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orexin 系统对睡眠-疼痛生理相互作用的共同调节:一项前所未有的综述。

Coregulation of sleep-pain physiological interplay by orexin system: An unprecedented review.

机构信息

Deparment of Physiology, School of Paramedical Sciences, Torbat Heydariyeh University of Medical Sciences, Torbat Heydariyeh, Iran; Neuroscience Research Center, Torbat Heydariyeh University of Medical Sciences, Torbat Heydariyeh, Iran.

School of Dentistry Alumnus, Mashhad University of Medical Sciences, Mashhad, Iran.

出版信息

Behav Brain Res. 2020 Aug 5;391:112650. doi: 10.1016/j.bbr.2020.112650. Epub 2020 May 24.

Abstract

Accumulating evidence support the critical role of endogenous orexin system in modulation of various physiological functions. Among these, regulation of pain and wakefulness have extensively been investigated, however, by independent series of studies each focusing a distinct side. It is now well established that orexins induce potent analgesic effect via affecting their receptors within several specific brain structures. These mainly include locus coeruleus (LC), lateral paragigantocellularis (LPGi), ventral tegmental area (VTA), dorsal raphe nucleus (DRN), periaquiductal gray (PAG) and tuberomammillary nuclei (TMN). On the other hand, increased activity of orexinergic neurons enhances general wakefulness. Interestingly, a review of literature reveals that brain regions underlying orexin-mediated analgesia are most probably the site of action for orexin wake-promoting effects as well. The present study first pieces together the existing evidence supporting the rationale for the possibility of sleep-pain coregulation by orexin system and then suggests several shared mechanisms through which orexin can control the two mentioned processes. Furthermore, this study explains how imbalanced orexinergic transmission can cause progressive dysregulation of sleep-pain processing.

摘要

越来越多的证据支持内源性食欲素系统在调节各种生理功能中的关键作用。在这些功能中,疼痛和觉醒的调节已经得到了广泛的研究,但这些研究是通过独立的研究系列进行的,每个研究都侧重于一个不同的方面。现在已经确定,食欲素通过影响其在几个特定脑结构内的受体,产生强烈的镇痛作用。这些脑结构主要包括蓝斑(LC)、外侧巨细胞旁核(LPGi)、腹侧被盖区(VTA)、中缝背核(DRN)、导水管周围灰质(PAG)和乳头体核(TMN)。另一方面,食欲素能神经元活性的增加增强了总体觉醒。有趣的是,文献回顾表明,食欲素介导的镇痛作用的脑区很可能也是食欲素促进觉醒作用的作用部位。本研究首先整理了现有的证据,支持了食欲素系统可能对睡眠-疼痛进行共同调节的原理,然后提出了几个共享的机制,通过这些机制,食欲素可以控制这两个过程。此外,本研究还解释了不平衡的食欲素传递如何导致睡眠-疼痛处理的进行性失调。

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