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首页> 外文期刊>American Journal of Physiology >Novel mechanism within the paraventricular nucleus reduces both blood pressure and hypothalamic pituitary-adrenal axis responses to acute stress
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Novel mechanism within the paraventricular nucleus reduces both blood pressure and hypothalamic pituitary-adrenal axis responses to acute stress

机译:椎间盘内核内的新机制可降低血压和下丘脑垂体肾上腺轴对急性胁迫的反应

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摘要

Macrophage migration inhibitory factor (MIF) counteracts pressor effects of an-giotensin II (ANG II) in the paraventricular nucleus of the hypothal-amus (PVN) in normotensive rats, but this mechanism is absent in spontaneously hypertensive rats (SHRs) due to a lack of MIF in PVN neurons. Since endogenous ANG II in the PVN modulates stress reactivity, we tested the hypothesis that replacement of MIF in PVN neurons would reduce baseline blood pressure and inhibit stress-induced increases in blood pressure and plasma corticosterone in adult male SHRs. Radiotelemetry transmitters were implanted to measure blood pressure, and then an adeno-associated viral vector expressing either enhanced green fluorescent protein (GFP) or MIF was injected bilaterally into the PVN. Cardiovascular responses to a 15-min water stress (1-cm deep, 25 °C) and a 60-min restraint stress were evaluated 3-4 wk later. MIF treatment in the PVN attenuated average restraint-induced increases in blood pressure (37.4 ± 2.0 and 27.6 ± 3.5 mmHg in GFP and MIF groups, respectively, P < 0.05) and corticosterone (42 ± 2 and 36 ± 3 mug/dl in GFP and MIF groups, respectively, P < 0.05). MIF treatment in the PVN also reduced stress-induced elevations in the number of c-Fos-positive cells in the rostral ventrolateral medulla (71 ± 5 in GFP and 47 ± 5 in MIF SHRs, P < 0.01) and corticotropin-releasing factor mRNA expression in the PVN. However, MIF had no significant effects on the cardiovascular responses to water stress in SHRs or to either stress in Sprague-Dawley rats. Therefore, viral vector-mediated restoration of MIF in PVN neurons of SHRs attenuates blood pressure and hypothalamic pituitary adrenal axis responses to stress.
机译:巨噬细胞迁移抑制因子(MIF)抵消了抗血管素II(Ang II)在正常沉实的大鼠中下嗜菌(PVN)的静脉内核(Ang II)的压力效应,但由于A的自发性高血压大鼠(SHR)不存在这种机制PVN神经元中缺乏MIF。由于PVN中的内源性Ang II调节应力反应性,我们测试了在PVN神经元中替换MIF的假设将减少基线血压并抑制成年男性血压中的血压和血浆皮质酮的应激诱导的增加。植入无线电记算筒以测量血压,然后表达增强的绿色荧光蛋白(GFP)或MIF的腺相关病毒载体被双侧注射到PVN中。在3-4WK以后评估了15分钟的水分应激(1cm深,25℃)和60min约束胁迫的心血管反应。 MIF处理在PVN中减弱的平均约束诱导的血压增加(37.4±2.0和27.6±3.5mmHg,分别为P <0.05)和皮质酮(42±2和36±3 MUG / DL)GFP和MIF组,分别为P <0.05)。 PVN中的MIF治疗还减轻了讲鼻间髓质中的C-FOS阳性细胞的数量的应力诱导的升高(在MIF SHRS,P <0.01)和Corticotropin释放因子mRNA中在pvn中的表达。然而,MIF对Shrague-Dawley大鼠中的水分应激或胁迫对水分应激的显着影响。因此,SCR的PVN神经元中MIF的病毒载体介导的MIF恢复衰减血压和下丘脑垂体肾上腺轴对应力的反应。

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