Biferali Beatrice, Proietti Daisy, Mozzetta Chiara, Madaro Luca
Department of Biology and Biotechnology "C. Darwin," Sapienza University of Rome, Rome, Italy.
Institute of Molecular Biology and Pathology (IBPM), CNR National Research Council of Italy, c/o Department of Biology and Biotechnology "C. Darwin," Sapienza University of Rome, Rome, Italy.
Front Physiol. 2019 Aug 21;10:1074. doi: 10.3389/fphys.2019.01074. eCollection 2019.
Skeletal muscle is composed of a large and heterogeneous assortment of cell populations that interact with each other to maintain muscle homeostasis and orchestrate regeneration. Although satellite cells (SCs) - which are muscle stem cells - are the protagonists of functional muscle repair following damage, several other cells such as inflammatory, vascular, and mesenchymal cells coordinate muscle regeneration in a finely tuned process. Fibro-adipogenic progenitors (FAPs) are a muscle interstitial mesenchymal cell population, which supports SCs differentiation during tissue regeneration. During the first days following muscle injury FAPs undergo massive expansion, which is followed by their macrophage-mediated clearance and the re-establishment of their steady-state pool. It is during this critical time window that FAPs, together with the other cellular components of the muscle stem cell niche, establish a dynamic network of interactions that culminate in muscle repair. A number of different molecules have been recently identified as important mediators of this cross-talk, and its alteration has been associated with different muscle pathologies. In this review, we will focus on the soluble factors that regulate FAPs activity, highlighting their roles in orchestrating the inter-cellular interactions between FAPs and the other cell populations that participate in muscle regeneration.
骨骼肌由大量不同种类的细胞群体组成,这些细胞群体相互作用以维持肌肉内环境稳定并协调再生过程。尽管卫星细胞(SCs)——即肌肉干细胞——是损伤后功能性肌肉修复的主角,但其他几种细胞,如炎性细胞、血管细胞和间充质细胞,在一个精细调节的过程中协调肌肉再生。成纤维脂肪生成祖细胞(FAPs)是一种肌肉间质间充质细胞群体,在组织再生过程中支持卫星细胞的分化。在肌肉损伤后的最初几天,FAPs会大量增殖,随后通过巨噬细胞介导的清除作用使其恢复到稳态水平。正是在这个关键的时间窗口内,FAPs与肌肉干细胞微环境中的其他细胞成分一起,建立了一个动态的相互作用网络,最终实现肌肉修复。最近,许多不同的分子被确定为这种相互作用的重要介质,其改变与不同的肌肉疾病有关。在这篇综述中,我们将重点关注调节FAPs活性的可溶性因子,强调它们在协调FAPs与参与肌肉再生的其他细胞群体之间的细胞间相互作用中的作用。