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首页> 外文期刊>Journal of Biomechanics >Tensegrity architecture explains linear stiffening and predicts softening of living cells
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Tensegrity architecture explains linear stiffening and predicts softening of living cells

机译:张力架构解释线性硬化并预测活细胞的软化

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摘要

The problem of theoretical explanation of the experimentally observed linear stiffening of living cells is addressed. This explanation is based on Ingber's assumption that the cell cytoskeleton, which enjoys tensegrity architecture with compressed microtubules that provide tension to the microfilaments, affects the mechanical behavior of the living cell. Moreover, it is shown that the consideration of the extreme flexibility of microtubules and the unilateral response of microfilaments is crucial for the understanding of the living cell overall behavior. Formal nonlinear structural analysis of the cell cytoskeleton under external mechanical loads is performed. For this purpose, a general computer model for tensegrity assemblies with unilateral microfilaments and buckled microtubules is developed and applied to the theoretical analysis of the mechanical response of 2D and 3D examples of tensegrity cells mimicking the behavior of real living cells. Results of the computer simulations explain the experimentally observed cell stiffening. Moreover, the theoretical results predict the possible existence of a transient softening behavior of cells, a phenomenon, which has not been observed in experiments yet. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 17]
机译:解决了实验观察到的活细胞线性增强的理论解释问题。该解释基于Ingber的假设,即具有张力结构,压缩微管为微丝提供张力的张力的细胞骨架会影响活细胞的机械行为。此外,已经表明,考虑微管的极端柔韧性和微丝的单方面反应对于了解活细胞的整体行为至关重要。在外部机械载荷下进行细胞骨架的形式非线性结构分析。为此,开发了具有单边微丝和弯曲微管的张力组件的通用计算机模型,并将其应用于模拟真实活细胞行为的2D和3D张力细胞实例的机械响应的理论分析。计算机模拟的结果解释了实验观察到的细胞硬化。而且,理论结果预测了细胞瞬时软化行为的可能存在,这种现象尚未在实验中观察到。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:17]

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