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Part II: Fibroblasts preferentially migrate in the direction of principal strain

机译:第二部分:成纤维细胞优先向主应变方向迁移

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A growing body of evidence suggests that the sensory information from the cytoskeleton and integrins may be responsible for guiding migration during mechano- and haptotaxis. However, the dual function of these subcellular structures as mechano-sensors and -actuators is only partially understood. Using a new cell chamber described in the preceding companion paper (Ref to part I, Raeber et al. 2007a) we investigated the migration response of adhesion-dependent fibroblasts embedded 3-dimensionally within synthetic protease-sensitive poly(ethylene glycol) hydrogels to stepwise and cyclic mechanical loads. To that end, we developed a spatially and temporally resolved migration analysis technique capable of providing estimates of statistical cell migration parameters along and perpendicular to the main strain direction. Fibroblasts reoriented themselves in the direction of principal strain, increased their proteolytic migration activity and moved preferentially parallel to the principal strain axis. These results point to a possible correlation between planes of iso-strain and migration direction.
机译:越来越多的证据表明,来自细胞骨架和整联蛋白的感觉信息可能是在机械和触觉趋向期间指导迁移的原因。然而,这些亚细胞结构作为机械传感器和致动器的双重功能仅被部分理解。使用在之前的同伴论文中描述的新细胞室(参见第一部分,Raeber等人,2007a),我们研究了3维包埋在合成蛋白酶敏感性聚乙二醇水凝胶中的黏附依赖性成纤维细胞对逐步迁移的反应和周期性的机械负载。为此,我们开发了一种时空分辨的迁移分析技术,能够提供沿主应变方向并垂直于主应变方向的统计细胞迁移参数的估计值。成纤维细胞将自身重新定向到主应变方向,增加了其蛋白水解迁移活性,并优先平行于主应变轴移动。这些结果表明等应变平面和迁移方向之间可能存在相关性。

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