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增材制造钽植入物修复骨缺损:系统评价。

Additively Manufactured Tantalum Implants for Repairing Bone Defects: A Systematic Review.

机构信息

Department of Orthopedic Surgery, Xiangya Hospital of Central South University, Changsha, China.

Xiangya School of Medicine, Central South University, Changsha, China.

出版信息

Tissue Eng Part B Rev. 2021 Apr;27(2):166-180. doi: 10.1089/ten.TEB.2020.0134. Epub 2020 Sep 25.

Abstract

Tantalum has unique advantages as a biomaterial for repairing bone defects due to its outstanding bioactivity, excellent corrosion resistance, and mechanical properties. Ideal implants for bone repair should be of good biocompatibility and bioactivity, as well as ability to simulate the microstructure and mechanical environment of human bone tissues. Additive manufacturing can facilitate freedom of design for the macrostructure/microstructure of bone implants with controlled mechanical properties; thus, this method has great potential. Additively manufactured tantalum implants provide a novel alternative for bone repair and are gaining increasing attention. This systematic review aims to comprehensively summarize the subsistent evidence from physicochemical, cellular, animal, and clinical studies on additively manufactured tantalum implants in repairing bone defects, for the first time. This work may provide researchers an essential grasp on the advances of additively manufactured tantalum implants. Impact statement Tantalum has unique advantages as a biomaterial. Additive manufacturing facilitates design freedom and additively manufactured tantalum is a novel alternative for bone repair. Studies on additively manufactured tantalum progress greatly, while no review summarizing the progresses was published.

摘要

钽作为一种修复骨缺损的生物材料具有独特的优势,因为它具有出色的生物活性、优异的耐腐蚀性和机械性能。理想的骨修复植入物应该具有良好的生物相容性和生物活性,以及模拟人骨组织微观结构和力学环境的能力。增材制造可以促进具有可控机械性能的骨植入物宏观/微观结构的设计自由度;因此,这种方法具有很大的潜力。增材制造的钽植入物为骨修复提供了一种新颖的选择,越来越受到关注。本系统评价首次全面总结了关于增材制造钽植入物修复骨缺损的物理化学、细胞、动物和临床研究的现有证据。这项工作可以为研究人员提供对增材制造钽植入物进展的重要掌握。

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