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首页> 外文期刊>Annual review of biomedical engineering. >BIOCHEMISTRY AND BIOMECHANICS OF CELL MOTILITY.
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BIOCHEMISTRY AND BIOMECHANICS OF CELL MOTILITY.

机译:细胞运动的生物化学和生物力学。

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摘要

Cell motility is an essential cellular process for a variety of biological events. The process of cell migration requires the integration and coordination of complex biochemical and biomechanical signals. The protrusion force at the leading edge of a cell is generated by the cytoskeleton, and this force generation is controlled by multiple signaling cascades. The formation of new adhesions at the front and the release of adhesions at the rear involve the outside-in and inside-out signaling mediated by integrins and other adhesion receptors. The traction force generated by the cell on the extracellular matrix (ECM) regulates cell-ECM adhesions, and the counter force exerted by ECM on the cell drives the migration. The polarity of cell migration can be amplified and maintained by the feedback loop between the cytoskeleton and cell-ECM adhesions. Cell migration in three-dimensional ECM has characteristics distinct from that on two-dimensional ECM. The migration of cells is initiated and modulated by external chemical and mechanical factors, such as chemoattractants and the mechanical forces acting on the cells and ECM, as well as the surface density, distribution, topography, and rigidity of the ECM.
机译:细胞运动性是各种生物学事件必不可少的细胞过程。细胞迁移的过程需要整合和协调复杂的生物化学和生物力学信号。在细胞前缘的突出力是由细胞骨架产生的,并且该产生力是由多个信号级联控制的。在前部形成新的粘连和在后部释放粘连涉及由整联蛋白和其他粘连受体介导的由内而外的信号传导。细胞在细胞外基质(ECM)上产生的牵引力调节细胞与ECM的粘附,而ECM在细胞上施加的反作用力则驱动迁移。细胞迁移的极性可以通过细胞骨架和细胞ECM黏附之间的反馈回路来放大和维持。三维ECM中的细胞迁移具有不同于二维ECM的特征。细胞的迁移是由外部化学和机械因素(例如趋化因子和作用于细胞和ECM的机械力)以及ECM的表面密度,分布,形貌和刚度引发和调节的。

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