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首页> 外文期刊>Biochemical and Biophysical Research Communications >Hydrostatic pressure regulates tight junctions, actin cytoskeleton and transcellular ion transport.
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Hydrostatic pressure regulates tight junctions, actin cytoskeleton and transcellular ion transport.

机译:静水压力调节紧密的连接,肌动蛋白的细胞骨架和跨细胞离子运输。

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摘要

In the epithelia and endothelia, tight junctions regulate the movement of several substances through the paracellular pathway, maintaining several gradients between apical and basal compartments including osmolality and hydrostatic pressure. In this study, we show that the change of hydrostatic pressure gradient affected tight junctions as well as actin cytoskeleton, cell height and transcellular ion transport. Hydrostatic pressure gradient from basolateral to apical side increased transepithelial conductance and altered claudin-1 localization within several tens of minutes. These changes were promptly restored by the elimination of hydrostatic pressure gradient. Hydrostatic pressure gradient also induced dynamic changes in the actin structure and cell height. We further found that hydrostatic pressure gradient from basolateral to apical side stimulates transcellular Cl(-) transport. Our present findings indicate that the epithelial cell structures and functions are regulated by the hydrostatic pressure gradient which is generated and maintained by the epithelia themselves.
机译:在上皮和内皮中,紧密连接调节几种物质通过旁细胞途径的运动,从而在顶端和基底腔室之间保持多个梯度,包括渗透压和静水压。在这项研究中,我们表明静水压力梯度的变化影响紧密连接以及肌动蛋白的细胞骨架,细胞高度和跨细胞离子运输。从基底外侧到顶侧的静水压力梯度在数十分钟内增加了跨上皮传导性并改变了claudin-1的定位。通过消除静水压力梯度,可以迅速恢复这些变化。静水压力梯度还引起肌动蛋白结构和细胞高度的动态变化。我们进一步发现,从基底外侧到顶侧的静水压力梯度会刺激跨细胞Cl(-)转运。我们目前的发现表明,上皮细胞的结构和功能受上皮自身产生和维持的静水压力梯度的调节。

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