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骨科中的多孔钽和钛:综述

Porous Tantalum and Titanium in Orthopedics: A Review.

作者信息

Han Qing, Wang Chenyu, Chen Hao, Zhao Xue, Wang Jincheng

机构信息

Department of Orthopedics, Second Hospital of Jilin University, Changchun, 130000 Jilin Province, China.

Department of Endocrine and Metabolism, The First Hospital of Jilin University, Changchun, 130000 Jilin Province, China.

出版信息

ACS Biomater Sci Eng. 2019 Nov 11;5(11):5798-5824. doi: 10.1021/acsbiomaterials.9b00493. Epub 2019 Oct 7.

Abstract

Porous metal is metal with special porous structures, which can offer high biocompatibility and low Young's modulus to satisfy the need for orthopedic applications. Titanium and tantalum are the most widely used porous metals in orthopedics due to their excellent biomechanical properties and biocompatibility. Porous titanium and tantalum have been studied and applied for a long history until now. Here in this review, various manufacturing methods of titanium and tantalum porous metals are introduced. Application of these porous metals in different parts of the body are summarized, and strengths and weaknesses of these porous metal implants in clinical practice are discussed frankly for future improvement from the viewpoint of orthopedic surgeons. Then according to the requirements from clinics, progress in research for clinical use is illustrated in four aspects. Various creative designs of microporous and functionally gradient structure, surface modification, and functional compound systems of porous metal are exhibited as reference for future research. Finally, the directions of orthopedic porous metal development were proposed from the clinical view based on the rapid progress of additive manufacturing. Controllable design of both macroscopic anatomical bionic shape and microscopic functional bionic gradient porous metal, which could meet the rigorous mechanical demand of bone reconstruction, should be developed as the focus. The modification of a porous metal surface and construction of a functional porous metal compound system, empowering stronger cell proliferation and antimicrobial and antineoplastic property to the porous metal implant, also should be taken into consideration.

摘要

多孔金属是具有特殊多孔结构的金属,它能提供高生物相容性和低杨氏模量,以满足骨科应用的需求。钛和钽因其优异的生物力学性能和生物相容性,成为骨科领域应用最为广泛的多孔金属。多孔钛和钽至今已有很长的研究和应用历史。在这篇综述中,介绍了钛和钽多孔金属的各种制造方法。总结了这些多孔金属在身体不同部位的应用,并从骨科医生的角度坦率地讨论了这些多孔金属植入物在临床实践中的优缺点,以便未来改进。然后根据临床需求,从四个方面阐述了临床应用研究的进展。展示了多孔金属的各种微孔和功能梯度结构、表面改性及功能复合体系的创新设计,为未来研究提供参考。最后,基于增材制造的快速发展,从临床角度提出了骨科多孔金属的发展方向。应将能够满足骨重建严格力学要求的宏观解剖仿生形状和微观功能仿生梯度多孔金属的可控设计作为重点发展方向。多孔金属表面改性及功能多孔金属复合体系的构建,赋予多孔金属植入物更强的细胞增殖能力以及抗菌和抗肿瘤性能,也应予以考虑。

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