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首页> 外文期刊>ACS Omega >Characterization and Biocompatibility of Insoluble Corrosion Products of AZ91 Mg Alloys
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Characterization and Biocompatibility of Insoluble Corrosion Products of AZ91 Mg Alloys

机译:AZ91 Mg合金不溶腐蚀产物的表征和生物相容性

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Biodegradable Mg alloys have good bioactivity and suitable mechanical properties, which is desirable for application in the clinical fields. However, the biocompatibility of Mg alloys during the degradation process has always been a concern. In this paper, the corrosion behavior of AZ91 alloys in a simulated cell culture environment was studied, especially the insoluble corrosion product during the degradation was characterized, and the biocompatibility of the insoluble corrosion products was evaluated. The results of immersion test showed that the corrosion rate of the AZ91 alloy was low under the condition of high CO2 and humidity, especially in phosphate-buffered saline. Moreover, the insoluble corrosion product was MgCO3·3H2O, which showed a needle-like, circular aggregated, and square-radial feature. Meanwhile, MgCO3·3H2O showed poor cell biocompatibility by increasing the pH and Mg2+ content of the culture solution, which may affect the biocompatibility of Mg alloys.
机译:可生物降解的镁合金具有良好的生物活性和合适的机械性能,这对于在临床领域中的应用是理想的。但是,镁合金在降解过程中的生物相容性一直是人们关注的问题。本文研究了AZ91合金在模拟细胞培养环境中的腐蚀行为,特别是表征了降解过程中的不溶腐蚀产物,并评估了该不溶腐蚀产物的生物相容性。浸没测试结果表明,在高CO2和高湿度条件下,AZ91合金的腐蚀速率较低,尤其是在磷酸盐缓冲液中。此外,不溶性腐蚀产物为MgCO 3·3H 2 O,其表现出针状,圆形聚集和方形径向特征。同时,MgCO3·3H2O通过增加培养液的pH和Mg2 +含量显示出较差的细胞生物相容性,这可能会影响Mg合金的生物相容性。

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