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首页> 外文期刊>Integrative Biology: quantitative biosciences from nano to macro >Fluid-shear-stress-induced translocation of aquaporin-2 and reorganization of actin cytoskeleton in renal tubular epithelial cells
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Fluid-shear-stress-induced translocation of aquaporin-2 and reorganization of actin cytoskeleton in renal tubular epithelial cells

机译:流体剪切应力诱导的aquaporin-2易位和肌动蛋白细胞骨架在肾小管上皮细胞中的重组

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In vivo, renal tubular epithelial cells are exposed to luminal fluid shear stress (FSS) and a transepithelial osmotic gradient. In this study, we used a simple collecting-duct-on-a-chip to investigate the role of an altered luminal microenvironment in the translocation of aquaporin-2 (AQP2) and the reorganization of actin cytoskeleton (F-actin) in primary cultured inner medullary collecting duct (IMCD) cells of rat kidney. Immunocytochemistry demonstrated that 3 h of exposure to luminal FSS at 1 dyn cm(-2) was sufficient to induce depolymerization of F-actin in those cells. We observed full actin depolymerization after 5 h exposure and substantial re-polymerization within 2 h of removing the luminal FSS, suggesting that the process is reversible and the fluidic environment regulates the reorganization of intracellular F-actin. We demonstrate that several factors (i.e., luminal FSS, hormonal stimulation, transepithelial osmotic gradient) collectively exert a profound effect on the AQP2 trafficking in the collecting ducts, which is associated with actin cytoskeletal reorganization.
机译:在体内,肾小管上皮细胞暴露于腔内液剪切应力(FSS)和跨上皮渗透梯度。在这项研究中,我们使用了一个简单的芯片上收集通道来研究改变的腔微环境在水通道蛋白2(AQP2)易位和肌动蛋白细胞骨架(F-actin)重组中的作用。大鼠肾脏的髓内收集管(IMCD)细胞。免疫细胞化学表明,在1 dyn cm(-2)的腔内FSS暴露3 h足以诱导这些细胞中F-肌动蛋白解聚。我们观察到暴露5 h后肌动蛋白完全解聚,并在除去腔FSS的2 h内发生实质性再聚合,这表明该过程是可逆的,并且流体环境调节细胞内F-肌动蛋白的重组。我们证明了几个因素(即腔内FSS,激素刺激,跨上皮渗透梯度)共同对收集管道中的AQP2转运产生了深远的影响,这与肌动蛋白的细胞骨架重组有关。

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