首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Hypocretin/orexin and nociceptin/orphanin FQ coordinately regulate analgesia in a mouse model of stress-induced analgesia.
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Hypocretin/orexin and nociceptin/orphanin FQ coordinately regulate analgesia in a mouse model of stress-induced analgesia.

机译:下丘脑分泌素/食欲素和伤害感受素/孤儿素 FQ 在应激诱导镇痛小鼠模型中协调调节镇痛。

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摘要

Stress-induced analgesia (SIA) is a key component of the defensive behavioral fight-or-flight 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:应激诱导镇痛(SIA)是防御性行为的关键组成部分,但尚不完全清楚,既往研究已将下丘脑分泌素/食欲素(Hcrt)和伤害感受素/孤儿素FQ(N/OFQ)肽能系统与SIA的调控有关。利用野生型小鼠脑组织中的免疫组织化学,我们在光和电子微观水平上鉴定了与 Hcrt 神经元形成突触接触的含 N/OFQ 的纤维。GFP标记的小鼠Hrct神经元中的膜片钳记录显示,N/OFQ超极化,降低了输入电阻,并阻断了Hlrt神经元中动作电位的放电。N/OFQ 突触后效应与 G 蛋白调节的内向整流 K+ (GIRK) 通道的开放一致。N/OFQ 还调节小鼠下丘脑切片中 GABA 和谷氨酸对 Hcrt 神经元的突触前释放。食欲素/共济失调蛋白-3小鼠,其中Hrrt神经元退化,没有表现出SIA,尽管I.C.v.施用Hcrt-1诱导镇痛。 N/OFQ 阻断了野生型小鼠的 SIA,而 Hcrt-1 的共同给药克服了 N/OFQ 对 SIA 的抑制。据我们所知,这些结果确定了 N/OFQ 和 Hcrt 系统之间的新相互作用,其中促肾上腺皮质激素释放因子和 N/OFQ 系统协调调节 Hcrt 神经元以调节 SIA。

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