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Biodegradation behavior of micro-arc oxidation coating on magnesium alloy-from a protein perspective

机译:微电弧氧化涂层对镁合金的生物降解行为 - 来自蛋白质的观点

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摘要

Protein exerts a critical influence on the degradation behavior of absorbable magnesium (Mg)-based implants. However, the interaction mechanism between protein and a micro-arc oxidation (MAO) coating on Mg alloys remains unclear. Hereby, a MAO coating was fabricated on AZ31 Mg alloy. And its degradation behavior in phosphate buffer saline (PBS) containing bovine serum albumin (BSA) was investigated and compared with that of the uncoated alloy. Surface morphologies and chemical compositions were studied using Field-emission scanning electron microscope (FE-SEM), Fourier transform infrared spectrophotometer (FT-IR) and X-ray diffraction (XRD). The degradation behavior of the bare Mg alloy and its MAO coating was studied through electrochemical and hydrogen evolution tests. Cytotoxicity assay was applied to evaluate the biocompatibility of Mg alloy substrate and MAO coating. Results indicated that the presence of BSA decreased the degradation rate of Mg alloy substrate because BSA (RCH(NHsub2/sub)COO ̄) molecules combined with Mgsup2+/sup ions to form (RCH(NHsub2/sub)COO)sub2/subMg and thus inhibited the dissolution of Mg(OH)sub2/sub by impeding the attack of Cl ̄ ions. In the case of MAO coated Mg alloy, the adsorption of BSA on MAO coating and the formation of (RCH(NHsub2/sub)COO)sub2/subMg exhibited a synergistic effect and enhanced the corrosion resistance of the coated alloy significantly. Furthermore, cell bioactive assay suggested that the MAO coating had good viability for MG63?cells due to its high surface area.
机译:蛋白对吸收镁(Mg)基础植入物的降解行为产生临界影响。然而,蛋白质和微弧氧化(MAO)涂层之间的相互作用机理尚不清楚。因此,在AZ31mg合金上制造了MAO涂层。研究了含牛血清白蛋白(BSA)的磷酸盐缓冲盐水(PBS)中的降解行为,并与未涂覆合金的含量进行比较。使用现场发射扫描电子显微镜(Fe-SEM),傅里叶变换红外分光光度计(FT-IR)和X射线衍射(XRD)研究了表面形态和化学成分。通过电化学和氢气进化试验研究了裸镁合金及其MAO涂层的降解行为。应用细胞毒性测定以评价Mg合金基材和MAO涂层的生物相容性。结果表明,BSA的存在降低了Mg合金基质的降解速率,因为BSA(RCH(NH 2 )Coo)分子与Mg 2 + / sup>离子联合形成( RCH(NH 2 )COO) 2 mg,因此通过阻碍CL¯离子的攻击来抑制Mg(OH) 2 的溶解。在MAO涂覆的Mg合金的情况下,BSA对MAO涂层的吸附和(RCH(NH 2 )COO) 2 MG的形成表现出协同效应和增强涂层合金的耐腐蚀性显着。此外,细胞生物活性测定表明,由于其高表面积,MaO涂层具有良好的Mg63?细胞的活力。

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