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Macrophage motility is driven by frontal-towing with a force magnitude dependent on substrate stiffness

机译:巨噬细胞的运动性是由前牵引带动的,其作用力大小​​取决于基质的刚度

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The ability of macrophages to properly migrate is crucial to their success as early responders during the innate immune response. Furthermore, improper regulation of macrophage migration is known to contribute to several pathologies. The signaling mechanisms underlying macrophage migration have been previously studied but to date the mechanical mechanism of macrophage migration has not been determined. In this study, we have created the first traction maps of motile primary human macrophages by observing their migration on compliant polyacrylamide gels. We find that the force generated by migrating macrophages is concentrated in the leading edge of the cell - so-called frontal towing - and that the magnitude of this force is dependent on the stiffness of the underlying matrix. With the aid of chemical inhibitors, we show that signaling through the RhoA kinase ROCK, myosin II, and PI3K is essential for proper macrophage force generation. Finally, we show that Rac activation by its GEF Vav1 is crucial for macrophage force generation while activation through its GEF Tiam1 is unnecessary.
机译:巨噬细胞正确迁移的能力对于其作为先天免疫应答中的早期应答者的成功至关重要。此外,已知巨噬细胞迁移的不适当调节会导致多种病理。先前已经研究了巨噬细胞迁移的基础信号机制,但是迄今为止,尚未确定巨噬细胞迁移的机械机制。在这项研究中,我们通过观察可移动的原始人类巨噬细胞在顺应性聚丙烯酰胺凝胶上的迁移,创建了第一个牵引图。我们发现,通过迁移巨噬细胞而产生的力集中在细胞的前缘-所谓的额叶牵引-并且该力的大小取决于基础基质的刚度。借助于化学抑制剂,我们证明了通过RhoA激酶ROCK,肌球蛋白II和PI3K发出的信号对于产生适当的巨噬细胞力至关重要。最后,我们证明了通过其GEF Vav1激活Rac对巨噬细胞生成至关重要,而通过其GEF Tiam1激活则是不必要的。

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