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首页> 外文期刊>American Journal of Physiology >Effects of P-glycoprotein on cell volume regulation in mouse proximal tubule.
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Effects of P-glycoprotein on cell volume regulation in mouse proximal tubule.

机译:P-糖蛋白对小鼠近端小管细胞体积调节的影响。

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The role of P-glycoprotein (P-gp) in cell volume regulation was examined in isolated nonperfused proximal tubule S2 segments from wild-type (WT) mice and those in which both mdr1a and mdr1b genes were knocked out (KO). When the osmolality of the bathing solution was rapidly decreased from 300 to 180 mosmol/kgH(2)O, the tubules from both the WT and KO mice exhibited regulatory volume decrease (RVD) by a similar magnitude after the initial cell swelling. The peritubular addition of two P-pg inhibitors (verapamil and cyclosporin A) to either group of the tubules had no effect on RVD. When the tubules from the WT mice were rapidly exposed to a hyperosmotic solution (500 mosmol/kgH(2)O) including 200 mM mannitol, they abruptly shrank to 82.1% of their control volume but remained in a shrunken state during the experimental period, indicating a lack of regulatory volume increase (RVI). The addition of the two P-gp inhibitors, but not the inhibitor of the renal organic cation transport system (tetraethylammonium), to the tubules from the WT mice resulted in RVI. Surprisingly, when the tubules from the KO mice were exposed to the hyperosmotic solution, they abruptly shrank to 79.9% of their control volume, and then gradually swelled to 87.7% of their control volume, showing RVI. However, exposure of the tubules from the KO mice to the hyperosmotic solution in the presence of the two P-gp inhibitors had no effect on RVI. When the tubules of the WT mice were exposed to the hyperosmotic solution including either of the two P-gp inhibitors, in the absence of peritubular Na+ or in the presence of peritubular ethylisopropylamiloride (EIPA; the specific inhibitor of Na+/H+ exchange), they did not exhibit RVI. In the tubules of the KO mice, both removing peritubular Na+ and adding peritubular EIPA inhibited RVI induced by the hyperosmotic solution. We conclude that 1) in mouse proximal tubule, P-gp modulates RVI during hyperosmotic stress but not RVD during hyposmotic stress and 2) basolateral membrane Na+/H+ exchange partly contributes to the P-gp-induced modulation of RVI under hyperosmotic stress.
机译:在来自野生型(WT)小鼠和敲除mdr1a和mdr1b基因(KO)的小鼠的非灌注近端小管S2区段中,检查了P-糖蛋白(P-gp)在细胞体积调节中的作用。当沐浴液的重量摩尔渗透压浓度从300 mosmol / kgH(2)O快速降低时,WT和KO小鼠的小管在初始细胞肿胀后均显示出类似的调节体积降低(RVD)。在每组小管中向肾小管周围添加两种P-pg抑制剂(维拉帕米和环孢菌素A)对RVD无影响。当来自WT小鼠的小管迅速暴露于包括200 mM甘露醇的高渗溶液(500 mosmol / kgH(2)O)时,它们突然收缩至其对照体积的82.1%,但在实验期间处于收缩状态,表明缺乏监管量增加(RVI)。将两种P-gp抑制剂而非肾有机阳离子转运系统的抑制剂(四乙铵)添加到WT小鼠的肾小管中后,产生了RVI。出人意料的是,当KO小鼠的小管暴露于高渗溶液中时,它们突然缩小至其对照体积的79.9%,然后逐渐膨胀至其对照体积的87.7%,显示出RVI。但是,在两种P-gp抑制剂存在下,将KO小鼠的小管暴露于高渗溶液中对RVI没有影响。当不存在肾小管周围Na +或存在肾小管周围乙基异丙基阿米洛利(EIPA; Na + / H +交换的特异性抑制剂)时,将WT小鼠的肾小管暴露于包括两种P-gp抑制剂之一的高渗溶液中,它们会没有展示RVI。在KO小鼠的肾小管中,去除肾小管周围的Na +和添加肾小管周围的EIPA均能抑制高渗溶液诱导的RVI。我们得出的结论是:1)在高渗应激期间,小鼠近端小管中,P-gp调节RVI,而在低渗应激期间,RV-D不调节RVD; 2)基底外侧膜Na + / H +交换部分在高渗应激下,部分参与了P-gp诱导的RVI调节。

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