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首页> 外文期刊>Surface & Coatings Technology >Enhanced in vitro biocompatibility/bioactivity of biodegradable Mg-Zn-Zr alloy by micro-arc oxidation coating contained Mg_2SiO_4
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Enhanced in vitro biocompatibility/bioactivity of biodegradable Mg-Zn-Zr alloy by micro-arc oxidation coating contained Mg_2SiO_4

机译:含Mg_2SiO_4的微弧氧化涂层增强了可生物降解的Mg-Zn-Zr合金的体外生物相容性/生物活性

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摘要

There is a great attraction to apply magnesium alloy as an orthopedic implant material due to its biodegradable feature and suitable mechanical properties. In order to further improve the biocompatibility of magnesium alloy, a Mg_2SiO_4-containing micro-arc oxidation (MAO) coating was generated on ZK60 magnesium alloy, in this study. The surface characterization by SEM, XRD and EDS showed that a rough and porous reaction layer with major composition of O, Mg and Si was formed on the surface of ZK60 alloy. The result of polarization test showed that the MAO coating significantly enhanced the corrosion resistance of biodegradable ZK60 alloy. In vitro biocompatibility/bioactivity evaluation of the MAO-coated alloy compared with the naked alloy was performed using murine bone marrow stem cells (BMSCs). The results revealed that the extract of MAO-coated alloy had no obvious cytotoxicity during the 5days culturing, and the surface of MAO coating exhibited a better cell adhesion and affinity. Alkaline phosphatase (ALP) activity assay demonstrated that the ALP level of the BMSCs in the extract of MAO-coated alloy was much higher than that of the naked alloy, indicating that the release of Mg and Si ions from the coating was beneficial for the differentiation of BMSCs. Result of blood hemolysis test showed that the MAO coating group had a drastically decreased hemolytic ratio (1.04%) compared with the naked alloy group (28.78%) (p<0.01), meaning a great improvement of hemocompatibility. In conclusion, the results of this study suggested that the Mg_2SiO_4-containing MAO coating is an effective way to improve the biocompatibility/bioactivity of magnesium alloys.
机译:由于镁合金具有可生物降解的特性和合适的机械性能,因此将镁合金用作整形外科植入物材料具有极大的吸引力。为了进一步提高镁合金的生物相容性,本研究在ZK60镁合金上生成了含Mg_2SiO_4的微弧氧化(MAO)涂层。通过SEM,XRD和EDS对表面进行表征,结果表明在ZK60合金表面形成了以O,Mg和Si为主成分的粗糙多孔反应层。极化测试结果表明,MAO涂层显着提高了可生物降解ZK60合金的耐腐蚀性。使用鼠骨髓干细胞(BMSC)对MAO涂层合金与裸合金进行了体外生物相容性/生物活性评估。结果表明,在5天的培养过程中,MAO涂层合金的提取物无明显的细胞毒性,且MAO涂层表面具有较好的细胞黏附性和亲和性。碱性磷酸酶(ALP)活性测定表明,MAO涂层合金提取物中BMSC的ALP水平比裸合金高得多,表明涂层中Mg和Si离子的释放有利于分化BMSC。血液溶血试验的结果表明,MAO涂层组的溶血率(1.04%)比裸合金组(28.78%)显着降低(p <0.01),这意味着血液相容性大大改善。总之,这项研究的结果表明,含Mg_2SiO_4的MAO涂层是提高镁合金生物相容性/生物活性的有效方法。

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