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The Effect of Noisy Flow on Endothelial Cell Mechanotransduction: A Computational Study

机译:噪声流对内皮细胞机械转导的影响:计算研究

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摘要

Flow in the arterial system is mostly laminar, but turbulence occurs in vivo under both normal and pathological conditions. Turbulent and laminar flow elicit significantly different responses in endothelial cells (ECs), but the mechanisms allowing ECs to distinguish between these different flow regimes remain unknown. The authors present a computational model that describes the effect of turbulence on mechanical force transmission within ECs. Because turbulent flow is inherently “noisy” with random fluctuations in pressure and velocity, our model focuses on the effect of signal noise (a stochastically changing force) on the deformation of intracellular transduction sites including the nucleus, cell–cell adhesion proteins (CCAPs), and focal adhesion sites (FAS). The authors represent these components of the mechanical signaling pathway as linear viscoelastic structures (Kelvin bodies) connected to the cell surface via cytoskeletal elements. The authors demonstrate that FAS are more sensitive to signal noise than the nucleus or CCAP. The relative sensitivity of these various structures to noise is affected by the nature of the cytoskeletal connections within the cell. Finally, changes in the compliance of the nucleus dramatically affect nuclear sensitivity to noise, suggesting that pathologies that alter nuclear mechanical properties will be associated with abnormal EC responsiveness to turbulent flow.
机译:动脉系统中的血流大部分为层流,但在正常和病理情况下,体内均会发生湍流。湍流和层流在内皮细胞(EC)中引起明显不同的响应,但是使EC区分这些不同流态的机制仍然未知。作者提出了一种计算模型,该模型描述了湍流对EC内部机械力传递的影响。由于湍流本来就是“噪声”,压力和速度随机波动,因此我们的模型着重于信号噪声(随机变化的力)对包括核,细胞间粘附蛋白(CCAPs)在内的细胞内转导位点变形的影响。以及粘着部位(FAS)。作者将机械信号传递途径的这些成分表示为通过细胞骨架元件连接到细胞表面的线性粘弹性结构(开尔文体)。作者证明,FAS比核或CCAP对信号噪声更敏感。这些不同结构对噪声的相对敏感性受细胞内细胞骨架连接性质的影响。最后,原子核顺应性的变化会极大地影响核对噪声的敏感性,这表明改变核机械特性的病理将与异常EC对湍流的响应有关。

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