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Impaired solute accumulation in inner medulla of Clcnk1-/- mice kidney.

机译:Clcnk1-/-小鼠肾脏内髓质中溶质积累受损。

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The CLC-K1 chloride channel is a kidney-specific CLC chloride channel expressed in the thin ascending limb of Henle's loop (tAL). Recently, we determined that Clcnk1-/- mice show nephrogenic diabetes insipidus (NDI). To investigate the pathogenesis of impaired urinary concentrating ability, we analyzed renal functions of Clcnk1-/- mice in more detail. The osmolar clearance-to-creatinine clearance ratio was not significantly different between Clcnk1+/- and Clcnk1+/+ mice. Fractional excretion of sodium, chloride, and urea was also not significantly affected in Clcnk1-/- mice. These results indicate that the polyuria observed in Clcnk1-/- mice was water diuresis and not osmotic diuresis. The papillary osmolarity in Clcnk1-/- mice was significantly lower than that in Clcnk1+/+ mice under a hydrated condition, and it did not increase even after water deprivation. Sodium and chloride contents in the inner medulla in Clcnk1-/- mice were at about one-half the levels observed in Clcnk1+/+ mice. Furthermore, the accumulation of urea was also impaired in Clcnk1-/- mice, suggesting that the overall countercurrent system was impaired by a defect of its single component, chloride transport in the tAL. The aldose reductase mRNA abundance in Clcnk1-/- mice was decreased, further evincing that inner medullary tonicity is decreased in Clcnk1-/- mice. We concluded that NDI in Clcnk1-/- mice resulted from an impairment in the generation of inner medullary hypertonicity by a dysfunction of the countercurrent systems.
机译:CLC-K1氯化物通道是在Henle's Loop(tAL)的细小上升肢中表达的肾脏特异性CLC氯化物通道。最近,我们确定Clcnk1-/-小鼠显示出肾性尿崩症(NDI)。为了研究尿液浓缩能力受损的发病机制,我们更详细地分析了Clcnk1-/-小鼠的肾功能。 Clcnk1 +/-和Clcnk1 + / +小鼠之间的渗透压清除率/肌酐清除率没有显着差异。在Clcnk1-/-小鼠中,钠,氯和尿素的部分排泄也未受到明显影响。这些结果表明在Clcnk1-/-小鼠中观察到的多尿是水利尿而不是渗透性利尿。在水合条件下,Clcnk1-/-小鼠的乳头渗透压明显低于Clcnk1 + / +小鼠,甚至在缺水后也没有增加。 Clcnk1-/-小鼠的内侧髓质中的钠和氯化物含量约为Clcnk1 + / +小鼠中观察到的水平的一半。此外,在Clcnk1-/-小鼠中尿素的积累也受到损害,这表明整个逆流系统受到其单一成分缺陷的影响,即tAL中的氯离子转运。 Clcnk1-/-小鼠的醛糖还原酶mRNA丰度降低,进一步表明Clcnk1-/-小鼠的内髓质张力降低。我们得出的结论是,Clcnk1-/-小鼠中的NDI是由于逆流系统功能障碍导致内髓质高渗性的产生所致。

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