯锌相比,在初始浸入期间(1-3天),锌合金的降解程度略低,但在浸入5和7天后略有增加。电位动力极化实验表明,锌合金的降解速率高于纯锌。然而,电化学阻抗谱分析表明纯锌易于局部降解,而锌合金表现出钝化行为。降解后分析表明,纯锌和锌合金均发生局部降解。

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