首页> 外文期刊>American Journal of Physiology >Activation of kidney-directed neurons in the lamina terminalis by alterations in body fluid balance.
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Activation of kidney-directed neurons in the lamina terminalis by alterations in body fluid balance.

机译:通过改变体液平衡来激活终末层中的肾脏定向神经元。

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摘要

This study was undertaken to determine if neurons in the lamina terminalis, previously identified as projecting to the kidney (35), were responsive to alterations in stimuli associated with fluid balance homeostasis. Neurons in the lamina terminalis projecting to the kidney were identified by the retrograde transynaptic transport of Bartha's strain of pseudorabies virus in anesthetized rats. Rats were also exposed to 24-h water deprivation, intravenous hypertonic saline, or intracerebroventricular ANG II. To determine if "kidney-directed" neurons were activated following each stimulus, brain sections that included the lamina terminalis were examined immunohistochemically for viral antigen and Fos protein. With the exception of ANG II in the subfornical organ, all regions of the lamina terminalis contained neurons that were significantly activated by water deprivation, hypertonic saline, and ANG II. These results provide evidence for a neural substrate, which may underpin some of the effects of hypertonic saline and ANG II on renal function thought to be mediated through the lamina terminalis.
机译:进行这项研究是为了确定先前鉴定为向肾脏突出的椎板终末神经元(35)是否对与体液平衡稳态相关的刺激变化有反应。通过麻醉大鼠中Bartha假狂犬病病毒株的逆行经突触转运,可以识别出突出于肾脏的椎板末端神经元。大鼠也暴露于24小时缺水,静脉高渗盐水或脑室内ANGII。为了确定在每次刺激后是否“肾定向”神经元被激活,对包括椎板末端的大脑切片进行了免疫组织化学检查,以检测病毒抗原和Fos蛋白。除了小器官下方的ANG II之外,椎板终末的所有区域都包含被缺水,高渗盐水和ANG II显着激活的神经元。这些结果提供了神经底物的证据,其可能支持高渗盐水和ANG II对肾功能的某些作用,这些作用被认为是通过终板介导的。

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