Leibniz-Institute on Aging-Fritz-Lipmann-Institute, Jena, Germany.
Vitam Horm. 2021;116:295-311. doi: 10.1016/bs.vh.2021.02.012. Epub 2021 Mar 9.
Regeneration of skeletal muscle is a finely tuned process which is depending on muscle stem cells, a population of stem cells in skeletal muscle which is also termed satellite cells. Muscle stem cells are a prerequisite for regeneration of skeletal muscle. Of note, the muscle stem cell population is heterogeneous and subpopulations can be identified depending on gene expression or phenotypic traits. However, all muscle stem cells express the transcription factor Pax7 and their functionality is tightly controlled by intrinsic signaling pathways and extrinsic signals. The latter ones include signals form the stem cell niche as well as circulating factors such as growth factors and hormones. Among them are Wnt proteins, growth factors like IGF-1 or FGF-2 and hormones such as thyroid hormones and the anti-aging hormone Klotho. A highly orchestrated interplay between those factors and muscle stem cells is important for their full functionality and ultimately regeneration of skeletal muscle as outlined here.
骨骼肌的再生是一个精细调节的过程,依赖于肌肉干细胞,即骨骼肌中的干细胞群体,也被称为卫星细胞。肌肉干细胞是骨骼肌再生的前提。值得注意的是,肌肉干细胞群体是异质的,可以根据基因表达或表型特征来识别亚群。然而,所有的肌肉干细胞都表达转录因子 Pax7,其功能受到内在信号通路和外在信号的严格控制。后者包括来自干细胞龛的信号以及循环因子,如生长因子和激素。其中包括 Wnt 蛋白、IGF-1 或 FGF-2 等生长因子以及甲状腺激素和抗衰老激素 Klotho 等激素。这些因素与肌肉干细胞之间的高度协调相互作用对于它们的完全功能和最终的骨骼肌再生非常重要,如本文所述。