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The orexigenic effect of orexin-A revisited: Dependence of an intact growth hormone axis

机译:再次探讨orexin-A的致孕作用:完整生长激素轴的依赖性

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摘要

Fifteen years ago orexins were identified as central regulators of energy homeostasis. Since then, that concept has evolved considerably and orexins are currently considered, besides orexigenic neuropeptides, key modulators of sleep-wake cycle and neuroendocrine function. Little is known, however, about the effect of the neuroendocrine milieu on orexins' effects on energy balance. We therefore investigated whether hypothalamic-pituitary axes have a role in the central orexigenic action of orexin A (OX-A) by centrally injecting hypophysectomized, adrenalectomized, gonadectomized (male and female), hypothyroid, and GH-deficient dwarf rats with OX-A. Our data showed that the orexigenic effect of OX-A is fully maintained in adrenalectomized and gonadectomized (females and males) rats, slightly reduced in hypothyroid rats, and totally abolished in hypophysectomized and dwarf rats when compared with their respective vehicle-treated controls. Of note, loss of the OX-A effect on feeding was associated with a blunted OX-A-induced increase in the expression of either neuropeptide Y or its putative regulator, the transcription factor cAMP response-element binding protein, as well as its phosphorylated form, in the arcuate nucleus of the hypothalamus of hypophysectomized and dwarf rats. Overall, this evidence suggests that the orexigenic action of OX-A depends on an intact GH axis and that this neuroendocrine feedback loop may be of interest in the understanding of orexins action on energy balance and GH deficiency.
机译:十五年前,食欲素被确定为能量稳态的中央调节器。从那时起,这个概念有了长足的发展,除致食性神经肽,睡眠觉醒周期的关键调节剂和神经内分泌功能外,目前还考虑使用食欲素。然而,关于神经内分泌环境对食欲素对能量平衡的影响知之甚少。因此,我们通过用OX-A集中注射下垂体切除的,肾上腺切除的,性腺切除的(雄性和雌性),甲状腺功能低下和GH缺乏的矮人大鼠,研究了下丘脑-垂体轴是否在orexin A(OX-A)的中央致病作用中起作用。我们的数据表明,与各自的媒介物治疗对照相比,在肾上腺切除和性腺切除(雌性和雄性)大鼠中,OX-A的致癌作用得以完全维持,在甲状腺功能减退的大鼠中则略有减少,而在hyphyphytomtomized和矮化的大鼠中则完全废除了。值得注意的是,OX-A对进食的影响的丧失与OX-A引起的神经肽Y或其假定调节子,转录因子cAMP反应元件结合蛋白及其磷酸化表达的减弱有关。形式是在切除后切除的侏儒大鼠的下丘脑弓状核中。总体而言,该证据表明OX-A的致食作用取决于完整的GH轴,并且这种神经内分泌反馈回路可能对了解食欲素对能量平衡和GH缺乏的作用感兴趣。

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