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Orexin actions in hypothalamic paraventricular nucleus: physiological consequences and cellular correlates.

机译:食欲素在下丘脑室旁核中的作用:生理后果和细胞相关性。

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Orexinergic neurons originating in the perifornical, lateral hypothalamus project to numerous brain sites including neuroendocrine centers known to be important in the physiologic response to stress. Those projections suggest an action of endogenous orexin on adrenocorticotropin (ACTH) release, either by neuromodulatory effects in the paraventricular nucleus (PVN), or by neuroendocrine actions in the pituitary gland following release into the median eminence. We sought to determine if exogenously applied orexin A might act in the brain to alter ACTH release and to determine if a site of action in the hypothalamic paraventricular nucleus could be identified. Cerebroventricular administration of orexin A in conscious male rats resulted in a dose-related elevation in circulating ACTH levels. At 30 min post-infusion, ACTH levels were elevated 2.5-fold by the low dose of orexin A (0.3 nmol), 5.7-fold by the middle dose tested (1.0 nmol), and 7.5-fold by the highest dose tested (3.0 nmol). Pretreatment with a CRH-antagonist (i.v.) blocked the ability of i.c.v. administered orexin A to activate the hypothalamo-pituitary-adrenal (HPA) axis. Bath application of orexin A in hypothalamic slice preparations resulted in depolarizations (8.0+/-0.6 mV), accompanied by increases in spike frequency in identified magno- and parvocellular neurons in the PVN. Our data suggest a potential role for endogenous orexin in the hypothalamic regulation of stress hormone secretion.
机译:起源于腹膜旁外侧下丘脑的食欲能神经元投射到许多大脑部位,包括已知对应激的生理反应很重要的神经内分泌中心。这些预测表明内源性食欲素对肾上腺皮质激素(ACTH)释放的作用,可能是通过脑室旁核(PVN)的神经调节作用,或者是释放至正中隆起后垂体腺体的神经内分泌作用。我们试图确定外源性食欲素A是否可能在大脑中起作用以改变ACTH释放,并确定是否可以确定下丘脑室旁核中的作用部位。在有意识的雄性大鼠中脑室内服用orexin A导致循环ACTH水平呈剂量相关升高。输注后30分钟,低剂量的orexin A(0.3 nmol)使ACTH水平升高2.5倍,中等剂量(1.0 nmol)升高5.7倍,最高剂量(3.0 nmol)升高7.5倍nmol)。用CRH拮抗剂(i.v.)预处理会阻断i.c.v.给予orexin A激活下丘脑-垂体-肾上腺(HPA)轴。在下丘脑切片制剂中食入Orexin A会导致去极化(8.0 +/- 0.6 mV),并伴随着PVN中已确定的巨细胞和小细胞神经元的尖峰频率增加。我们的数据表明内源性食欲肽在下丘脑调节应激激素分泌中的潜在作用。

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