Department of Biochemistry and Molecular Biology, Mayo Clinic, Rochester, MN, USA.
Adv Exp Med Biol. 2019;1169:179-193. doi: 10.1007/978-3-030-24108-7_9.
Tissue-specific stem cells contribute to adult tissue maintenance, repair, and regeneration. In skeletal muscle, many different mononuclear cell types are capable of giving rise to differentiated muscle. Of these tissue stem-like cells, satellite cells (SCs) are the most studied muscle stem cell population and are widely considered the main cellular source driving muscle repair and regeneration in adult tissue. Within the satellite cell pool, many distinct subpopulations exist, each exhibiting differential abilities to exit quiescence, expand, differentiate, and self-renew. In this chapter, we discuss the different stem cell types that can give rise to skeletal muscle tissue and then focus on satellite cell heterogeneity during the process of myogenesis/muscle regeneration. Finally, we highlight emerging opportunities to better characterize muscle stem cell heterogeneity, which will ultimately deepen our appreciation of stem cells in muscle development, repair/regeneration, aging, and disease.
组织特异性干细胞有助于成人组织的维持、修复和再生。在骨骼肌中,许多不同的单核细胞类型能够产生分化的肌肉。在这些组织干细胞样细胞中,卫星细胞(SCs)是研究最多的肌肉干细胞群,被广泛认为是驱动成年组织中肌肉修复和再生的主要细胞来源。在卫星细胞池中,存在许多不同的亚群,每个亚群都表现出不同的静止退出、扩增、分化和自我更新的能力。在本章中,我们将讨论可以产生骨骼肌组织的不同干细胞类型,然后重点讨论在肌发生/肌肉再生过程中卫星细胞的异质性。最后,我们强调了更好地表征肌肉干细胞异质性的新机会,这将最终加深我们对肌肉发育、修复/再生、衰老和疾病中干细胞的理解。