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Rheological properties of the Eukaryotic cell cytoskeleton

机译:真核细胞骨架的流变特性

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摘要

The mechanical properties of cells are dominated by the cytoskeleton, a crosslinked network of protein filaments. Unlike synthetic polymer networks, the cell cytoskeleton is a highly dynamical system due to the on-off kinetics of the crosslinking proteins and the polymerization–depolymerization cycles of the filaments themselves. More remarkably, some of the crosslinkers are motor proteins, which are capable of generating forces and directional motion between the filaments by consuming chemical energy. Thus, the cell cytoskeleton is a highly complex and active polymer gel, which is responsible for the unique cell mechanical properties, which make it crawl, divide and assemble to higher functional units. This complexity of the cytoskeleton demands the development of novel experimental techniques as well as theoretical ideas. This review will deal with the recent technological, experimental and theoretical developments in the field of cell mechanics, and current trends. It will be shown that despite the cytoskeletal complexity, cells show some very general rheological properties.
机译:细胞的机械特性主要由细胞骨架(蛋白质丝的交联网络)决定。与合成聚合物网络不同,由于交联蛋白的开关动力学和长丝本身的聚合-解聚循环,细胞骨架是一个高度动态的系统。更显着地,一些交联剂是运动蛋白,其能够通过消耗化学能在细丝之间产生力和方向运动。因此,细胞的细胞骨架是高度复杂且活性高的聚合物凝胶,其负责独特的细胞机械性能,从而使其爬行,分裂和组装成更高的功能单元。细胞骨架的这种复杂性要求开发新的实验技术以及理论思想。这篇评论将涉及细胞力学领域的最新技术,实验和理论发展以及当前趋势。将显示尽管细胞骨架复杂,细胞仍显示出一些非常普遍的流变性质。

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