CSIR-Centre for Cellular and Molecular Biology, Hyderabad 500 007, India.
J Biosci. 2024;49.
Adult muscle tissue largely comprised of differentiated myofibers also harbors quiescent muscle-resident stem cells (MuSCs) that are responsible for its maintenance, repair and regeneration. Emerging evidence suggests that quiescent MuSCs exhibit a specific metabolic state, which is regulated during physiological and pathological alterations. However, a detailed understanding of the metabolic state of quiescent MuSCs and its alteration during activation and repair is lacking. Direct profiling of MuSCs is challenging because the cells are rare and dispersed, while isolation and enrichment leads to their activation and loss of quiescence. In this study, we employed 1H-nuclear magnetic resonance (NMR) spectroscopy to profile metabolites in an established culture model of quiescent MuSC-derived myoblasts and compared with activated, proliferative and differentiated muscle cells to determine the state-specific metabolome. We report that the proliferating and differentiated cells are highly enriched in metabolites involved in energy generation, the quiescent state is enriched in metabolites related to phospholipid catabolism (glycerophosphocholine and choline) and depleted for phosphocholine which is enriched in proliferating cells. We propose that the ratio of these metabolites may be useful as a biomarker of MuSC quiescence.
成人肌肉组织主要由分化的肌纤维组成,还含有静止的肌肉驻留干细胞(MuSCs),这些细胞负责肌肉的维持、修复和再生。新出现的证据表明,静止的 MuSCs 表现出一种特定的代谢状态,这种状态在生理和病理改变时受到调节。然而,静止的 MuSCs 的代谢状态及其在激活和修复过程中的改变的详细理解还很缺乏。直接对 MuSCs 进行分析具有挑战性,因为这些细胞数量稀少且分散,而分离和富集则会导致其激活和失去静止状态。在这项研究中,我们采用 1H 核磁共振(NMR)光谱技术对静止的 MuSC 衍生的成肌细胞的既定培养模型中的代谢物进行了分析,并与激活的、增殖的和分化的肌肉细胞进行了比较,以确定特定状态的代谢组。我们报告说,增殖和分化的细胞富含与能量生成有关的代谢物,而静止状态富含与磷脂分解代谢(甘油磷酸胆碱和胆碱)有关的代谢物,并且磷酰胆碱(phosphocholine)减少,而磷酰胆碱在增殖细胞中富集。我们提出,这些代谢物的比值可以作为 MuSC 静止的生物标志物。