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首页> 外文期刊>American Journal of Physiology >Mapping the cytoskeletal prestress
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Mapping the cytoskeletal prestress

机译:绘制细胞骨架预应力

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Cell mechanical properties on a whole cell basis have been widely studied, whereas local intracellular variations have been less well characterized and are poorly understood. To fill this gap, here we provide detailed intracellular maps of regional cytoskeleton (CSK) stiffness, loss tangent, and rate of structural rearrangements, as well as their relationships to the underlying regional F-actin density and the local cytoskeletal prestress. In the human airway smooth muscle cell, we used micropatterning to minimize geometric variation. We measured the local cell stiffness and loss tangent with optical magnetic twisting cytometry and the local rate of CSK remodeling with spontaneous displacements of a CSK-bound bead. We also measured traction distributions with traction microscopy and cell geometry with atomic force microscopy. On the basis of these experimental observations, we used finite element methods to map for the first time the regional distribution of intracellular prestress. Compared with the cell center or edges, cell corners were systematically stiffer and more fluidlike and supported higher traction forces, and at the same time had slower remodeling dynamics. Local remodeling dynamics had a close inverse relationship with local cell stiffness. The principal finding, however, is that systematic regional variations of CSK stiffness correlated only poorly with regional F-actin density but strongly and linearly with the regional prestress. Taken together, these findings in the intact cell comprise the most comprehensive characterization to date of regional variations of cytoskeletal mechanical properties and their determinants.
机译:已经对全细胞基础上的细胞力学性质进行了广泛的研究,而局部细胞内变异的特征尚不清楚,人们对此知之甚少。为了填补这一空白,我们在此提供了区域性细胞骨架(CSK)刚度,损失切线和结构重排速率的详细细胞内图,以及它们与基础区域性F-肌动蛋白密度和局部细胞骨架预应力的关系。在人的气道平滑肌细胞中,我们使用了微模式以最小化几何变化。我们用光磁扭细胞术测量了局部细胞的刚度和损耗角正切,以及与CSK结合的珠子的自发位移引起的CSK重塑的局部速率。我们还用牵引显微镜测量了牵引力分布,并用原子力显微镜测量了细胞的几何形状。在这些实验观察的基础上,我们首次使用有限元方法绘制了细胞内预应力的区域分布图。与细胞中心或边缘相比,细胞角在系统上更硬,更像流体,并支持更高的牵引力,同时重塑动力学更慢。局部重塑动力学与局部细胞刚度有密切的反比关系。然而,主要发现是CSK刚度的系统性区域变化与区域F-肌动蛋白密度的相关性很弱,而与区域预应力的相关性却强而线性。综上所述,完整细胞中的这些发现包括迄今为止最全面的细胞骨架机械特性及其决定因素区域变化的特征。

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