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Orexin/Hypocretin: a neuropeptide at the interface of sleep, energy homeostasis, and reward system.

机译:Orexin / Hypocretin:睡眠,能量稳态和奖励系统界面的神经肽。

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Recent studies have implicated the orexin system as a critical regulator of sleep/wake states as well as feeding behavior and reward processes. Orexin deficiency results in narcolepsy in humans, dogs, and rodents, suggesting that the orexin system is particularly important for maintenance of wakefulness. In addition, orexin deficiency also cause abnormalities in energy homeostasis and reward systems. Orexin activates waking active monoaminergic and cholinergic neurons in the hypothalamus and brainstem regions to maintain a long, consolidated waking period. Orexin neurons receive abundant input from the limbic system. Orexin neurons also have reciprocal links with the hypothalamic arcuate nucleus, which regulates feeding. Moreover, the responsiveness of orexin neurons to peripheral metabolic cues, such as leptin and glucose, suggest that these neurons have important role as a link between the energy homeostasis and vigilance states. Orexin neurons also have a link with the dopaminergic reward system in the ventral tegmental nucleus. These findings suggest that the orexin system interacts with systems that regulate emotion, reward, and energy homeostasis to maintain proper vigilance states. Therefore, this system may be a potentially important therapeutic target for treatment of sleep disorder, obesity, emotional stress, and addiction.
机译:最近的研究表明,食欲素系统是睡眠/苏醒状态以及进食行为和奖励过程的重要调节者。食欲素缺乏会导致人,狗和啮齿动物发作性睡病,这表明食欲素系统对于保持觉醒特别重要。此外,食欲素缺乏还会引起能量稳态和奖励系统异常。食欲素激活下丘脑和脑干区域中醒着的活跃的单胺能和胆碱能神经元,以维持较长的巩固醒觉期。食欲素神经元从边缘系统接收大量输入。食欲素神经元也与下丘脑弓形核有相互联系,后者调节进食。此外,食欲素神经元对周围代谢线索(如瘦素和葡萄糖)的反应性表明,这些神经元作为能量稳态和警觉状态之间的联系具有重要作用。食欲素神经元还与腹侧被盖核中的多巴胺能奖励系统有关。这些发现表明,食欲素系统与调节情绪,奖励和能量稳态的系统相互作用,以维持适当的警觉状态。因此,该系统可能是治疗睡眠障碍,肥胖,情绪紧张和成瘾的潜在重要治疗靶标。

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