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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Magnesium Alloys With Tunable Interfaces as Bone Implant Materials
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Magnesium Alloys With Tunable Interfaces as Bone Implant Materials

机译:镁合金与可调谐界面作为骨植入材料

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Magnesium (Mg) based biodegradable materials are a new generation orthopaedic implant materials that are intended to possess same mechanical properties as that of bone. Mg alloys are considered as promising substitutes to permanent implants due to their biodegradability in the physiological environment. However, rapid corrosion rate is one of the major constraints of using Mg alloys in clinical applications in spite of their excellent biocompatibility. Approaches to overcome the limitations include the selection of adequate alloying elements, proper surface treatment, surface modification with coating to control the degradation rate. This review focuses on current advances on surface engineering of Mg based biomaterials for biomedical applications. The review begins with a description of corrosion mechanism of Mg alloy, the requirement for appropriate surface functionalization/coatings, their structure-property-performance relationship and suitability for biomedical applications. The control of physico-chemical properties such as wettability, surface morphology, surface chemistry and surface functional groups of the coating tailored by various approaches forms the pivotal part of the review. Chemical surface treatment offers initial protection from corrosion and inorganic coating like hydroxyapatite (HA) improves the biocompatibility of the substrate. Considering the demand of ideal implant materials, multilayer hybrid coatings on Mg alloy in combination with chemical pretreatment or inorganic HA coating, and protein-based polymer coating could be a promising technique to improve corrosion resistance and promote biocompatibility of Mg-based alloys.
机译:基于镁(Mg)的可生物降解材料是一种新一代骨科植入材料,旨在具有与骨骼相同的机械性能。由于其生理环境中的生物降解性,Mg合金被认为是有前途的替代物到永久性植入物。然而,尽管它们具有优异的生物相容性,快速腐蚀速率是在临床应用中使用Mg合金的主要限制之一。克服局限性的方法包括选择适当合金元素,适当的表面处理,用涂层进行表面改性以控制降解速率。本综述重点介绍了对生物医学应用的基于Mg的生物材料表面工程的当前进步。审查开始于Mg合金的腐蚀机理的描述,该要求适当的表面官能化/涂层,其结构性能性能关系和生物医学应用的适用性。通过各种方法量身定制的涂层涂层的润湿性,表面形态,表面化学和表面官能团等对物理化学性质的控制构成了审查的关键部分。化学表面处理提供初始保护,如羟基磷灰石(HA)改善基材的生物相容性,如腐蚀和无机涂层。考虑到理想植入材料的需求,Mg合金的多层杂合涂层与化学预处理或无机HA涂层组合,以及蛋白质基聚合物涂层可以是提高耐腐蚀性和促进Mg基合金的生物相容性的有希望的技术。

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