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Soft science: living cells, soft glasses and mechanics of the cytoskeleton

机译:软科学:活细胞,软玻璃和细胞骨架力学

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We report a scaling law that governs both the elastic and frictional properties of a wide variety of living cell types, over a wide range of time scales and under a variety of biological interventions. This scaling identifies these cells as soft glassy materials existing close to a glass transition, and implies that cytoskeletal proteins may regulate cell mechanical properties mainly by modulating the effective noise temperature of the matrix. The practical implications are that the effective noise temperature is an easily quantified measure of the ability of the cytoskeleton to deform, flow and reorganize.
机译:我们报告了一种定标律,该定律控制着广泛的时间尺度和各种生物学干预下,各种活细胞类型的弹性和摩擦特性。这种缩放将这些细胞识别为存在于玻璃化转变附近的柔软玻璃状材料,并暗示细胞骨架蛋白可能主要通过调节基质的有效噪声温度来调节细胞的机械性能。实际含义是有效噪声温度是细胞骨架变形,流动和重组能力的易于量化的度量。

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