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细胞松弛素D和拉特罗毒素B对细胞力学性质的影响。

Effects of cytochalasin D and latrunculin B on mechanical properties of cells.

作者信息

Wakatsuki T, Schwab B, Thompson N C, Elson E L

机构信息

Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

J Cell Sci. 2001 Mar;114(Pt 5):1025-36. doi: 10.1242/jcs.114.5.1025.

Abstract

Actin microfilaments transmit traction and contraction forces generated within a cell to the extracellular matrix during embryonic development, wound healing and cell motility, and to maintain tissue structure and tone. Therefore, the state of the actin cytoskeleton strongly influences the mechanical properties of cells and tissues. Cytochalasin D and Latrunculin are commonly used reagents that, by different mechanisms, alter the state of actin polymerization or the organization of actin filaments. We have investigated the effect of a wide range of Cytochalasin D and Latrunculin B concentrations (from 40 pM to 10 microM) on the mechanical properties of the cells within fibroblast populated collagen matrices. Contractile force and dynamic stiffness were measured by uniaxial stress-strain testing. The range of effective concentrations of Cytochalasin D (200 pM-2 microM) was broader than that of Latrunculin B (20 nM-200 nM). Activating the cells by serum did not change the effective range of Cytochalasin D concentrations but shifted that of Latrunculin B upward by tenfold. Simple mathematical binding models based on the presumed mechanisms of action of Cytochalasin D and Latrunculin B simulated the concentration-dependent mechanical changes reasonably well. This study shows a strong dependence of the mechanical properties of cells and tissues on the organization and degree of polymerization of actin filaments.

摘要

在胚胎发育、伤口愈合和细胞迁移过程中,肌动蛋白微丝将细胞内产生的牵引力和收缩力传递至细胞外基质,以维持组织结构和张力。因此,肌动蛋白细胞骨架的状态强烈影响细胞和组织的力学性质。细胞松弛素D和Latrunculin是常用试剂,它们通过不同机制改变肌动蛋白聚合状态或肌动蛋白丝的组织形式。我们研究了一系列细胞松弛素D和Latrunculin B浓度(从40皮摩尔到10微摩尔)对成纤维细胞填充的胶原基质中细胞力学性质的影响。通过单轴应力-应变测试测量收缩力和动态刚度。细胞松弛素D的有效浓度范围(200皮摩尔-2微摩尔)比Latrunculin B的有效浓度范围(20纳摩尔-200纳摩尔)更宽。用血清激活细胞不会改变细胞松弛素D浓度的有效范围,但会使Latrunculin B的有效范围向上移动10倍。基于细胞松弛素D和Latrunculin B假定作用机制的简单数学结合模型较好地模拟了浓度依赖性力学变化。这项研究表明细胞和组织的力学性质强烈依赖于肌动蛋白丝的组织形式和聚合程度。

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