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代谢型谷氨酸受体2(mGluR2)的阻断通过警觉状态转换调节觉醒:来自啮齿动物睡眠-觉醒脑电图的证据。

Blockade of the metabotropic glutamate (mGluR2) modulates arousal through vigilance states transitions: evidence from sleep-wake EEG in rodents.

作者信息

Ahnaou A, Ver Donck L, Drinkenburg W H I M

机构信息

Department of Neurosciences, Janssen Research & Development, A Division of Janssen Pharmaceutica NV, Turnhoutseweg 30, B-2340 Beerse, Belgium.

Department of Neurosciences, Janssen Research & Development, A Division of Janssen Pharmaceutica NV, Turnhoutseweg 30, B-2340 Beerse, Belgium.

出版信息

Behav Brain Res. 2014 Aug 15;270:56-67. doi: 10.1016/j.bbr.2014.05.003. Epub 2014 May 10.

Abstract

Accumulating data continue to support the therapeutic potential of glutamate metabotropic (mGluR2) receptors for treatment of psychiatric disorders such as depression, anxiety and schizophrenia. Glutamate neurotransmission is an integral component of sleep-wake mechanisms, which have translational relevance to assess on-target activity of drugs. Here, we investigated the influence of mGluR2 inactivation upon sleep-wake electroencephalogram (EEG) in rodents. Rats were administered with vehicle, the specific mGluR2 antagonist LY341495 (2.5, 5, 10mg/kg) or negative allosteric modulator (NAM) Ro-4491533 (2.5, 10 and 40 mg/kg) at lights onset. mGluR2 (-/-) mice were used to confirm the selectivity of functional response. Both LY341495 and Ro-4491533 induced an immediate and endured desynchronized cortical activity during 3-6h associated with enhanced theta and gamma oscillations and depressed slow oscillations during sleep. The arousal-promoting effect is consistent with the marked lengthening of sleep onset latency, an increased number of state transitions from light sleep to waking and the gradual increase in homeostatic compensatory sleep. The arousal response to mGluR2 blockade was not accompanied by sharp rebound hypersomnolence as found with the classical psycho-stimulant amphetamine. mGluR2 (-/-) mice and their WT littermates exhibited similar sleep-wake phenotype, while Ro-4491533 (40 mg/kg) enhanced waking associated with increased locomotor activity and body temperature in WT but not in mGluR2 (-/-) mice, which confirm the role of mGluR2 inactivation in the arousal response. Our results lend support for a role of mGluR2 blockade in promoting cortical arousal associated with theta/gamma oscillations as well as high thresholds transitions from sleep to waking.

摘要

越来越多的数据持续支持代谢型谷氨酸(mGluR2)受体在治疗抑郁症、焦虑症和精神分裂症等精神疾病方面的治疗潜力。谷氨酸能神经传递是睡眠-觉醒机制的一个组成部分,这对于评估药物的靶向活性具有转化相关性。在此,我们研究了mGluR2失活对啮齿动物睡眠-觉醒脑电图(EEG)的影响。在光照开始时,给大鼠注射溶剂、特异性mGluR2拮抗剂LY341495(2.5、5、10mg/kg)或负变构调节剂(NAM)Ro-4491533(2.5、10和40mg/kg)。使用mGluR2(-/-)小鼠来确认功能反应的选择性。LY341495和Ro-4491533均在3-6小时内诱导立即且持久的皮质去同步化活动,这与睡眠期间θ波和γ波振荡增强以及慢波振荡减弱有关。促觉醒作用与睡眠起始潜伏期显著延长、从浅睡眠到觉醒的状态转换次数增加以及稳态代偿性睡眠逐渐增加一致。对mGluR2阻断的觉醒反应不像经典精神兴奋剂苯丙胺那样伴有急剧的反弹性嗜睡。mGluR2(-/-)小鼠及其野生型同窝小鼠表现出相似的睡眠-觉醒表型,而Ro-4491533(40mg/kg)在野生型小鼠中增强觉醒并伴有运动活动和体温升高,但在mGluR2(-/-)小鼠中未出现这种情况,这证实了mGluR2失活在觉醒反应中的作用。我们的结果支持mGluR2阻断在促进与θ/γ波振荡相关的皮质觉醒以及从睡眠到觉醒的高阈值转换中所起的作用。

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