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种植材料表面内皮化策略:最近 5 年的最新研究。

Endothelialization strategy of implant materials surface: The newest research in recent 5 years.

机构信息

Key Laboratory of Advanced Technology of Materials, Ministry of Education, Southwest Jiaotong University, Chengdu, China.

School of Life Science and Engineering, Southwest Jiaotong University, Chengdu, China.

出版信息

J Appl Biomater Funct Mater. 2022 Jan-Dec;20:22808000221105332. doi: 10.1177/22808000221105332.

Abstract

In recent years, more and more metal or non-metal materials have been used in the treatment of cardiovascular diseases, but the vascular complications after transplantation are still the main factors restricting the clinical application of most grafts, such as acute thrombosis and graft restenosis. Implant materials have been extensively designed and surface optimized by researchers, but it is still too difficult to avoid complications. Natural vascular endodermis has excellent function, anti-coagulant and anti-intimal hyperplasia, and it is also the key to maintaining the homeostasis of normal vascular microenvironment. Therefore, how to promote the adhesion of endothelial cells (ECs) on the surface of cardiovascular materials to achieve endothelialization of the surface is the key to overcoming the complications after implant materialization. At present, the surface endothelialization design of materials based on materials surface science, bioactive molecules, and biological function intervention and feedback has attracted much attention. In this review, we summarize the related research on the surface modification of materials by endothelialization in recent years, and analyze the advantages and challenges of current endothelialization design ideas, explain the relationship between materials, cells, and vascular remodeling in order to find a more ideal endothelialization surface modification strategy for future researchers to meet the requirements of clinical biocompatibility of cardiovascular materials.

摘要

近年来,越来越多的金属或非金属材料被用于心血管疾病的治疗,但移植后血管并发症仍然是大多数移植物临床应用的主要限制因素,如急性血栓形成和移植物再狭窄。研究人员已经广泛设计和优化了植入材料的表面,但要避免并发症仍然非常困难。天然血管内皮层具有优异的功能,抗凝血和抗内膜增生,也是维持正常血管微环境平衡的关键。因此,如何促进内皮细胞(ECs)在心血管材料表面的黏附,实现表面的内皮化,是克服植入材料后并发症的关键。目前,基于材料表面科学、生物活性分子和生物功能干预和反馈的材料表面内皮化设计引起了广泛关注。本文总结了近年来材料内皮化表面改性的相关研究,并分析了当前内皮化设计思路的优缺点,阐述了材料、细胞和血管重构之间的关系,以期为未来的研究者找到更理想的内皮化表面改性策略,满足心血管材料临床生物相容性的要求。

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