Arora Reety, Rumman Mohammed, Venugopal Nisha, Gala Hardik, Dhawan Jyotsna
Institute for Stem Cell Biology and Regenerative Medicine, Bangalore, India.
National Centre for Biological Sciences, Bangalore, India.
Methods Mol Biol. 2017;1556:283-302. doi: 10.1007/978-1-4939-6771-1_15.
Growing evidence supports the view that in adult stem cells, the defining stem cell features of potency and self-renewal are associated with the quiescent state. Thus, uncovering the molecular logic of this reversibly arrested state underlies not only a fundamental understanding of adult tissue dynamics but also hopes for therapeutic regeneration and rejuvenation of damaged or aging tissue. A key question concerns how adult stem cells use quiescence to establish or reinforce the property of self-renewal. Since self-renewal is largely studied by assays that measure proliferation, the concept of self-renewal programs imposed during non-proliferating conditions is counterintuitive. However, there is increasing evidence generated by deconstructing the quiescent state that highlights how programs characteristic of this particular cell cycle exit may enhance stem cell capabilities, through both cell-intrinsic and extrinsic programs.Toward this end, culture models that recapitulate key aspects of stem cell quiescence are useful for molecular analysis to explore attributes and regulation of the quiescent state. In this chapter, we review the different methods used to generate homogeneous populations of quiescent muscle cells, largely by manipulating culture conditions that feed into core signaling programs that regulate the cell cycle. We also provide detailed protocols developed or refined in our lab over the past two decades.
越来越多的证据支持这样一种观点,即在成体干细胞中,决定干细胞特性的多能性和自我更新与静止状态相关。因此,揭示这种可逆性停滞状态的分子逻辑不仅是对成体组织动态学的基本理解的基础,也是受损或衰老组织治疗性再生和恢复活力的希望所在。一个关键问题是成体干细胞如何利用静止状态来建立或强化自我更新的特性。由于自我更新很大程度上是通过测量增殖的实验来研究的,因此在非增殖条件下施加自我更新程序的概念是违反直觉的。然而,通过解构静止状态产生的证据越来越多,这些证据突出了这种特定细胞周期退出的特征程序如何通过细胞内在和外在程序增强干细胞能力。为此,概括干细胞静止关键方面的培养模型对于分子分析探索静止状态的属性和调控是有用的。在本章中,我们回顾了用于产生静止肌肉细胞同质群体的不同方法,主要是通过操纵影响调控细胞周期的核心信号程序的培养条件。我们还提供了过去二十年来在我们实验室开发或完善的详细方案。