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Effect of dietary salt intake on epithelial Na+ channels (ENaCs) in the hypothalamus of Dahl salt‐sensitive rats

机译:饮食盐摄入量对Dahl盐敏感大鼠下丘脑上皮Na +通道(ENaCs)的影响

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摘要

All three epithelial Na+ channel (ENaC) subunits (α, β, and γ) and the mineralocorticoid receptor (MR), a known regulator of ENaC, are located in vasopressin (VP) synthesizing magnocellular neurons in the hypothalamic supraoptic (SON) and paraventricular (PVN) nuclei. Our previous study showed that ENaC mediates a Na+ leak current that affects the steady‐state membrane potential of VP neurons. This study was conducted in Dahl salt‐sensitive (Dahl‐SS) rats to determine if any abnormal responses in the expression of ENaC subunits and MR occur in the hypothalamus and kidney in response to a high dietary salt intake. After 21 days of high salt consumption, Dahl‐SS rat resulted in a significant increase in γ ENaC expression and exhibited proteolytic cleavage of this subunit compared to Sprague–Dawley (SD) rats. Additionally, Dahl‐SS rats had dense somato‐dendritic γ ENaC immunoreactivity in style="fixed-case">VP neurons, which was absent in style="fixed-case">SD rats. In contrast, style="fixed-case">SD rats fed a high salt diet had significantly decreased α style="fixed-case">ENaC subunit expression in the kidney and style="fixed-case">MR expression in the hypothalamus. Plasma osmolality measured daily for 22 days demonstrated that Dahl‐ style="fixed-case">SS rats fed a high salt diet had a steady increase in plasma osmolality, whereas style="fixed-case">SD rats had an initial increase that decreased to baseline levels. Findings from this study demonstrate that Dahl‐ style="fixed-case">SS rats lack a compensatory mechanism to down regulate style="fixed-case">ENaC during high dietary salt consumption, which may contribute to the development of hypertension.
机译:全部三个上皮细胞Na + 通道(ENaC)亚基(α,β和γ)和盐皮质激素受体(MR)(一种已知的ENaC调节剂)均位于血管加压素(VP)中,合成了下丘脑超视核(SON)和室旁核(PVN)。我们以前的研究表明,ENaC介导的Na + 泄漏电流会影响VP神经元的稳态膜电位。这项研究是在Dahl盐敏感性(Dahl-SS)大鼠中进行的,旨在确定高盐饮食对下丘脑和肾脏是否发生ENaC亚基和MR表达异常的反应。与Sprague-Dawley(SD)大鼠相比,高盐消耗21天后,Dahl-SS大鼠导致γENaC表达显着增加,并显示出该亚基的蛋白水解裂解。此外,Dahl-SS大鼠在 style =“ fixed-case”> VP 神经元中具有浓密的体树突状细胞γENaC免疫反应性,而 style =“ fixed-case”> SD 大鼠。相比之下,高盐饮食的 style =“ fixed-case”> SD 大鼠在肾脏和肾脏中的αα style =“ fixed-case”> SD 大鼠的α和αC亚基表达明显降低。下丘脑中的 style =“ fixed-case”> MR 表达。每天测量22天的血浆渗透压,证明高盐饮食的Dahl- style =“ fixed-case”> SS 大鼠血浆渗透压持续升高,而 style =“ fixed-case” > SD 大鼠的初始增加降至基线水平。这项研究的结果表明,Dahl- style =“ fixed-case”> SS 大鼠缺乏在高饮食期间下调 EN aC的补偿机制。食盐,可能会导致高血压。

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