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Cell Movements and Mechanical Force Distribution During the Migration of Dictyostelium Slugs

机译:Dictyostelium the迁移期间的细胞运动和机械力分布

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摘要

Migration of Dictyostelium discoideum slugs results from coordinated movement of their constituent cells. It is generally assumed that each cell contributes to the total motive force of the slug. However, the basic mechanisms by which mechanical forces (traction and resistive forces) are transmitted to the substrate, their magnitude and their location, are largely unknown. In this work, we performed detailed observations of cell movements by fluorescence microscopy using two-dimensional (2D) slugs. We show that 2D slugs share most of the properties of 3D ones. In particular, waves of movement propagate in long 2D slugs, and slug speed correlates with slug length as found in 3D slugs. We also present the first measurements of the distribution of forces exerted by 2D and 3D slugs using the elastic substrate method. Traction forces are mainly exerted in the central region of the slug. The large perpendicular forces around slug boundary and the existence of parallel resistive forces in the tip and/or the tail suggest an important role of the sheath in the transmission of forces to the substrate.
机译:盘基网柄菌disc的迁移是由其组成细胞的协调运动引起的。通常假设每个单元都对弹头的总动力有所贡献。但是,机械力(牵引力和阻力)传递到基板的基本机制,其大小和位置在很大程度上是未知的。在这项工作中,我们使用二维(2D)团块通过荧光显微镜对细胞运动进行了详细观察。我们显示2D子弹具有3D子弹的大部分属性。特别是,运动波在长的2D弹头中传播,并且弹头速度与3D弹头中的弹头长度相关。我们还介绍了使用弹性基板方法对2D和3D弹头施加的力的分布进行的首次测量。牵引力主要施加在弹头的中央区域。围绕团块边界的垂直力很大,并且在顶端和/或尾端存在平行的阻力,这表明护套在力向基材的传递中起着重要作用。

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