Feeling the force: Multiscale force sensing and transduction at the cell-cell interface.

Feeling the force: Multiscale force sensing and transduction at the cell-cell interface.
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感受力:细胞与细胞界面的多尺度力传感和传导。

DOI:
10.1016/j.semcdb.2021.06.006
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发表时间:
2021
影响因子:
7.3
通讯作者:
Inman A
Inman A
中科院分区:
生物学2区
文献类型:
--
作者:
Inman A

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所有活细胞的一个普遍原则是感知和响应机械刺激的能力,这对许多生物过程至关重要。最近的努力已经确定了关键的机械敏感分子和反应途径,在发育和组织稳态过程中参与机械转导。组织范围内的力传递和局部力感测需要时空协调,以精确调节发育过程中的基本过程,如组织形态发生、图案形成、细胞迁移和器官发生。了解细胞如何识别和解释外力,并在细胞和组织水平上整合特定的反应仍然是一个重大挑战。在这篇综述中,我们认为重要的细胞和物理因素在控制细胞-细胞机械转导,并讨论其意义的细胞和发育过程。我们进一步强调了已知对外力作出反应的机械敏感大分子,并提出了如何将力反应整合到细胞和发育程序中的例子。
A universal principle of all living cells is the ability to sense and respond to mechanical stimuli which is essential for many biological processes. Recent efforts have identified critical mechanosensitive molecules and response pathways involved in mechanotransduction during development and tissue homeostasis. Tissue-wide force transmission and local force sensing need to be spatiotemporally coordinated to precisely regulate essential processes during development such as tissue morphogenesis, patterning, cell migration and organogenesis. Understanding how cells identify and interpret extrinsic forces and integrate a specific response on cell and tissue level remains a major challenge. In this review we consider important cellular and physical factors in control of cell-cell mechanotransduction and discuss their significance for cell and developmental processes. We further highlight mechanosensitive macromolecules that are known to respond to external forces and present examples of how force responses can be integrated into cell and developmental programs.
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