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Degradation and biological properties of Ca-P contained micro-arc oxidation self-sealing coating on pure magnesium for bone fixation

机译:Ca-P含镁微弧氧化自密封涂层的降解及其生物学特性

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Poor corrosion resistance is one of the main disadvantages for biodegradable magnesium-based metals, especially applied for bone fixation, where there is a high demand of bio-mechanical strength and stability. Surface coating has been proved as an effective method to control the in vivo degradation. In this study a Ca-P self-sealing micro-arc oxidation (MAO) coating was studied to verify its efficacy and biological properties by in vitro and in vivo tests. It was found that the MAO coating could effectively retard the degradation according to immersion and electrochemical tests as well as 3D reconstruction by X-ray tomography after implantation. The MAO coating exhibited no toxicity and could stimulate the new bone formation. Therefore, the Ca-P self-sealing MAO coating could be a potential candidate for application of biodegradable Mg-based implant in bone fixations.
机译:耐腐蚀性差是可生物降解的镁基金属的主要缺点之一,尤其是在对生物力学强度和稳定性有很高要求的骨骼固定中。已经证明表面涂层是控制体内降解的有效方法。在这项研究中,对Ca-P自密封微弧氧化(MAO)涂层进行了研究,以通过体外和体内试验验证其功效和生物学特性。已经发现,根据浸渍和电化学测试以及植入后通过X射线断层摄影术进行的3D重建,MAO涂层可以有效地抑制降解。 MAO涂层没有毒性,可以刺激新的骨骼形成。因此,Ca-P自密封MAO涂层可能是可生物降解的基于Mg的植入物在骨固定中应用的潜在候选者。

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