生物
骨骼肌
细胞生物学
再生(生物学)
心肌细胞
干细胞
人口
卫星
免疫学
内分泌学
医学
环境卫生
工程类
航空航天工程
作者
Ramkumar Sambasivan,Roseline Yao,Adrien Kissenpfennig,Laetitia van Wittenberghe,Andràs Páldi,Barbara Gayraud-Morel,Hind Guénou,Bernard Malissen,Shahragim Tajbakhsh,Anne Galy
出处
期刊:Development
[The Company of Biologists]
日期:2011-08-09
卷期号:138 (17): 3647-3656
被引量:831
摘要
Distinct cell populations with regenerative capacity have been reported to contribute to myofibres after skeletal muscle injury, including non-satellite cells as well as myogenic satellite cells. However, the relative contribution of these distinct cell types to skeletal muscle repair and homeostasis and the identity of adult muscle stem cells remain unknown. We generated a model for the conditional depletion of satellite cells by expressing a human diphtheria toxin receptor under control of the murine Pax7 locus. Intramuscular injection of diphtheria toxin during muscle homeostasis, or combined with muscle injury caused by myotoxins or exercise, led to a marked loss of muscle tissue and failure to regenerate skeletal muscle. Moreover, the muscle tissue became infiltrated by inflammatory cells and adipocytes. This localised loss of satellite cells was not compensated for endogenously by other cell types, but muscle regeneration was rescued after transplantation of adult Pax7(+) satellite cells alone. These findings indicate that other cell types with regenerative potential depend on the presence of the satellite cell population, and these observations have important implications for myopathic conditions and stem cell-based therapeutic approaches.
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