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首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Overexpression of Central ACE2 (Angiotensin-Converting Enzyme 2) Attenuates the Pressor Response to Chronic Central Infusion of Ang II (Angiotensin II)
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Overexpression of Central ACE2 (Angiotensin-Converting Enzyme 2) Attenuates the Pressor Response to Chronic Central Infusion of Ang II (Angiotensin II)

机译:中央ACE2的过度表达(血管紧张素转换酶2)衰减对慢性中央输注的压力响应(血管紧张素II)

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摘要

We investigated the mechanism by which ACE2 (angiotensin-converting enzyme 2) overexpression alters neurohumoral outflow and central oxidative stress. Nrf2 (nuclear factor [erythroid-derived 2]-like 2) is a master antioxidant transcription factor that regulates cytoprotective and antioxidant genes. We hypothesized that upregulation of central ACE2 inhibits the pressor response to Ang II (angiotensin II) by reducing reactive oxygen species through a Nrf2/antioxidant enzyme–mediated mechanism in the rostral ventrolateral medulla. Synapsin human Angiotensin Converting Enzyme 2 positive (SynhACE2+/+) mice and their littermate controls synhACE2?/? were used to evaluate the consequence of intracerebroventricular infusion of Ang II. In control mice, Ang II infusion evoked a significant increase in blood pressure and norepinephrine excretion, along with polydipsia and polyuria. The pressor effect of central Ang II was completely blocked in synhACE2+/+ mice. Polydipsia, norepinephrine excretion, and markers of oxidative stress in response to central Ang II were also reduced in synhACE2+/+ mice. The MasR (Mas receptor) agonist Ang 1–7 and blocker A779 had no effects on blood pressure. synhACE2+/+ mice showed enhanced expression of Nrf2 in the rostral ventrolateral medulla which was blunted following Ang II infusion. Ang II evoked nuclear translocation of Nrf2 in cultured Neuro 2A (N2A) cells. In synhACE2?/? mice, the central Ang II pressor response was attenuated by simultaneous intracerebroventricular infusion of the Nrf2 activator sulforaphane; blood pressure was enhanced by knockdown of Nrf2 in the rostral ventrolateral medulla in Nrf2 floxed (Nrf2f/f) mice. These data suggest that the hypertensive effects of intracerebroventricular Ang II are attenuated by selective overexpression of brain synhACE2 and may be mediated by Nrf2-upregulated antioxidant enzymes in the rostral ventrolateral medulla.
机译:我们调查了ACE2(血管紧张素转换酶2)过表达的机制改变了神经胃部流出和中央氧化应激。 NRF2(核因子[红细胞衍生的2] - 麦克风2)是调节细胞保护和抗氧化基因的主抗氧化转录因子。我们假设中央ACE2的上调抑制了通过在升降腹膜外髓质中的NRF 2 /抗氧化酶介导的机制通过NRF 2 /抗氧化酶介导的机制减少了对Ang II(血管紧张素II)的压力响应。 Synapsin人血管紧张素转化酶2阳性(Synhace2 + / +)小鼠及其偶体对照Synhace2?/?用于评估Ang II的脑室输注的结果。在对照小鼠中,Ang II输注诱发血压和Norepinephrine排泄的显着增加,以及PolyDipsia和Polyuria。中央Ang II的压力效应以SynhAce2 + / +小鼠完全堵塞。兼容致癌中心Ang II响应于中央Ang II的PolyDipsia,Norepinephrine排泄和氧化应激标记。 MasR(MAS受体)Agonist Ang 1-7和阻塞A779对血压没有影响。 Synhace2 + / +小鼠显示出在Ang II输注后垂涎于鼻腔外髓质中NRF2的增强表达。 Ang II在培养的神经2A(N2A)细胞中唤起NRF2的核转位。在synhace2?/?小鼠,Central Ang II压力响应响应通过同时脑内输注NRF2活化剂磺橡胶抑制; NRF2碳(NRF2F / F)小鼠中升腔腹膜外髓内的NRF2敲低而增强了血压。这些数据表明,通过脑Symhace2的选择性过表达抑制脑室腔内Ang II的高血压效应,并且可以通过升延鼻外侧髓质中的NRF2上调抗氧化酶介导。

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