可生物降解镁合金的设计、制备、表面改性及临床应用现状与展望

IF 13.8 1区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING
Jianzeng Ren , Zhou Jiang , Jianbing He , Xiaoying Wang , Weihong Jin , Zhentao Yu
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引用次数: 0

摘要

生物可降解金属由于其在受损组织修复后的自我降解能力而引起了相当大的兴趣。这篇综述从它们的历史发展开始,并阐明了它们成功临床转化的必要先决条件。随后,从合金、制备技术、纯化、表面改性和结构设计五个关键领域对镁基材料进行了详细的综述,系统地介绍了镁基材料在生物降解速率延缓、机械增强和生物相容性增强方面的进展。综述了镁合金在动物体内实验和临床转化方面的最新进展。最后,本文总结了这些材料在临床应用中所取得的成就和面临的挑战,并提出了解决当前局限性和指导未来研究前景的实用策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Current status and perspectives on design, fabrication, surface modification, and clinical applications of biodegradable magnesium alloys

Current status and perspectives on design, fabrication, surface modification, and clinical applications of biodegradable magnesium alloys
Biodegradable metals have garnered considerable interest owing to their capacity for self-degradation following the repair of damaged tissues. This review commences with their historical development and clarifies the essential prerequisites for their successful clinical translation. Subsequently, a detailed review of magnesium-based materials is presented from five critical areas of alloying, fabrication techniques, purification, surface modification, and structural design, systematically addressing their progress in biodegradation rate retardation, mechanical reinforcement, and biocompatibility enhancement. Furthermore, recent breakthroughs in vivo animal experiments and clinical translation of magnesium alloys are summarized. Finally, this review concludes with a critical assessment of the achievements and challenges encountered in the clinical application of these materials, and proposes practical strategies to address current limitations and guide future research perspectives.
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来源期刊
Journal of Magnesium and Alloys
Journal of Magnesium and Alloys Engineering-Mechanics of Materials
CiteScore
20.20
自引率
14.80%
发文量
52
审稿时长
59 days
期刊介绍: The Journal of Magnesium and Alloys serves as a global platform for both theoretical and experimental studies in magnesium science and engineering. It welcomes submissions investigating various scientific and engineering factors impacting the metallurgy, processing, microstructure, properties, and applications of magnesium and alloys. The journal covers all aspects of magnesium and alloy research, including raw materials, alloy casting, extrusion and deformation, corrosion and surface treatment, joining and machining, simulation and modeling, microstructure evolution and mechanical properties, new alloy development, magnesium-based composites, bio-materials and energy materials, applications, and recycling.
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