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Measuring mechanical properties in cells: three easy methods for biologists

机译:测量细胞中的机械性能:生物学家的三种易于方法

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The mechanism by which cells sense stresses and transmit them throughout the cytoplasm and the cytoskeleton (CSK) and by which these mechanical signals are converted into biochemical signaling responses is not clear. Specifically, there is little direct experimental evidence on how intracellular CSK structural elements in living cells deform and transmit stresses in response to external mechanical forces. Existing theories have invoked various biophysical and biochemical mechanisms to explain how cells spread, deform, divide, move, and change shape in response to mechanical inputs, but rigorous tests in cells are lacking. The lack of data and understanding is preventing the identification of mechanisms and sites of mechano-regulation in cells. Here, we introduce and describe three unique and easy methods for biologists to determine mechanical properties and signaling events in cells.
机译:细胞感应应力和在整个细胞质和细胞骨架(CSK)中传递它们的机制,并且将这些机械信号转化为生化信号响应的细胞骨架(CSK)并不清楚。 具体而言,几乎没有直接的实验证据,有关活细胞中的细胞内CSK结构元素如何变形,并且响应于外部机械力传递应力。 现有的理论已经调用了各种生物物理和生化机制,以解释响应机械输入的细胞传播,变形,划分,移动和改变形状,但缺乏细胞中的严格测试。 缺乏数据和理解是防止识别细胞中机制的机制和站点。 在这里,我们介绍并描述了用于生物学家的三种独特而简单的方法,以确定细胞中的机械性能和信号传导事件。

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