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首页> 外文期刊>Acta biomaterialia >Introduction of antibacterial function into biomedical TiNi shape memory alloy by the addition of element Ag.
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Introduction of antibacterial function into biomedical TiNi shape memory alloy by the addition of element Ag.

机译:通过添加元素Ag将抗菌功能引入生物医学TiNi形状记忆合金。

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摘要

A new kind of biomedical shape memory TiNiAg alloy with antibacterial function was successfully developed in the present study by the introduction of pure Ag precipitates into the TiNi matrix phase. The microstructure, mechanical property, corrosion resistance, ion release behavior in simulated body fluid, cytotoxicity and antibacterial properties were systematically investigated. The typical microstructural feature of TiNiAg alloy at room temperature was tiny pure Ag particles (at submicrometer or micrometer scales with irregular shape) randomly distributed in the TiNi matrix phase. The presence of Ag precipitates was found to result in a slightly higher tensile strength and larger elongation of TiNiAg alloy in comparison with that of TiNi binary alloy. Furthermore, a maximum shape recovery strain of approximately 6.4% was obtained with a total prestrain of 7% in the TiNiAg alloy. In electrochemical and immersion tests, TiNiAg alloy presented good corrosion resistance in simulated body fluid, comparable with that of CP Ti and TiNi alloy. The cytotoxicity evaluation revealed that TiNiAg alloy extract induced slight toxicity to cells, but the viability of experimental cells was similar to or higher than that of TiNi alloy extract. In vitro bacterial adhesion study indicated a significantly reduced number of bacteria (S. aureus, S. epidermidis and P. gingivalis) on the TiNiAg alloy plate surface when compared with that on TiNi alloy plate surface, and the corresponding antibacterial mechanism for the TiNiAg alloy is discussed.
机译:通过将纯银沉淀物引入TiNi基体相中,本研究成功开发了一种新型的具有抗菌功能的生物医学形状记忆TiNiAg合金。系统地研究了微观结构,力学性能,耐腐蚀性,模拟体液中的离子释放行为,细胞毒性和抗菌性能。 TiNiAg合金在室温下的典型显微组织特征是随机分布在TiNi基体相中的微小的纯Ag颗粒(亚微米或微米级的不规则形状)。与TiNi二元合金相比,发现Ag沉淀物的存在导致TiNiAg合金的拉伸强度稍高,而伸长率更大。此外,在TiNiAg合金中,获得的最大形状恢复应变约为6.4%,总预应变为7%。在电化学和浸没测试中,TiNiAg合金在模拟体液中表现出良好的耐腐蚀性,与CP Ti和TiNi合金相当。细胞毒性评估表明,TiNiAg合金提取物对细胞有轻微的毒性,但实验细胞的活力与TiNi合金提取物相似或更高。体外细菌粘附研究表明,与TiNi合金板表面相比,TiNiAg合金板表面细菌(金黄色葡萄球菌,表皮葡萄球菌和齿龈假单胞菌)的数量明显减少,并且相应的抗菌机理讨论。

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