Laboratory of Translational Cardiomyology, Department of Development and Regeneration, Stem Cell Research Institute, KU Leuven, 3000 Leuven, Belgium; Bayer AG, Research & Development, Pharmaceuticals, 13353 Berlin, Germany.
Laboratory of Translational Cardiomyology, Department of Development and Regeneration, Stem Cell Research Institute, KU Leuven, 3000 Leuven, Belgium.
Cell Rep. 2020 May 5;31(5):107597. doi: 10.1016/j.celrep.2020.107597.
Fibrosis and fat replacement in skeletal muscle are major complications that lead to a loss of mobility in chronic muscle disorders, such as muscular dystrophy. However, the in vivo properties of adipogenic stem and precursor cells remain unclear, mainly due to the high cell heterogeneity in skeletal muscles. Here, we use single-cell RNA sequencing to decomplexify interstitial cell populations in healthy and dystrophic skeletal muscles. We identify an interstitial CD142-positive cell population in mice and humans that is responsible for the inhibition of adipogenesis through GDF10 secretion. Furthermore, we show that the interstitial cell composition is completely altered in muscular dystrophy, with a near absence of CD142-positive cells. The identification of these adipo-regulatory cells in the skeletal muscle aids our understanding of the aberrant fat deposition in muscular dystrophy, paving the way for treatments that could counteract degeneration in patients with muscular dystrophy.
骨骼肌的纤维化和脂肪替代是导致慢性肌肉疾病(如肌肉营养不良)丧失运动能力的主要并发症。然而,由于骨骼肌中细胞异质性高,脂肪生成干细胞和前体细胞的体内特性仍不清楚。在这里,我们使用单细胞 RNA 测序来简化健康和萎缩性骨骼肌中间质细胞群体的复杂性。我们在小鼠和人类中鉴定出一种间质 CD142 阳性细胞群,它通过 GDF10 分泌抑制脂肪生成。此外,我们表明,肌肉营养不良症中的间质细胞组成完全改变,CD142 阳性细胞几乎不存在。在骨骼肌中鉴定出这些脂肪调节细胞有助于我们了解肌肉营养不良症中异常脂肪沉积的原因,为治疗肌肉营养不良症患者的退行性变铺平了道路。