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Cell volume kinetics of adherent epithelial cells measured by laser scanning reflection microscopy: determination of water permeability changes of renal principal cells.

机译:通过激光扫描反射显微镜测量粘附的上皮细胞的细胞体积动力学:确定肾原代细胞的水渗透性变化。

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摘要

The water channel aquaporin-2 (AQP2), a key component of the antidiuretic machinery in the kidney, is rapidly regulated by the antidiuretic hormone vasopressin. The hormone exerts its action by inducing a translocation of AQP2 from intracellular vesicles to the cell membrane. This step requires the elevation of intracellular cyclic AMP. We describe here a new method, laser scanning reflection microscopy (LSRM), suitable for determining cellular osmotic water permeability coefficient changes in primary cultured inner medullary collecting duct (IMCD) cells. The recording of vertical-reflection-mode x-z-scan section areas of unstained, living IMCD cells proved useful and valid for the investigation of osmotic water permeability changes. The time-dependent increases of reflection-mode x-z-scan section areas of swelling cells were fitted to a single-exponential equation. The analysis of the time constants of these processes indicates a twofold increase in osmotic water permeability of IMCD cells after treatment of the cells both with forskolin, a cyclic AMP-elevating agent, and with Clostridium difficile toxin B, an inhibitor of Rho proteins that leads to depolymerization of F-actin-containing stress fibers. This indicates that both agents lead to the functional insertion of AQP2 into the cell membrane. Thus, we have established a new functional assay for the study of the regulation of the water permeability at the cellular level.
机译:水通道水通道蛋白2(AQP2)是肾脏中抗利尿机制的关键组成部分,可通过抗利尿激素加压素快速调节。该激素通过诱导AQP2从细胞内囊泡向细胞膜的转运发挥作用。该步骤需要升高细胞内环状AMP。我们在这里描述了一种新的方法,激光扫描反射显微镜(LSRM),适用于确定原代培养的内髓收集管(IMCD)细胞中的细胞渗透水渗透系数的变化。事实证明,未染色的活IMCD细胞的垂直反射模式x-z扫描截面区域的记录对于研究渗透水渗透率变化是有用且有效的。溶胀细胞的反射模式x-z扫描截面面积随时间的增加拟合为单指数方程。对这些过程的时间常数的分析表明,用环磷酰胺(一种环状AMP增强剂)和艰难梭菌毒素B(一种Rho蛋白抑制剂)处理后,IMCD细胞的渗透水渗透率增加了两倍。含F-肌动蛋白的应力纤维解聚。这表明两种试剂均导致AQP2功能性插入细胞膜。因此,我们建立了一种新的功能测定法,用于研究细胞水平上的水渗透性调节。

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