[Latest research progress of rare earth-magnesium alloys in orthopedics].

Q3 Medicine
Zhengming Sun, Kun Zuo, Xinke Zhu, Hao Yue, Zhengchao Gao
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引用次数: 0

Abstract

Due to their good properties of elastic modulus, degradability and ability to promote bone repair, magnesium alloys have become a research hotspot in research of orthopedic implants. Nevertheless, most of the biomedical magnesium alloys currently available fail to meet the requirements in orthopedics because of their rapid degradation after implantation. Rare earth-magnesium alloys possess excellent corrosion resistance and are expected to become important materials as clinical orthopedic implants. This review summarizes the recent progress in studies of the physiological functions of rare earth elements, the effects of supplementation of rare earth elements on biomechanical properties and the in vitro and in vivo biocompatibility of magnesium alloys, and their contribution to tendon-bone healing, addressing also the current clinical orthopedic applications of different rare earth-magnesium alloys, challenges, and future strategies for improving these alloys.

由于镁合金具有良好的弹性模量、降解性和促进骨骼修复的能力,因此已成为骨科植入物研究的热点。然而,由于镁合金在植入后会迅速降解,目前大多数生物医学镁合金都无法满足整形外科的要求。稀土镁合金具有优异的耐腐蚀性,有望成为临床骨科植入物的重要材料。本综述总结了稀土元素生理功能研究的最新进展、稀土元素的补充对镁合金生物力学特性和体内外生物相容性的影响及其对肌腱骨愈合的贡献,同时还探讨了不同稀土镁合金目前的临床矫形应用、面临的挑战以及改进这些合金的未来策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
南方医科大学学报杂志
南方医科大学学报杂志 Medicine-Medicine (all)
CiteScore
1.50
自引率
0.00%
发文量
208
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