Hekmatnejad Bahareh, Rudnicki Michael A
The Sprott Centre for Stem Cell Research, Regenerative Medicine Program, Ottawa Hospital Research Institute, Ottawa, ON, Canada.
Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa, ON, Canada.
Front Cell Dev Biol. 2022 Aug 24;10:902225. doi: 10.3389/fcell.2022.902225. eCollection 2022.
Skeletal muscle has a remarkable capacity to regenerate throughout life, which is mediated by its resident muscle stem cells, also called satellite cells. Satellite cells, located periphery to the muscle fibers and underneath the basal lamina, are an indispensable cellular source for muscle regeneration. Satellite cell transplantation into regenerating muscle contributes robustly to muscle repair, thereby indicating that satellite cells indeed function as adult muscle stem cells. Moreover, satellite cells are a heterogenous population in adult tissue, with subpopulations that can be distinguished based on gene expression, cell-cycle progression, ability to self-renew, and bi-potential ability. Transplantation assays provide a powerful tool to better understand satellite cell function enabling the separation of functionally distinct satellite cell subpopulations. In this review, we focus on transplantation strategies to explore satellite cells' functional heterogeneity, approaches targeting the recipient tissue to improve transplantation efficiency, and common strategies to monitor the behaviour of the transplanted cells. Lastly, we discuss some recent approaches to overcome challenges to enhance the transplantation potential of muscle stem cells.
骨骼肌在其整个生命周期中都具有显著的再生能力,这一能力由其驻留的肌肉干细胞(也称为卫星细胞)介导。卫星细胞位于肌纤维周围和基膜下方,是肌肉再生不可或缺的细胞来源。将卫星细胞移植到再生肌肉中对肌肉修复有显著贡献,从而表明卫星细胞确实起着成体肌肉干细胞的作用。此外,卫星细胞在成体组织中是一个异质性群体,其亚群可根据基因表达、细胞周期进程、自我更新能力和双能性来区分。移植实验提供了一个强大的工具,有助于更好地理解卫星细胞的功能,能够分离功能不同的卫星细胞亚群。在这篇综述中,我们重点关注探索卫星细胞功能异质性的移植策略、针对受体组织以提高移植效率的方法,以及监测移植细胞行为的常用策略。最后,我们讨论一些最近为克服挑战以增强肌肉干细胞移植潜力的方法。