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在大鼠中,艾司佐匹克隆促进睡眠作用的中枢神经系统部位。

Central nervous system sites of the sleep promoting effects of eszopiclone in rats.

机构信息

Research Service, V. A. Greater Los Angeles Healthcare System, Los Angeles, CA, USA.

出版信息

Neuroscience. 2011 May 5;181:67-78. doi: 10.1016/j.neuroscience.2011.03.006. Epub 2011 Mar 5.

Abstract

We examined the effects of eszopiclone (ESZ), a GABA-A receptor agonist in current clinical use as a hypnotic medication, on the activity of subcortical wake- and sleep-active neuronal populations in the rat brain. Sleep-wake states were quantified after i.p. injections of ESZ (3 and 10 mg/kg) or vehicle administered early in the dark phase, when rats are spontaneously awake. Rats were euthanized 2 h post-injection and brain tissue was processed for c-Fos protein immunoreactivity (IR) and for neurotransmitter markers. ESZ at 3 and 10 mg/kg increased time spent in non-rapid-eye-movement (nonREM) sleep, but had no significant effect on Fos-IR in GABAergic neurons in the preoptic hypothalamus that normally express c-Fos during sleep. Among wake-active cell types examined, Fos-IR in hypocretin (HCRT) neurons in the perifornical lateral hypothalamus (LH) was reduced following 3 and 10 mg/kg ESZ. At 10 mg/kg, ESZ suppressed Fos-IR in cholinergic and noncholinergic neurons in the basal forebrain and in serotonergic and nonserotonegic neurons in the dorsal raphe. Having determined that HCRT neurons were responsive to the low dose of systemic ESZ, we unilaterally perfused ESZ directly into the LH of awake rats, using reverse microdialysis. Perfusion of ESZ at 50 μM into the LH for 2 h suppressed waking-related Fos-IR in HCRT neurons, but not in nonHCRT neurons ipsilateral to the dialysis probe. Bilateral LH perfusion of ESZ at 50 μM for 2 h early in the dark phase significantly increased sleep. These findings demonstrate that sleep induction by ESZ does not require activation of GABAergic sleep-regulatory neurons in the preoptic hypothalamus, and identify suppression of HCRT neurons in the LH and suppression of basal forebrain and dorsal raphe neurons as potential mechanisms underlying the sleep-promoting effects of ESZ.

摘要

我们研究了当前临床用作催眠药物的 GABA-A 受体激动剂依佐匹克隆(ESZ)对大鼠脑内皮质下觉醒和睡眠活性神经元群体活动的影响。在黑暗期早期(当大鼠自然清醒时),通过腹腔注射 ESZ(3 和 10mg/kg)或载体后,量化睡眠-觉醒状态。注射后 2 小时处死大鼠,脑组织进行 c-Fos 蛋白免疫反应性(IR)和神经递质标志物处理。ESZ 3 和 10mg/kg 增加非快速眼动(非 REM)睡眠时间,但对正常睡眠期间表达 c-Fos 的视前下丘脑 GABA 能神经元中的 Fos-IR 没有显著影响。在检查的觉醒活性细胞类型中,外侧下丘脑(LH)近旁区的食欲素(HCRT)神经元中的 Fos-IR 在 ESZ 3 和 10mg/kg 后减少。在 10mg/kg 时,ESZ 抑制基底前脑的胆碱能和非胆碱能神经元以及中缝背核的 5-羟色胺能和非 5-羟色胺能神经元中的 Fos-IR。确定 HCRT 神经元对全身 ESZ 的低剂量有反应后,我们使用逆行微透析将 ESZ 直接单侧灌注到清醒大鼠的 LH 中。将 ESZ 以 50μM 灌注到 LH 中 2 小时会抑制与觉醒相关的 HCRT 神经元中的 Fos-IR,但不会抑制与透析探针同侧的非 HCRT 神经元。在黑暗期早期,双侧 LH 以 50μM 灌注 ESZ 2 小时会显著增加睡眠。这些发现表明,ESZ 诱导的睡眠不需要视前下丘脑 GABA 能睡眠调节神经元的激活,并且识别出 LH 中的 HCRT 神经元抑制以及基底前脑和中缝背核神经元抑制作为 ESZ 促进睡眠作用的潜在机制。

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