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State of the art and recent patents on Mg-based biodegradable bone implants

机译:基于镁的可生物降解骨植入物的最新技术和最新专利

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摘要

Over the past 15 years, the development of magnesium (Mg)-based biodegradable materials has undergone considerable progress and has demonstrated great potential for orthopedic applications. Mg-based biomaterials possess many advantages over newly developed and current applied biomaterials as bone implants, such as favorable in vivo biological properties, mechanical properties and density similar to those of natural bone, and Young’s modulus much lower than Ti-based alloys developed for biomedical applications. However, the main concern with the Mg alloys is related to their rapid corrosion in the physiological environment that can lead to premature failure of the implant due to poor mechanical properties and also to adverse effects caused by the accumulation of metal ions in the surrounding tissues. To adjust the corrosion rate of Mg-based materials so as to match the rates of bone healing, extensive research has been undertaken on modification methods such as alloying and various surface modifications including coating techniques. This article reviews literature and recent patents focusing on strategies used to improve the performance of Mg-based biomaterials.
机译:在过去的15年中,基于镁(Mg)的生物可降解材料的开发取得了长足的进步,并显示出在骨科应用中的巨大潜力。镁基生物材料相对于新近开发和当前应用的生物材料具有许多优势,例如具有良好的体内生物学特性,与天然骨相似的机械性能和密度,以及比用于生物医学的钛基合金低得多的杨氏模量应用程序。但是,Mg合金的主要问题涉及它们在生理环境中的快速腐蚀,由于机械性能较差,这可能导致植入物过早失效,并且还由于周围组织中金属离子的积累而引起不良影响。为了调整镁基材料的腐蚀速率以使其与骨愈合速率相匹配,已对诸如合金化和各种表面改性(包括涂层技术)的改性方法进行了广泛的研究。本文回顾了有关旨在改善基于Mg的生物材料性能的策略的文献和最新专利。

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