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首页> 外文期刊>The European Journal of Neuroscience >Orexin (hypocretin)/dynorphin neurons control GABAergic inputs to tuberomammillary neurons.
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Orexin (hypocretin)/dynorphin neurons control GABAergic inputs to tuberomammillary neurons.

机译:食欲素(hypocretin)/强啡肽神经元控制结核性乳腺神经元的GABA能输入。

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摘要

Abstract High activity of the histaminergic neurons in the tuberomammillary (TM) nucleus increases wakefulness, and their firing rate is highest during waking and lowest during rapid eye movement sleep. The TM neurons receive a prominent innervation from sleep-active gamma-aminobutyric acidergic (GABAergic) neurons in the ventrolateral preoptic nucleus, which inhibits them during sleep. They also receive an excitatory input from the orexin- and dynorphin-containing neurons in the lateral hypothalamus, which are critically involved in sleep regulation and whose dysfunction causes narcolepsy. We have used intracellular recordings and immunohistochemistry to study if orexin neurons exert control over the GABAergic inputs to TM neurons in rat hypothalamic slices. Dynorphin suppressed GABAergic inputs and thus disinhibits the TM neurons, acting in concert with orexin to increase the excitability of these neurons. In contrast, both orexin-A and orexin-B markedly increased the frequency of GABAergic potentials, while co-application of orexin and dynorphin produced responses similar to dynorphin alone. Thus, orexins excite TM neurons directly and by disinhibition, gated by dynorphin. These data might explain some of the neuropathology of narcolepsy.
机译:摘要肺结核(TM)核中组胺能神经元的高活性增加了清醒度,清醒时其放电率最高,快速眼动睡眠时其放电率最低。 TM神经元从视外侧腹前视神经核中的睡眠活动性γ-氨基丁酸能(GABAergic)神经元获得显着的神经支配,从而在睡眠期间抑制它们。他们还从下丘脑外侧的含orexin和dynorphin的神经元中获得兴奋性输入,这些神经元与睡眠调节至关重要,功能障碍会导致发作性睡病。我们已经使用细胞内记录和免疫组化研究了orexin神经元是否对大鼠下丘脑片中TM神经元的GABA能输入施加控制。强啡肽抑制GABA能输入,因此抑制TM神经元,与orexin协同作用以增加这些神经元的兴奋性。相反,orexin-A和orexin-B均显着增加了GABA能电位的频率,而同时应用orexin和dynorphin产生的反应与单独使用dynorphin相似。因此,食欲肽通过强啡肽控制的去抑制作用直接刺激TM神经元。这些数据可能解释了发作性睡病的某些神经病理学。

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