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Single and collective cell migration: the mechanics of adhesions

机译:单细胞和集体细胞迁移:粘附机制

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摘要

Chemical and physical properties of the environment control cell proliferation, differentiation, or apoptosis in the long term. However, to be able to move and migrate through a complex three-dimensional environment, cells must quickly adapt in the short term to the physical properties of their surroundings. Interactions with the extracellular matrix (ECM) occur through focal adhesions or hemidesmosomes via the engagement of integrins with fibrillar ECM proteins. Cells also interact with their neighbors, and this involves various types of intercellular adhesive structures such as tight junctions, cadherin-based adherens junctions, and desmosomes. Mechanobiology studies have shown that cell–ECM and cell–cell adhesions participate in mechanosensing to transduce mechanical cues into biochemical signals and conversely are responsible for the transmission of intracellular forces to the extracellular environment. As they migrate, cells use these adhesive structures to probe their surroundings, adapt their mechanical properties, and exert the appropriate forces required for their movements. The focus of this review is to give an overview of recent developments showing the bidirectional relationship between the physical properties of the environment and the cell mechanical responses during single and collective cell migration.
机译:环境的化学和物理性质可以长期控制细胞的增殖,分化或凋亡。但是,为了能够在复杂的三维环境中移动和迁移,细胞必须在短期内快速适应周围环境的物理特性。与细胞外基质(ECM)的相互作用是通过整合素与原纤维ECM蛋白的结合而通过粘着斑或半染色体发生的。细胞还与其邻居相互作用,这涉及各种类型的细胞间粘附结构,例如紧密连接,基于钙粘着蛋白的粘附连接和桥粒。力学生物学研究表明,细胞-ECM和细胞-细胞粘附参与机械传感,将机械线索转化为生化信号,反过来负责将细胞内力传递至细胞外环境。当细胞迁移时,细胞使用这些粘合结构探测其周围环境,调整其机械性能并施加其运动所需的适当力。这篇综述的重点是概述最近的发展,这些发展显示了环境的物理特性与单个和集体细胞迁移过程中细胞机械反应之间的双向关系。

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