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首页> 外文期刊>Cytoskeleton >Nonlinear displacement of ventral stress fibers under externally applied lateral force by an atomic force microscope.
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Nonlinear displacement of ventral stress fibers under externally applied lateral force by an atomic force microscope.

机译:原子力显微镜在侧向力作用下腹侧应力纤维的非线性位移。

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摘要

Actin-based stress fibers (SFs) have fundamental importance in the maintenance of mechanical stability of living cells. Several in vitro measurements of their elastic properties have therefore been made, but direct mechanical manipulation of individual SFs in vivo for the determination of their mechanical properties has not been attempted. No less important is a search for the possible formation of a global mechanical network involving SFs and other intracellular filamentous components. In this article, we present an application of atomic force microscopy to probe into a live cell and laterally push selected SFs in a fibroblast cells (VNOf 06 fibroblast-like cells derived from rat vomeronasal tissue) transfected with a green fluorescent protein-beta-actin gene. The transfected cells were transferred to a serum-depleted medium before the atomic force microscope manipulation. The lateral displacement of the SFs under a point loading condition recorded on a fluorescence microscope revealed both linear and nonlinear displacements against the contour distance from the point of force loading. The nonlinear displacements of the SFs were attributed to their association with a cortical actomyosin-cell membrane complex that effectively pulled them back as a 2D thin plate.
机译:基于肌动蛋白的应力纤维(SFs)在维持活细胞的机械稳定性方面具有根本的重要性。因此,已经对其弹性性能进行了几种体外测量,但是尚未尝试对体内的各个SF进行直接机械操作以确定其机械性能。同样重要的是,寻找可能形成涉及SF和其他细胞内丝状成分的全局机械网络的重要性。在本文中,我们介绍了原子力显微镜的应用,以探查活细胞并横向推入转染有绿色荧光蛋白-β-肌动蛋白的成纤维细胞(从大鼠腹腔鼻窦组织获得的VNOf 06成纤维样细胞)中的选定SF基因。在原子力显微镜操作之前,将转染的细胞转移至贫血清培养基中。在荧光显微镜上记录的点加载条件下,SFs的侧向位移揭示了相对于从力加载点开始的轮廓距离的线性和非线性位移。 SF的非线性位移归因于它们与皮质放线菌素-细胞膜复合物的结合,该复合物有效地将它们拉回了二维薄板中。

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