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Hypocretin/orexin and nociceptin/orphanin FQ coordinately regulate analgesia in a mouse model of stress-induced analgesia

机译:在小鼠应激性镇痛模型中,降钙素/尿毒蛋白和伤害感受素/孤儿蛋白FQ协同调节镇痛作用

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摘要

Stress-induced analgesia (SIA) is a key component of the defensive behavioral “fight-or-flight” response. Although the neural substrates of SIA are incompletely understood, previous studies have implicated the hypocretin/orexin (Hcrt) and nociceptin/orphanin FQ (N/OFQ) peptidergic systems in the regulation of SIA. Using immunohistochemistry in brain tissue from wild-type mice, we identified N/OFQ-containing fibers forming synaptic contacts with Hcrt neurons at both the light and electron microscopic levels. Patch clamp recordings in GFP-tagged mouse Hcrt neurons revealed that N/OFQ hyperpolarized, decreased input resistance, and blocked the firing of action potentials in Hcrt neurons. N/OFQ postsynaptic effects were consistent with opening of a G protein–regulated inwardly rectifying K+ (GIRK) channel. N/OFQ also modulated presynaptic release of GABA and glutamate onto Hcrt neurons in mouse hypothalamic slices. Orexin/ataxin-3 mice, in which the Hcrt neurons degenerate, did not exhibit SIA, although analgesia was induced by i.c.v. administration of Hcrt-1. N/OFQ blocked SIA in wild-type mice, while coadministration of Hcrt-1 overcame N/OFQ inhibition of SIA. These results establish what is, to our knowledge, a novel interaction between the N/OFQ and Hcrt systems in which the corticotropin-releasing factor and N/OFQ systems coordinately modulate the Hcrt neurons to regulate SIA.
机译:应激诱导的镇痛(SIA)是防御行为“战斗或逃跑”反应的关键组成部分。尽管对SIA的神经底物尚不完全了解,但先前的研究已经暗示了Scre的调节中存在降钙素/ orexin(Hcrt)和伤害感受素/ orphanin FQ(N / OFQ)肽能系统。使用来自野生型小鼠的脑组织中的免疫组织化学,我们确定了含有N / OFQ的纤维在光和电子显微镜下均与Hcrt神经元形成突触接触。 GFP标记的小鼠Hcrt神经元的膜片钳记录显示N / OFQ超极化,降低了输入电阻,并阻止了Hcrt神经元动作电位的发射。 N / OFQ突触后作用与G蛋白调节的内向整流K +(GIRK)通道的开放相一致。 N / OFQ还调节了小鼠下丘脑片中Hcrt神经元上GABA和谷氨酸的突触前释放。 Hcrt神经元退化的Orexin / ataxin-3小鼠虽然经i.c.v. Hcrt-1的管理。 N / OFQ阻止野生型小鼠中的SIA,而Hcrt-1的共同给药克服了SIA的N / OFQ抑制。这些结果建立了据我们所知的N / OFQ和Hcrt系统之间的新型相互作用,其中促肾上腺皮质激素释放因子和N / OFQ系统协同调节Hcrt神经元以调节SIA。

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