Donati Chiara, Cencetti Francesca, Bruni Paola
Dipartimento di Scienze Biochimiche, Università di Firenze, Firenze, Italy.
Biochim Biophys Acta. 2013 Jan;1831(1):176-84. doi: 10.1016/j.bbalip.2012.06.013. Epub 2012 Aug 2.
Lysophospholipids are bioactive molecules that are implicated in the control of fundamental biological processes such as proliferation, differentiation, survival and motility in different cell types. Here we review the role of sphingosine 1-phosphate (S1P) and lysophosphatidic acid (LPA) in the regulation of skeletal muscle biology. Indeed, a wealth of experimental data indicate that these molecules are crucial players in the skeletal muscle regeneration process, acting by controllers of activation, proliferation and differentiation not only of muscle-resident satellite cells but also of mesenchymal progenitors that originate outside the skeletal muscle. Moreover, S1P and LPA are clearly involved in the regulation of skeletal muscle metabolism, muscle adaptation to different physiological needs and resistance to muscle fatigue. Notably, studies accomplished so far, have highlighted the complexity of S1P and LPA signaling in skeletal muscle cells that appears to be further complicated by their close dependence on functional cross-talks with growth factors, hormones and cytokines. Our increasing understanding of bioactive lipid signaling can individuate novel molecular targets aimed at enhancing skeletal muscle regeneration and reducing the fibrotic process that impairs full functional recovery of the tissue during aging, after a trauma or skeletal muscle diseases. This article is part of a Special Issue entitled Advances in Lysophospholipid Research.
溶血磷脂是一类生物活性分子,参与调控不同细胞类型的增殖、分化、存活和运动等基本生物学过程。在此,我们综述了1-磷酸鞘氨醇(S1P)和溶血磷脂酸(LPA)在骨骼肌生物学调控中的作用。的确,大量实验数据表明,这些分子是骨骼肌再生过程中的关键参与者,不仅作为肌肉驻留卫星细胞,而且作为起源于骨骼肌外的间充质祖细胞的激活、增殖和分化的调控因子发挥作用。此外,S1P和LPA显然参与骨骼肌代谢的调控、肌肉对不同生理需求的适应以及对肌肉疲劳的抵抗。值得注意的是,迄今为止完成的研究突出了骨骼肌细胞中S1P和LPA信号传导的复杂性,它们与生长因子、激素和细胞因子的功能性相互作用密切相关,这似乎使情况更加复杂。我们对生物活性脂质信号传导的日益了解能够确定新的分子靶点,旨在增强骨骼肌再生并减少在衰老、创伤后或骨骼肌疾病期间损害组织完全功能恢复的纤维化过程。本文是名为“溶血磷脂研究进展”的特刊的一部分。