首页> 美国卫生研究院文献>American Journal of Physiology - Regulatory Integrative and Comparative Physiology >Genetic knockdown of estrogen receptor-alpha in the subfornical organ augments ANG II-induced hypertension in female mice
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Genetic knockdown of estrogen receptor-alpha in the subfornical organ augments ANG II-induced hypertension in female mice

机译:生殖器官下雌激素受体α的基因敲低加剧了ANG II诱导的雌性小鼠高血压

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摘要

The present study tested the hypotheses that 1) ERα in the brain plays a key role in the estrogen-protective effects against ANG II-induced hypertension, and 2) that the subfornical organ (SFO) is a key site where ERα mediates these protective actions. In this study, a “floxed” ERα transgenic mouse line (ERαflox) was used to create models in which ERα was knocked down in the brain or just in the SFO. Female mice with ERα ablated in the nervous system (Nestin-ERα mice) showed greater increases in blood pressure (BP) in response to ANG II. Furthermore, females with ERα knockdown specifically in the SFO [SFO adenovirus-Cre (Ad-Cre) injected ERαflox mice] also showed an enhanced pressor response to ANG II. Immunohistochemical (IHC), RT-PCR, and Western blot analyses revealed a marked reduction in the expression of ERα in nervous tissues and, in particular, in the SFO. These changes were not present in peripheral tissues in Nestin-ERα mice or Ad-Cre-injected ERαflox mice. mRNA expression of components of the renin-angiotensin system in the lamina terminalis were upregulated in Nestin-ERα mice. Moreover, ganglionic blockade on day 7 after ANG II infusions resulted in a greater reduction of BP in Nestin-ERα mice or SFO Ad-Cre-injected mice, suggesting that knockdown of ERα in the nervous system or the SFO alone augments central ANG II-induced increase in sympathetic tone. The results indicate that interfering with the action of estrogen on SFO ERα is sufficient to abolish the protective effects of estrogen against ANG II-induced hypertension.
机译:本研究检验了以下假设:1)大脑中的ERα在对抗ANG II诱导的高血压的雌激素保护作用中起关键作用,以及2)子穹for下器官(SFO)是ERα介导这些保护作用的关键部位。在这项研究中,使用“固定的”ERα转基因小鼠品系(ERα flox )创建了将ERα击倒在大脑或仅在SFO中的模型。在神经系统中有ERα消融的雌性小鼠(Nestin-ERα-小鼠)对ANG II的反应显示血压(BP)升高更大。此外,在SFO [注射SFO腺病毒-Cre(Ad-Cre)的ERα flox 小鼠]中具有ERα基因敲低的雌性也表现出对ANG II的升压反应增强。免疫组织化学(IHC),RT-PCR和Western blot分析显示,神经组织特别是SFO中ERα的表达明显降低。这些变化在Nestin-ERα-小鼠或Ad-Cre注射的ERα flox 小鼠的外周组织中不存在。 Nestin-ERα-小鼠的终板中肾素-血管紧张素系统各成分的mRNA表达上调。此外,在ANG II输注后第7天神经节阻滞导致Nestin-ERα-小鼠或SFO Ad-Cre注射的小鼠的BP更大程度降低,这表明在神经系统或仅SFO就增强了中枢ANG II诱导的交感神经张力的增加。结果表明,干扰雌激素对SFOERα的作用足以消除雌激素对ANG II诱导的高血压的保护作用。

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