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骨组织工程中钛合金支架的性能改进:文献综述

Properties improvement of titanium alloys scaffolds in bone tissue engineering: a literature review.

作者信息

Zuo Weiyang, Yu Lingjia, Lin Jisheng, Yang Yong, Fei Qi

机构信息

Department of Orthopedics, Beijing Friendship Hospital, Capital Medical University, Beijing, China.

出版信息

Ann Transl Med. 2021 Aug;9(15):1259. doi: 10.21037/atm-20-8175.

Abstract

Owing to their excellent biocompatibility and corrosion-resistant properties, titanium (Ti) (and its alloy) are essential artificial substitute biomaterials for orthopedics. However, flaws, such as weak osteogenic induction ability and higher Young's modulus, have been observed during clinical application. As a result, short- and long-term postoperative follow-up has found that several complications have occurred. For decades, scientists have exerted efforts to compensate for these deficiencies. Different modification methods have been investigated, including changing alloy contents, surface structure transformation, three-dimensional (3D) structure transformation, coating, and surface functionalization technologies. The cell-surface interaction effect and imitation of the natural 3D bone structure are the two main mechanisms of these improved methods. In recent years, significant progress has been made in materials science research methods, including thorough research of titanium alloys of different compositions, precise surface pattern control technology, controllable 3D structure construction technology, improvement of coating technologies, and novel concepts of surface functionalization. These improvements facilitate the possibility for further research in the field of bone tissue engineering. Although the underlying mechanism is still not fully understood, these studies still have some implications for clinical practice. Therefore, for the direction of further research, it is beneficial to summarize these studies according to the basal method used. This literature review aimed to classify these technologies, thereby providing beginners with a preliminary understanding of the field.

摘要

由于其优异的生物相容性和耐腐蚀性能,钛(Ti)(及其合金)是骨科必不可少的人工替代生物材料。然而,在临床应用中已观察到一些缺陷,如成骨诱导能力弱和杨氏模量较高。因此,术后短期和长期随访发现出现了一些并发症。几十年来,科学家们一直在努力弥补这些不足。已研究了不同的改性方法,包括改变合金成分、表面结构转变、三维(3D)结构转变、涂层和表面功能化技术。细胞-表面相互作用效应和对天然3D骨结构的模仿是这些改进方法的两个主要机制。近年来,材料科学研究方法取得了重大进展,包括对不同成分钛合金的深入研究、精确的表面图案控制技术、可控的3D结构构建技术、涂层技术的改进以及表面功能化的新概念。这些改进为骨组织工程领域的进一步研究提供了可能性。尽管其潜在机制仍未完全理解,但这些研究对临床实践仍有一定启示。因此,对于进一步研究的方向,根据所使用的基础方法对这些研究进行总结是有益的。这篇文献综述旨在对这些技术进行分类,从而使初学者对该领域有初步的了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d05/8421948/411bbe973cbd/atm-09-15-1259-f1.jpg

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