Institute of Biomedical Engineering, University of Toronto, Toronto, Ontario, Canada.
Department of Chemical Engineering and Applied Chemistry, University of Toronto, Toronto, Ontario, Canada.
J Biomed Mater Res A. 2021 Dec;109(12):2720-2739. doi: 10.1002/jbm.a.37239. Epub 2021 May 26.
Skeletal muscles normally have a remarkable ability to repair themselves; however, large muscle injuries and several myopathies diminish this ability leading to permanent loss of function. No clinical therapy yet exists that reliably restores muscle integrity and function following severe injury. Consequently, numerous tissue engineering techniques, both acellular and with cells, are being investigated to enhance muscle regeneration. Biomaterials are an essential part of these techniques as they can present physical and biochemical signals that augment the repair process. Successful tissue engineering strategies require regenerative biomaterials that either actively promote endogenous muscle repair or create an environment supportive of regeneration. This review will discuss several acellular biomaterial strategies for skeletal muscle regeneration with a focus on those under investigation in vivo. This includes materials that release bioactive molecules, biomimetic materials and immunomodulatory materials.
骨骼肌通常具有很强的自我修复能力;然而,严重的肌肉损伤和多种肌病会削弱这种能力,导致肌肉功能永久丧失。目前还没有可靠的临床疗法能在严重损伤后恢复肌肉的完整性和功能。因此,人们正在研究许多细胞外和细胞内的组织工程技术,以促进肌肉再生。生物材料是这些技术的重要组成部分,因为它们可以提供物理和生化信号,增强修复过程。成功的组织工程策略需要再生生物材料,这些材料要么主动促进内源性肌肉修复,要么创造一个支持再生的环境。本文将讨论几种用于骨骼肌再生的细胞外生物材料策略,重点介绍体内研究的策略。这包括释放生物活性分子的材料、仿生材料和免疫调节材料。