首页> 美国卫生研究院文献>American Journal of Physiology - Regulatory Integrative and Comparative Physiology >Chronic blockade of hindbrain glucocorticoid receptors reduces blood pressure responses to novel stress and attenuates adaptation to repeated stress
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Chronic blockade of hindbrain glucocorticoid receptors reduces blood pressure responses to novel stress and attenuates adaptation to repeated stress

机译:慢性阻断后脑糖皮质激素受体可降低血压对新应激的反应并减弱对反复应激的适应性

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摘要

Exogenous glucocorticoids act within the hindbrain to enhance the arterial pressure response to acute novel stress. Here we tested the hypothesis that endogenous glucocorticoids act at hindbrain glucocorticoid receptors (GR) to augment cardiovascular responses to restraint stress in a model of stress hyperreactivity, the borderline hypertensive rat (BHR). A 3- to 4-mg pellet of the GR antagonist mifepristone (Mif) was implanted over the dorsal hindbrain (DHB) in Wistar-Kyoto (WKY) and BHRs. Control pellets consisted of either sham DHB or subcutaneous Mif pellets. Rats were either subjected to repeated restraint stress (chronic stress) or only handled (acute stress) for 3–4 wk, then all rats were stressed on the final day of the experiment. BHR showed limited adaptation of the arterial pressure response to restraint, and DHB Mif significantly (P ≤ 0.05) attenuated the arterial pressure response to restraint in both acutely and chronically stressed BHR. In contrast, WKY exhibited a substantial adaptation of the pressure response to repeated restraint that was significantly reversed by DHB Mif. DHB Mif and chronic stress each significantly increased baseline plasma corticosterone concentration and adrenal weight and reduced the corticosterone response to stress in all rats. We conclude that endogenous corticosterone acts via hindbrain GR to enhance the arterial pressure response to stress in BHR, but to promote the adaptation of the arterial pressure response to stress in normotensive rats. Endogenous corticosterone also acts in the hindbrain to restrain corticosterone at rest but to maintain the corticosterone response to stress in both BHR and WKY rats.
机译:外源糖皮质激素在后脑内起作用,以增强对急性新应激的动脉压反应。在这里,我们测试了以下假设:内源性糖皮质激素作用于后脑糖皮质激素受体(GR),以在应激性高反应性模型(临界性高血压大鼠(BHR))中增强心血管对约束性应激的反应。将3至4毫克的GR拮抗剂米非司酮(Mif)药丸植入Wistar-Kyoto(WKY)和BHR中的后脑(DHB)上方。对照药丸由假DHB或皮下Mif药丸组成。大鼠要么受到反复的约束压力(慢性压力),要么仅受到处理(急性压力)3-4周,然后在实验的最后一天对所有大鼠施加压力。 BHR显示动脉压对约束的适应性有限,DHB Mif在急性和慢性应激BHR中均显着(P≤0.05)减弱了动脉压对约束的响应。相比之下,WKY表现出对重复约束的压力响应有很大的适应性,而DHB Mif则显着逆转了这种约束。在所有大鼠中,DHB Mif和慢性应激均显着增加基线血浆皮质酮浓度和肾上腺重量,并降低皮质酮对应激的反应。我们得出的结论是,内源性皮质酮通过后脑GR发挥作用,以增强BHR对压力的动脉压力反应,但在血压正常的大鼠中促进对压力的动脉压力反应的适应性。内源性皮质酮还在后脑中发挥作用,以抑制静止状态的皮质酮,但在BHR和WKY大鼠中均维持皮质酮对压力的反应。

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