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微波辅助在 AZ31 镁合金上制备磷酸镁涂层。

Microwave-assisted magnesium phosphate coating on the AZ31 magnesium alloy.

机构信息

Department of Mechanical, Industrial and Manufacturing Engineering, The University of Toledo, Toledo, OH 43606, United States of America.

出版信息

Biomed Mater. 2017 Aug 18;12(4):045026. doi: 10.1088/1748-605X/aa78c0.

Abstract

Due to the combination of many unique properties, magnesium alloys have been widely recognized as suitable metallic materials for fabricating degradable biomedical implants. However, the extremely high degradation kinetics of magnesium alloys in the physiological environment have hindered their clinical applications. This paper reports for the first time the use of a novel microwave-assisted coating process to deposit magnesium phosphate (MgP) coatings on the Mg alloy AZ31 and improve its in vitro corrosion resistance. Newberyite and trimagnesium phosphate hydrate (TMP) layers with distinct features were fabricated at various processing times and temperatures. Subsequently, the corrosion resistance, degradation behavior, bioactivity and cytocompatibility of the MgP coated AZ31 samples were investigated. The potentiodynamic polarization tests reveal that the corrosion current density of the AZ31 magnesium alloy in simulated body fluid (SBF) is significantly suppressed by the deposited MgP coatings. Additionally, it is seen that MgP coatings remarkably reduced the mass loss of the AZ31 alloy after immersion in SBF for two weeks and promoted precipitation of apatite particles. The high viability of preosteoblast cells cultured with extracts of coated samples indicates that the MgP coatings can improve the cytocompatibility of the AZ31 alloy. These attractive results suggest that MgP coatings, serving as the protective and bioactive layer, can enhance the corrosion resistance and biological response of magnesium alloys.

摘要

由于具有许多独特的性质,镁合金已被广泛认为是适合制造可降解生物医学植入物的金属材料。然而,镁合金在生理环境中极高的降解动力学阻碍了它们的临床应用。本文首次报道了一种新颖的微波辅助涂层工艺,用于在 Mg 合金 AZ31 上沉积磷酸镁(MgP)涂层,以提高其体外耐腐蚀性。在不同的处理时间和温度下,制备了具有不同特征的方镁石和三水合磷酸三镁(TMP)层。随后,研究了 MgP 涂层 AZ31 样品的耐腐蚀性、降解行为、生物活性和细胞相容性。动电位极化测试表明,沉积的 MgP 涂层显著抑制了 AZ31 镁合金在模拟体液(SBF)中的腐蚀电流密度。此外,还发现 MgP 涂层显著降低了 AZ31 合金在 SBF 中浸泡两周后的质量损失,并促进了磷灰石颗粒的沉淀。用涂层样品浸提液培养的前成骨细胞具有较高的活力,表明 MgP 涂层可以提高 AZ31 合金的细胞相容性。这些有吸引力的结果表明,MgP 涂层作为保护性和生物活性层,可以提高镁合金的耐腐蚀性和生物响应性。

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