Chacón-Martínez Carlos Andrés, Klose Markus, Niemann Catherin, Glauche Ingmar, Wickström Sara A
Paul Gerson Unna Group "Skin Homeostasis and Ageing", Max Planck Institute for Biology of Ageing, Cologne, Germany.
Institute for Medical Informatics and Biometry, Carl Gustav Carus Faculty of Medicine, Technische Universität Dresden, Dresden, Germany.
EMBO J. 2017 Jan 17;36(2):151-164. doi: 10.15252/embj.201694902. Epub 2016 Dec 9.
Understanding how complex tissues are formed, maintained, and regenerated through local growth, differentiation, and remodeling requires knowledge on how single-cell behaviors are coordinated on the population level. The self-renewing hair follicle, maintained by a distinct stem cell population, represents an excellent paradigm to address this question. A major obstacle in mechanistic understanding of hair follicle stem cell (HFSC) regulation has been the lack of a culture system that recapitulates HFSC behavior while allowing their precise monitoring and manipulation. Here, we establish an in vitro culture system based on a 3D extracellular matrix environment and defined soluble factors, which for the first time allows expansion and long-term maintenance of murine multipotent HFSCs in the absence of heterologous cell types. Strikingly, this scheme promotes de novo generation of HFSCs from non-HFSCs and vice versa in a dynamic self-organizing process. This bidirectional interconversion of HFSCs and their progeny drives the system into a population equilibrium state. Our study uncovers regulatory dynamics by which phenotypic plasticity of cells drives population-level homeostasis within a niche, and provides a discovery tool for studies on adult stem cell fate.
要理解复杂组织如何通过局部生长、分化和重塑形成、维持和再生,需要了解单细胞行为如何在群体水平上进行协调。由独特干细胞群体维持的自我更新毛囊,是解决这个问题的一个绝佳范例。在对毛囊干细胞(HFSC)调控的机制理解方面,一个主要障碍是缺乏一种能够重现HFSC行为,同时又能对其进行精确监测和操作的培养系统。在这里,我们基于三维细胞外基质环境和特定的可溶性因子建立了一种体外培养系统,首次在没有异源细胞类型的情况下实现了小鼠多能HFSC的扩增和长期维持。引人注目的是,该方案在一个动态的自组织过程中促进了非HFSC向HFSC的从头生成,反之亦然。HFSC及其后代的这种双向相互转化将系统驱动到群体平衡状态。我们的研究揭示了细胞表型可塑性驱动小生境内群体水平稳态的调控动态,并为成体干细胞命运研究提供了一个发现工具。