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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Extracellular histamine levels in the feline preoptic/anterior hypothalamic area during natural sleep-wakefulness and prolonged wakefulness: An in vivo microdialysis study.
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Extracellular histamine levels in the feline preoptic/anterior hypothalamic area during natural sleep-wakefulness and prolonged wakefulness: An in vivo microdialysis study.

机译:自然睡眠-清醒和长时间清醒期间猫的视前/下丘脑前区的细胞外组胺水平:一项体内微透析研究。

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摘要

Increased activity of the histaminergic neurons of the posterior hypothalamus has been implicated in the facilitation of behavioral wakefulness. Recent evidence of reciprocal projections between the sleep-active neurons of the preoptic/anterior hypothalamus and the histaminergic neurons of the tuberomammillary nucleus suggests that histaminergic innervation of the preoptic/anterior hypothalamic area may be of particular importance in the wakefulness-promoting properties of histamine. To test this possibility, we used microdialysis sample collection in the preoptic/anterior hypothalamic area of cats during natural sleep-wakefulness cycles, 6 h of sleep deprivation induced by gentle handling/playing, and recovery sleep. Samples were analyzed by a sensitive radioenzymatic assay. Mean basal levels of histamine in microdialysate during periods of wakefulness (1.155+/-0.225 pg/&mgr;l) did not vary during the 6 h of sleep deprivation. However, during the different sleep states, dramatic changes were observed in the extracellular histamine levels of preoptic/anterior hypothalamic area: wakefulness>non-rapid eye movement sleep>rapid eye movement sleep. Levels of histamine during rapid eye movement sleep were lowest (0.245+/-0.032 pg/&mgr;l), being significantly lower than levels during non-rapid eye movement sleep (0.395+/-0.081 pg/&mgr;l) and being only 21% of wakefulness levels.This pattern of preoptic/anterior hypothalamic area extracellular histamine levels across the sleep-wakefulness cycle closely resembles the reported single unit activity of histaminergic neurons. However, the invariance of histamine levels during sleep deprivation suggests that changes in histamine level do not relay information about sleep drive to the sleep-promoting neurons of the preoptic/anterior hypothalamic area.
机译:下丘脑后部的组胺能神经元活动的增加与行为觉醒的促进有关。最近的证据表明,视前/下丘脑的睡眠活动神经元与结核母核的组胺能神经元之间存在相互预测,这表明视神经/前下丘脑区的组胺能神经支配在促进组胺的觉醒特性方面可能特别重要。为了测试这种可能性,我们在自然的睡眠-清醒周期,温和的操作/玩耍引起的6小时睡眠剥夺以及恢复睡眠的过程中,使用了猫的光透析前/下丘脑前区的微透析样品收集。通过灵敏的放射性酶分析法分析样品。在清醒期间,微透析液中组胺的平均基础水平(1.155 +/- 0.225 pg / mg)在睡眠剥夺的6小时内没有变化。然而,在不同的睡眠状态期间,在视前/下丘脑前区域的细胞外组胺水平观察到了显着变化:清醒>快速眼动睡眠>快速眼动睡眠。快速眼动睡眠期间的组胺水平最低(0.245 +/- 0.032 pg / mg),明显低于非快速眼动睡眠(0.395 +/- 0.081 pg / mg)的水平21%的清醒水平。整个睡眠-清醒周期的视前/下丘脑前区细胞外组胺水平的这种模式与组胺能神经元的单个单位活动非常相似。但是,睡眠剥夺期间组胺水平的不变性表明,组胺水平的变化不会将关于睡眠驱动的信息传递给视前/下丘脑前区的促睡眠神经元。

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