首页> 美国卫生研究院文献>The Journal of Neuroscience >A Diurnal Rhythm of Stimulatory Input to the Hypothalamo–Pituitary–Adrenal System as Revealed by Timed Intrahypothalamic Administration of the Vasopressin V1Antagonist
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A Diurnal Rhythm of Stimulatory Input to the Hypothalamo–Pituitary–Adrenal System as Revealed by Timed Intrahypothalamic Administration of the Vasopressin V1Antagonist

机译:下丘脑-垂体-肾上腺系统的刺激性输入的昼夜节律由定时下丘脑内投与加压素V1拮抗剂揭示。

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摘要

The mammalian suprachiasmatic nuclei (SCN) contain an endogenous pacemaker that generates daily rhythms in behavior and secretion of hormones. We hypothesized that the SCN imposes its circadian rhythm on the rest of the brain via a rhythmic release of its transmitters in its target areas. Previously, we demonstrated a pronounced inhibitory effect of vasopressin (VP), released from SCN terminals in the dorsomedial hypothalamus, on the release of the adrenal hormone corticosterone. In the present study, microdialysis-mediated intracerebral administration of the VP V1-receptor antagonist was used to pursue the study of the mechanisms underlying the circadian control of basal corticosterone release. Using timed administrations of the VP antagonist divided equally over the dayight cycle, we were able to uncover the existence of an additional stimulatory input from the SCN to the hypothalamo–pituitary–adrenal (HPA) axis. Peak activity of this stimulatory SCN input takes place during the second half of the light period, after the daily peak of VP secretion, with a delay of ∼4–6 hr. In all likelihood, the inhibitory and stimulatory circadian input via separate mechanisms affects corticosterone release. Together, these two opposing circadian control mechanisms of the HPA axis enable a precise timing of the circadian peak in corticosterone release.
机译:哺乳动物视交叉上核(SCN)包含一个内源性起搏器,该起搏器每天都会在行为和激素分泌方面产生节律。我们假设SCN通过在目标区域有规律地释放其发射器,将昼夜节律强加于大脑的其余部分。以前,我们证明了从下丘脑下丘脑SCN末端释放的加压素(VP)对肾上腺皮质激素的释放具有明显的抑制作用。在本研究中,微透析介导的VP V1受体拮抗剂的脑内给药用于研究昼夜节律控制基础皮质酮释放的机制。使用定时给予的VP拮抗剂,在昼夜周期中平均分配,我们能够发现从SCN到下丘脑-垂体-肾上腺(HPA)轴的其他刺激输入的存在。这种刺激性SCN输入的峰值活动发生在光周期的后半段,即VP分泌的每日峰值之后,延迟约4-6小时。通过各种机制的抑制性和刺激性昼夜节律输入很可能会影响皮质酮的释放。 HPA轴的这两个相反的昼夜节律控制机制共同实现了皮质酮释放中昼夜节律峰的精确计时。

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