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首页> 外文期刊>Kidney international. >Renal ENaC subunit, Na|[ndash]|K|[ndash]|2Cl and Na|[ndash]|Cl cotransporter abundances in aged, water-restricted F344 |[times]| Brown Norway rats
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Renal ENaC subunit, Na|[ndash]|K|[ndash]|2Cl and Na|[ndash]|Cl cotransporter abundances in aged, water-restricted F344 |[times]| Brown Norway rats

机译:肾衰老,水分受限的F344中,肾ENaC亚基Na | n | K | n | 2Cl和Na | n | Cl共转运子丰度| [times ||褐挪威鼠

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摘要

Renal sodium reabsorption is a key determinant of final urine concentration. Our aim was to determine whether differences existed between aged and young rats in their response to water restriction with regard to the regulation of abundance of any of the major distal renal sodium transporter proteins. Male Fisher 344 Brown Norway (F344 BN) rats of 3-, 10-, 24-, or 31 months of age (3M, 10M, 24M, or 31M) were either water restricted (WR) for 5 days or control (ad libitum water). Major renal sodium transporters and channel subunits were evaluated by immunoblotting and immunohistochemistry. Age did not significantly affect plasma arginine vasopressin or aldosterone levels, but renin activity was only 8% in 31M-WR rats relative to 3M-WR (P- and -subunits (70-kDa band) of the epithelial sodium channel (ENaC) (PP<0.05) increased the abundance of Na–K–2Cl cotransporter (NKCC2) and Na–Cl cotransporter (NCC) across ages. However, these increases were significantly blunted as rats aged. Mean band densities were increased in WR rats (relative to age controls) by 54 and 106% at 3M, but only 25 and 29% at 24M and 0 and 6% at 31M for NKCC2 and NCC, respectively. Aged F344 BN rats have reduced basal distal tubular renal sodium transporter abundances and blunted upregulation during water restriction, which may contribute to decreased urinary concentrating capacity.
机译:肾钠的重吸收是最终尿液浓度的关键决定因素。我们的目的是确定在任何主要的远端肾脏钠转运蛋白的丰度调节方面,老年大鼠和幼龄大鼠对水分限制的反应是否存在差异。分别对3、10、24、31个月大的3、10、24、31个月大的雄性Fisher 344褐挪威(F344 BN)大鼠进行水限制(WR)5天或作对照(随意水)。主要的肾脏钠转运蛋白和通道亚单位通过免疫印迹和免疫组织化学进行了评估。年龄并未显着影响血浆精氨酸加压素或醛固酮水平,但相对于上皮钠通道(ENaC)的3M-WR(P和-亚基(70-kDa带),在31M-WR大鼠中肾素活性仅为8%。 (PP <0.05)随年龄的增长,Na–K–2Cl协同转运蛋白(NKCC2)和Na–Cl的协同转运蛋白(NCC)的丰度增加,但随着年龄的增长,这些增加明显减弱。 (至年龄对照组),NKCC2和NCC分别在3M时降低了54%和106%,在24M时分别降低了25%和29%,31​​M时分别降低了0%和6%。水分限制期间的上调变钝,这可能导致尿液浓缩能力降低。

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