Urbain Nadia, Creamer Katherine, Debonnel Guy
Department of Psychiatry, McGill University, Montréal, Québec, Canada.
J Physiol. 2006 Jun 15;573(Pt 3):679-95. doi: 10.1113/jphysiol.2006.108514. Epub 2006 Apr 13.
Through their widespread projections to the entire brain, dorsal raphe cells participate in many physiological functions and are associated with neuropsychiatric disorders. In previous studies, the width of action potentials was used as a criterion to identify putative serotonergic neurons, and to demonstrate that cells with broad spikes were more active in wakefulness, slowed down their activity in slow wave sleep and became virtually silent during paradoxical sleep. However, recent studies reported that about half of these presumed serotonergic cells were not immunoreactive for tyrosine hydroxylase. Here, we re-examine the electrophysiological properties of dorsal raphe cells across the sleep-wake cycle in rats by the extracellular recording of a large sample of single units (n = 770). We identified two major types of cells, which differ in spike waveform: a first population characterized by broad, mostly positive spikes, and a second one displaying symmetrical positive-negative spikes with a large distribution of spike durations (0.6-3.2 ms). Although we found classical broad-spike cells that were more active in wakefulness, we also found that about one-third of these cells increased or did not change their firing rate during sleep compared with wakefulness. Moreover, 62% of the latter cells were active in paradoxical sleep when most of raphe cells were silent. Such a diversity in the neuronal firing behaviour is important in the light of the recent controversy regarding the neurochemical identity of dorsal raphe cells exhibiting broad spikes. Our results also suggest that the dorsal raphe contains subpopulations of neurons with reciprocal activity across the sleep-wake cycle.
通过广泛投射至整个大脑,中缝背核细胞参与多种生理功能,并与神经精神疾病相关。在以往研究中,动作电位的宽度被用作识别假定的5-羟色胺能神经元的标准,并用以证明具有宽峰电位的细胞在清醒时更为活跃,在慢波睡眠时活动减缓,而在异相睡眠时几乎沉默。然而,最近的研究报告称,这些假定的5-羟色胺能细胞中约有一半对酪氨酸羟化酶无免疫反应性。在此,我们通过对大量单个单元(n = 770)进行细胞外记录,重新研究大鼠在睡眠-清醒周期中中缝背核细胞的电生理特性。我们识别出两种主要的细胞类型,它们的峰电位波形不同:第一种细胞群的特征是宽峰电位,大多为正向峰电位;第二种细胞群则呈现对称的正负向峰电位,峰电位持续时间分布范围较大(0.6 - 3.2毫秒)。虽然我们发现了在清醒时更为活跃的典型宽峰电位细胞,但我们也发现,与清醒状态相比,这些细胞中约有三分之一在睡眠期间放电频率增加或没有变化。此外,当大多数中缝核细胞沉默时,后一种细胞中有62%在异相睡眠时活跃。鉴于最近关于表现出宽峰电位的中缝背核细胞的神经化学特性存在争议,这种神经元放电行为的多样性具有重要意义。我们的结果还表明,中缝背核包含在睡眠-清醒周期中具有相反活动的神经元亚群。