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骨软骨组织工程与再生医学的当前概念与挑战

Current Concepts and Challenges in Osteochondral Tissue Engineering and Regenerative Medicine.

作者信息

Yan Le-Ping, Oliveira Joaquim M, Oliveira Ana L, Reis Rui L

机构信息

3B's Research Group-Biomaterials, Biodegradables and Biomimetics, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, University of Minho, AvePark, S. Cláudio de Barco, 4806-909 Taipas, Guimarães, Portugal.

ICVS/3B's-PT Government Associate Laboratory, Braga/Guimarães, Portugal.

出版信息

ACS Biomater Sci Eng. 2015 Apr 13;1(4):183-200. doi: 10.1021/ab500038y. Epub 2015 Mar 9.

Abstract

In the past few years, great progress has been made to validate tissue engineering strategies in preclinical studies and clinical trials on the regeneration of osteochondral defects. In the preclinical studies, one of the dominant strategies comprises the development of biomimetic/bioactive scaffolds, which are used alone or incorporated with growth factors and/or stem cells. Many new trends are emerging for modulation of stem cell fate toward osteogenic and chondrogenic differentiations, but bone/cartilage interface regeneration and physical stimulus have been showing great promise. Besides the matrix-associated autologous chondrocyte implantation (MACI) procedure, the matrix-associated stem cell implantation (MASI) and layered scaffolds in acellular or cellular strategy are also applied in clinic. This review outlines the progresses at preclinical and clinical levels, and identifies the new challenges in osteochondral tissue engineering. Future perspectives are provided, e.g., the applications of extracellular matrix-like biomaterials, computer-aided design/manufacture of osteochondral implant, and reprogrammed cells for osteochondral regeneration.

摘要

在过去几年中,在临床前研究和临床试验中验证用于骨软骨缺损再生的组织工程策略方面取得了巨大进展。在临床前研究中,主要策略之一包括开发仿生/生物活性支架,这些支架可单独使用或与生长因子和/或干细胞结合使用。在调节干细胞向成骨和成软骨分化的命运方面出现了许多新趋势,但骨/软骨界面再生和物理刺激一直显示出巨大潜力。除了基质相关自体软骨细胞植入(MACI)手术外,基质相关干细胞植入(MASI)和脱细胞或细胞策略中的分层支架也应用于临床。本综述概述了临床前和临床水平的进展,并确定了骨软骨组织工程中的新挑战。还提供了未来展望,例如细胞外基质样生物材料的应用、骨软骨植入物的计算机辅助设计/制造以及用于骨软骨再生的重编程细胞。

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