Micro-arc oxidation-assisted sol-gel preparation of calcium metaphosphate coatings on magnesium alloys for bone repair

IF 8.1 1区 工程技术 Q1 MATERIALS SCIENCE, BIOMATERIALS Materials science & engineering. C, Materials for biological applications Pub Date : 2021-12-01 DOI:10.1016/j.msec.2021.112491
Yanping Liu , Xian Cheng , Xiyuan Wang , Qiu Sun , Chenxi Wang , Ping Di , Ye Lin
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引用次数: 8

Abstract

Calcium phosphate coating is an attractive surface modification strategy for magnesium alloys, since it can increase their corrosion resistance and endow them with osteogenic function simultaneously. Herein, a calcium metaphosphate (CMP) coating was fabricated on magnesium alloy by using sol-gel approach assisted with micro-arc oxidation pre-treatment. Scanning electron microscopy showed that the micro-pores and cracks in micro-arc oxidation inner layer generated during the pre-treatment process were sealed by the grainy sol-gel outer layer. Energy dispersive spectrometry and X-ray diffraction results demonstrated the identity of the coating as CMP. The cross-cut test showed that the adhesion of CMP coating was strong. Applying bare magnesium alloy substrate as a control, the CMP coating surface was rougher and more hydrophilic. The potentiodynamic polarization test demonstrated that the corrosion resistance was significantly improved by using CMP coating. Hydrogen evolution in immersion test further confirmed that the degradation rate was decelerated within 14 days. Moreover, CMP coating facilitated the adhesion speed, spreading area, and focal adhesion formation of bone marrow stem cells. The number of cells in the active proliferating state and proliferated cells present on the CMP coating also increased. Additionally, CMP coating upregulated alkaline phosphatase activity and osteogenic gene expression in cells. In summary, the micro-arc oxidation assisted sol-gel CMP coatings increased the corrosion resistance and promoted the interfacial cell behavior for magnesium alloy implants, which might inform the further development of surface modifications on magnesium alloys for bone related applications.

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微弧氧化辅助溶胶-凝胶法制备骨修复用偏磷酸钙镁合金涂层
磷酸钙涂层既能提高镁合金的耐蚀性,又能使镁合金具有成骨功能,是一种有吸引力的表面改性策略。采用溶胶-凝胶法辅助微弧氧化预处理在镁合金表面制备了偏磷酸钙涂层。扫描电镜显示,预处理过程中微弧氧化内层产生的微孔和裂纹被颗粒状的溶胶-凝胶外层所封闭。能量色散光谱和x射线衍射结果表明该涂层为CMP。横切试验表明,CMP涂层附着力强。以裸露的镁合金基材为对照,CMP涂层表面更粗糙,亲水性更强。动电位极化试验表明,CMP涂层的耐蚀性显著提高。浸没试验中析氢进一步证实了14天内降解速率有所减慢。此外,CMP涂层促进了骨髓干细胞的粘附速度、扩散面积和局灶性粘附的形成。活性增殖状态的细胞数量和CMP涂层上的增殖细胞数量也有所增加。此外,CMP包被上调细胞碱性磷酸酶活性和成骨基因表达。综上所述,微弧氧化辅助溶胶-凝胶CMP涂层提高了镁合金植入物的耐腐蚀性,并促进了界面细胞的行为,这可能为进一步发展用于骨相关应用的镁合金表面改性提供指导。
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来源期刊
CiteScore
12.60
自引率
0.00%
发文量
28
审稿时长
3.3 months
期刊介绍: Materials Today is a community committed to fostering the creation and sharing of knowledge and experience in materials science. With the support of Elsevier, this community publishes high-impact peer-reviewed journals, organizes academic conferences, and conducts educational webinars, among other initiatives. It serves as a hub for advancing materials science and facilitating collaboration within the scientific community.
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