Department of Stomatology Medical Center, The Affiliated Hospital of Qingdao University, Qingdao University, Qingdao, China.
Department of Stomatology, Medical School of Qingdao University, Qingdao, China.
Stem Cells Dev. 2020 Mar 15;29(6):336-352. doi: 10.1089/scd.2019.0286. Epub 2020 Feb 19.
Mechanically stretched skeletal muscle undergoes dramatic shifts in structure, mass, and function. In vitro tensile strain models have demonstrated that myogenic progenitor cells, including satellite cells and myoblasts, are highly mechanosensitive cells, and respond to mechanical strain in a wide variety of aspects. However, the experimental results from different researchers and laboratories are not always in support of each other. Moreover, some specific molecules or signaling pathways were reported to play distinct roles in stretched myogenic cells, according to the statements of different studies. The purpose of this review is to integrate the researches conducting in vitro culture of satellite cells or myoblasts and exploring their mechanoresponses using in vitro stretching apparatus. These responses will be categorized into several groups, such as activation, proliferation, myogenic differentiation, cellular damage or apoptosis, properties of plasma membrane, transdifferentiation, reorientation, etc. In addition, detailed experimental designs like culturing conditions and straining regimens will be displayed and compared, to interpret some contradictory statements in different studies. Furthermore, the currently known interconnections among some mechanosensitive pathways will be pictured to give a better understanding about the complex regulations of myogenic cell responses to mechanical stretch. Hopefully, by summarizing the published studies about mechanoresponses of myogenic progenitor cells, future directions, and perspectives would be made clearer to researchers in this field.
机械拉伸骨骼肌会发生显著的结构、质量和功能变化。体外拉伸应变模型表明,成肌祖细胞,包括卫星细胞和成肌细胞,是高度机械敏感的细胞,可在多种方面对机械应变做出响应。然而,不同研究人员和实验室的实验结果并不总是相互支持。此外,一些特定的分子或信号通路根据不同研究的说法,在拉伸的成肌细胞中发挥着不同的作用。本综述的目的是整合体外培养卫星细胞或成肌细胞并使用体外拉伸装置探索其力学响应的研究。这些反应将分为几个组,如激活、增殖、成肌分化、细胞损伤或凋亡、质膜特性、转分化、重定向等。此外,还将展示和比较详细的实验设计,如培养条件和应变方案,以解释不同研究中的一些矛盾说法。此外,目前已知的一些机械敏感途径之间的联系将被描绘出来,以便更好地理解成肌细胞对机械拉伸的力学响应的复杂调节。希望通过总结关于成肌祖细胞力学响应的已发表研究,为该领域的研究人员指明未来的方向和前景。