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Zn 掺杂 CaP 涂层用于控制 MgCa1 合金的降解速率:体外耐腐蚀性能、消毒和细菌/细胞-材料相互作用。

Zn doped CaP coatings used for controlling the degradation rate of MgCa1 alloy: In vitro anticorrosive properties, sterilization and bacteria/cell-material interactions.

机构信息

INNOVENT e.V. Technology Development, Group-Leader Electrochemistry Ilmstraße 18, 07743 Jena, Germany.

National Institute of Research and Development for Optoelectronics, INOE 2000, 409 Atomistilor St., 077125 Magurele, Romania.

出版信息

Colloids Surf B Biointerfaces. 2023 Feb;222:113087. doi: 10.1016/j.colsurfb.2022.113087. Epub 2022 Dec 16.

Abstract

The purpose of this study was to investigate the effect of Zn doped CaP coatings prepared by micro-arc oxidation method, as a possible approach to control MgCa1 alloy degradation. All the prepared coatings comprised a calcium deficient CaP phase. The control in this evaluation was performed with undoped CaP coating in SBF solution at body temperature (37 ± 0.5⁰C). The investigation involved determination of microchemical, mechanical, morphological, properties along with anticorrosive, cytocompatibility and antibacterial efficacy. The effect of sterilization process on the properties of the surfaces was also investigated. The results showed that the addition of Zn into CaP increased the corrosion resistance of MgCa1 alloy. Moreover, the adhesion strength of the coatings to MgCa1 alloy was enhanced by Zn addition. In cytotoxicity testing of the samples, extracts of the samples in MEM were incubated with L929 cells and malformation, degeneration and lysis of the cells were examined microscopically after 72 h. The results showed that all samples were cytocompatible. The degradation of MgCa1 alloy in the simulated body fluids (SBF) or DMEM was decreased by coating with CaP. Moreover, the degradation rate of CaP was further decreased by adding a small amount of Zn into the CaP matrix. The samples having CaP coatings and Zn doped CaP coating demonstrated antibacterial efficacy against E.coli. As a result, coating of magnesium alloy with Zn-doped CaP decreased the degradation rate, increased the corrosion resistance, cytocompatibility and the antibacterial effects of the alloys.

摘要

本研究旨在探讨通过微弧氧化法制备的 Zn 掺杂 CaP 涂层对 MgCa1 合金降解的控制作用。所有制备的涂层均包含欠钙的 CaP 相。在本评价中,以未掺杂的 CaP 涂层作为对照,在模拟体液(SBF)中于体温(37 ± 0.5°C)下进行。研究内容包括微化学、力学、形貌性能以及耐腐蚀、细胞相容性和抗菌效果的评估。还研究了灭菌过程对表面性能的影响。结果表明,Zn 的添加提高了 CaP 对 MgCa1 合金的耐腐蚀性。此外,Zn 的添加提高了涂层与 MgCa1 合金的附着强度。在样品细胞毒性测试中,将样品浸提液(MEM)与 L929 细胞孵育,72 小时后观察细胞的形态变化、退化和裂解。结果表明所有样品均具有细胞相容性。CaP 涂层降低了 MgCa1 合金在模拟体液(SBF)或 DMEM 中的降解。此外,向 CaP 基体中添加少量 Zn 进一步降低了 CaP 的降解率。具有 CaP 涂层和 Zn 掺杂 CaP 涂层的样品对大肠杆菌具有抗菌功效。因此,对镁合金进行 Zn 掺杂 CaP 涂层处理可降低降解速率,提高耐腐蚀性、细胞相容性和合金的抗菌效果。

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