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Neutrophil Traction Stresses are Concentrated in the Uropod during Migration

机译:在迁移过程中嗜中性粒细胞的牵引应力集中在乌节纲中

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摘要

We find that in contrast to strongly adherent, slow moving cells such as fibroblasts, neutrophils exert contractile stresses largely in the rear of the cell (uropod) relative to the direction of motion. Rather than the leading edge pulling the cell, the rear is both anchoring the cell and the area in which the contractile forces are concentrated. These tractions rapidly reorient themselves during a turn, on a timescale of seconds to minutes, and their repositioning precedes and sets the direction of motion during a turn. We find the total average root mean-squared traction force to be 28 ± 10 nN during chemokinesis, and 67 ± 10 nN during chemotaxis. We hypothesize that the contraction forces in the back of the neutrophil not only break uropodial adhesive contacts but also create a rearward squeezing contractility, as seen in amoeboid or amoeboidlike cells and the formation of blebs in cells, causing a flow of intracellular material to the fluidlike lamellipod. Our findings suggest an entirely new model of neutrophil locomotion.
机译:我们发现,与强粘附,缓慢移动的细胞(如成纤维细胞)相反,嗜中性粒细胞相对于运动方向在细胞后部(uropod)施加的收缩应力很大。后部不是锚定细胞的前缘,而是锚定细胞和收缩力集中的区域。这些牵引力在转弯期间以几秒到几分钟的时间范围迅速重新定向,并且它们的重新定位在转弯期间先行并设定运动方向。我们发现趋化期间的总平均均方根牵引力为28±10 nN,趋化期间为67±10 nN。我们假设嗜中性粒细胞后部的收缩力不仅破坏了上足膜粘合剂的接触,而且还产生了向后挤压的收缩力,如在变形虫或变形虫样细胞中所见以及细胞中气泡的形成,从而导致细胞内物质流向流体状lamellipod。我们的发现表明嗜中性粒细胞运动的全新模型。

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