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首页> 外文期刊>Acta Biotheoretica >Tensegrity Behaviour of Cortical and Cytosolic Cytoskeletal Components in Twisted Living Adherent Cells
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Tensegrity Behaviour of Cortical and Cytosolic Cytoskeletal Components in Twisted Living Adherent Cells

机译:皮质和胞浆细胞骨架成分在扭曲的活贴壁细胞中的张力行为

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摘要

The present study is an attempt to relate the multicomponent response of the cytoskeleton (CSK), evaluated in twisted living adherent cells, to the heterogeneity of the cytoskeletal structure - evaluated both experimentally by means of 3D reconstructions, and theoretically considering the predictions given by two tensegrity models composed of (four and six) compressive elements and (respectively 12 and 24) tensile elements. Using magnetic twisting cytometry in which beads are attached to integrin receptors linked to the actin CSK of living adherent epithelial cells, we specifically measured the elastic CSK response at quasi equilibrium state and partitioned this response in terms of cortical and cytosolic contributions with a two-component model (i.e., a series of two Voigt bodies). These two CSK components were found to be prestressed and exhibited a stress-hardening response which both characterize tensegrity behaviour with however significant differences: compared to the cytosolic component, the cortical cytoskeleton appears to be a faster responding component, being a less prestressed and easily deformable structure. The discrepancies in elastic behaviour between the cortical and cytosolic CSK components may be understood on the basis of prestress tensegrity model predictions, given that the length and number of constitutive actin elements are taken into account.
机译:本研究试图将在扭曲的活贴壁细胞中评估的细胞骨架(CSK)的多组分反应与细胞骨架结构的异质性联系起来-均通过3D重建进行了实验评估,并在理论上考虑了两个预测张力模型由(四个和六个)压缩元素和(分别为12和24个)拉伸元素组成。使用磁扭流式细胞术,其中珠子附着到与活粘附上皮细胞的肌动蛋白CSK相连的整联蛋白受体上,我们专门测量了准平衡状态下的弹性CSK反应,并根据皮层和细胞质的贡献将反应分为两部分模型(即两个Voigt实体的序列)。发现这两个CSK组件已预应力并表现出应力硬化反应,这两个特征均表现为紧张状态,但有显着差异:与胞浆组分相比,皮质细胞骨架似乎是响应速度更快的组分,预应力较小且不易变形结构体。考虑到组成性肌动蛋白元件的长度和数量,可以基于预应力张力模型预测来理解皮质和胞质CSK组件之间的弹性行为差异。

著录项

  • 来源
    《Acta Biotheoretica》 |2002年第4期|331-356|共26页
  • 作者单位

    INSERM UMR 492 Facultés de Médecine et des Sciences et Technologies Université Paris XIICNRS UPR 7057-LBHP Université ParisLBBC-EPFL PSE-A Ecublens;

    INSERM UMR 492 Facultés de Médecine et des Sciences et Technologies Université Paris XIICNRS UPR 7052-B2OA Faculté des Sciences et Technologies Université Paris XII;

    INSERM UMR 492 Facultés de Médecine et des Sciences et Technologies Université Paris XII;

    INSERM UMR 492 Facultés de Médecine et des Sciences et Technologies Université Paris XII;

    CNRS UPR 7057-LBHP Université Paris;

    CNRS UPR 7052-B2OA Faculté des Sciences et Technologies Université Paris XIICNRS UPR 7051- LMA-Marseille;

    INSERM UMR 492 Facultés de Médecine et des Sciences et Technologies Université Paris XII;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    structural model; cytoskeleton; actin network; magnetic twisting cytometry;

    机译:结构模型;细胞骨架;肌动蛋白网络;磁扭细胞术;

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