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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Role of adenosine in behavioral state modulation: a microdialysis study in the freely moving cat.
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Role of adenosine in behavioral state modulation: a microdialysis study in the freely moving cat.

机译:腺苷在行为状态调节中的作用:在自由移动的猫中进行的微透析研究。

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摘要

There is considerable evidence to suggest that the activity of forebrain and mesopontine cholinergic neurons is intimately involved in electroencephalographic arousal. Furthermore, our previous in vitro investigation suggested that both cholinergic systems are under a powerful tonic inhibitory control by endogenous adenosine. We thus examined the in vivo effect, on electrographically defined behavioral states, of microdialysis perfusion of adenosine into the cholinergic zones of the substantia innominata of the basal forebrain and the laterodorsal tegmental nucleus of freely moving cats. Localized perfusion of adenosine into either the basal forebrain or the laterodorsal tegmental nucleus caused a marked alteration in sleep-wake architecture. Adenosine (300 microM) perfused into either the basal forebrain or laterodorsal tegmental nucleus produced a dramatic decrease in waking, to about 50% of the basal level. Perfusion into the basal forebrain resulted in a significant increase in rapid eye movement sleep, while slow wave sleep was unchanged. In contrast, adenosine perfusion into the laterodorsal tegmental nucleus produced an increase of both slow wave sleep and rapid eye movement sleep, the magnitude of which were proportional to the decrease in waking. Electroencephalographic power spectral analysis showed that adenosine perfusion into the basal forebrain increased the relative power in the delta frequency band, whereas higher frequency bands (theta, alpha, beta and gamma) showed a decrease. These data strongly support the hypothesis that adenosine might play a key role as an endogenous modulator of wakefulness and sleep. The decrease in wakefulness may be directly related to the inhibition of cholinergic neurons of the basal forebrain and the laterodorsal tegmentum. The increase in rapid eye movement sleep is a novel but robust effect whose origin, at present, is uncertain. The observation that local perfusion of adenosine into either the basal forebrain or the laterodorsal tegmental nucleus dramatically decreases wakefulness suggests that these areas might represent a major site of action of the xanthine stimulants (adenosine antagonists) found in coffee and tea.
机译:有大量证据表明,前脑和中桥蛋白胆碱能神经元的活动与脑电图唤醒密切相关。此外,我们先前的体外研究表明,两个胆碱能系统都受到内源性腺苷的强力抑制。因此,我们检查了在电学上定义的行为状态的体内影响,即腺苷微渗流灌注到前脑基底无名性胆碱能区和自由移动猫的后背背盖核的胆碱能区。腺苷向基底前脑或后嗅方被盖核的局部灌注导致睡眠觉醒结构的显着改变。腺苷(300 microM)灌注到基底前脑或后嗅的被盖核中,使醒来的能力显着下降,约为基底水平的50%。灌注至前脑基底导致快速眼动睡眠显着增加,而慢波睡眠未改变。相比之下,腺苷向后背方盖状核的灌注会增加慢波睡眠和快速眼动睡眠,两者的大小与清醒的减少成比例。脑电功率谱分析表明,腺苷向基底前脑的灌注增加了δ频段的相对功率,而较高的频段(θ,α,β和γ)则降低了。这些数据有力地支持了腺苷可能作为清醒和睡眠的内源性调节剂发挥关键作用的假设。觉醒的减少可能直接与基底前脑和后背盖膜的胆碱能神经元的抑制有关。快速眼动睡眠的增加是一种新颖的但有力的效果,目前其来源尚不确定。腺苷局部注入基底前脑或后嗅方被盖核中的观察结果显着降低了清醒度,这表明这些区域可能代表了咖啡和茶中黄嘌呤兴奋剂(腺苷拮抗剂)的主要作用部位。

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