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Mechanical Characteristics, In Vitro Degradation, Cytotoxicity, and Antibacterial Evaluation of Zn-4.0Ag Alloy as a Biodegradable Material

机译:Zn-4.0Ag合金的机械特性,体外降解,细胞毒性和抗菌评估作为可生物降解的材料

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摘要

Zn-based biodegradable metallic materials have been regarded as new potential biomaterials for use as biodegradable implants, mainly because of the ideal degradation rate compared with those of Mg-based alloys and Fe-based alloys. In this study, we developed and investigated a novel Zn-4 wt % Ag alloy as a potential biodegradable metal. A thermomechanical treatment was applied to refine the microstructure and, consequently, to improve the mechanical properties, compared to pure Zn. The yield strength (YS), ultimate tensile strength (UTS) and elongation of the Zn-4Ag alloy are 157 MPa, 261 MPa, and 37%, respectively. The corrosion rate of Zn-4Ag calculated from released Zn ions in DMEM extracts is approximately 0.75 ± 0.16 μg cm–2 day–1, which is higher than that of pure Zn. In vitro cytotoxicity tests showed that the Zn-4Ag alloy exhibits acceptable toxicity to L929 and Saos-2 cells, and could effectively inhibit initial bacteria adhesion. This study shows that the Zn-4Ag exhibits excellent mechanical properties, predictable degradation behavior, acceptable biocompatibility, and effective antibacterial properties, which make it a candidate biodegradable material.
机译:Zn基可生物降解的金属材料已被视为用作可生物降解植入新的潜在的生物材料,与Mg基合金和Fe基合金相比,理想的降解率,主要是因为。在这项研究中,我们开发和研究了一种新的Zn-4wt%的Ag合金作为一个潜在的可生物降解的金属。热机械处理施加到细化微观结构,因此,为提高机械性能,相比于纯Zn。屈服强度(YS),极限拉伸强度(UTS)和所述的Zn-4AG合金的延伸率是157兆帕,261兆帕,和37%,分别。从释放Zn离子在DMEM中提取计算的Zn-4AG的腐蚀速率大约是0.75±0.16微克厘米-2天-1,它比纯Zn的高。在体外细胞毒性试验表明,Zn基合金4AG显示可接受的毒性和L929染Saos-2细胞,并能有效抑制的初始细菌粘附。这项研究表明,所述的Zn-4AG表现出优良的机械性能,可预测的降解行为,上可接受的生物相容性,和有效的抗菌性能,这使得它的候选生物可降解材料。

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