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干细胞生物力学。

Stem cell mechanobiology.

机构信息

University of London, London E1 4NS, UK.

出版信息

J Cell Biochem. 2011 Jan;112(1):1-9. doi: 10.1002/jcb.22758.

Abstract

Stem cells are undifferentiated cells that are capable of proliferation, self-maintenance and differentiation towards specific cell phenotypes. These processes are controlled by a variety of cues including physicochemical factors associated with the specific mechanical environment in which the cells reside. The control of stem cell biology through mechanical factors remains poorly understood and is the focus of the developing field of mechanobiology. This review provides an insight into the current knowledge of the role of mechanical forces in the induction of differentiation of stem cells. While the details associated with individual studies are complex and typically associated with the stem cell type studied and model system adopted, certain key themes emerge. First, the differentiation process affects the mechanical properties of the cells and of specific subcellular components. Secondly, that stem cells are able to detect and respond to alterations in the stiffness of their surrounding microenvironment via induction of lineage-specific differentiation. Finally, the application of external mechanical forces to stem cells, transduced through a variety of mechanisms, can initiate and drive differentiation processes. The coalescence of these three key concepts permit the introduction of a new theory for the maintenance of stem cells and alternatively their differentiation via the concept of a stem cell 'mechano-niche', defined as a specific combination of cell mechanical properties, extracellular matrix stiffness and external mechanical cues conducive to the maintenance of the stem cell population.

摘要

干细胞是未分化的细胞,能够增殖、自我维持并分化为特定的细胞表型。这些过程受到多种信号的控制,包括与细胞所处的特定机械环境相关的物理化学因素。通过机械因素来控制干细胞生物学的机制仍知之甚少,这是正在发展的机械生物学领域的重点。本综述深入探讨了机械力在诱导干细胞分化中的作用的现有知识。虽然与个别研究相关的细节很复杂,并且通常与所研究的干细胞类型和采用的模型系统有关,但出现了某些关键主题。首先,分化过程会影响细胞和特定亚细胞成分的机械特性。其次,干细胞能够通过诱导谱系特异性分化来检测和响应其周围微环境硬度的变化。最后,通过各种机制将外部机械力传递给干细胞,可以启动并驱动分化过程。这三个关键概念的融合,为通过“干细胞机械微环境”的概念来维持干细胞或促使其分化提供了一种新的理论。“干细胞机械微环境”被定义为有利于维持干细胞群体的细胞机械特性、细胞外基质硬度和外部机械信号的特定组合。

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