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In vivo assessment of a new multifunctional coating architecture for improved Mg alloy biocompatibility

机译:用于改善镁合金生物相容性的新型多功能涂层体系结构的体内评估

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摘要

Magnesium alloys are regarded as potential biodegradable load-bearing biomaterials for orthopedic applications due to their physico-chemical and biomechanical properties. However, their clinical applicability is restricted by their high degradation rate, which limits the physiological reconstruction of the neighbouring tissues. In this work, a multifunctional coating architecture was developed on an AZ31 alloy by conjoining an anodization process with the deposition of a polymeric-based layer consisting of polyether imine reinforced with hydroxyapatite nanoparticles, aiming at improved control of the corrosion activity and biological performance of the Mg substrate.
机译:镁合金由于其物理化学和生物力学特性,被认为是骨科应用中潜在的可生物降解的承重生物材料。然而,它们的高降解率限制了它们的临床适用性,这限制了邻近组织的生理重建。在这项工作中,通过结合阳极氧化工艺和沉积由羟基磷灰石纳米粒子增强的聚醚亚胺组成的聚合物基层,共同开发了一种在AZ31合金上的多功能涂层结构,旨在改善对涂层的腐蚀活性和生物学性能的控制。镁基质。

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