首页> 美国卫生研究院文献>The Journal of Neuroscience >c-Fos Expression in GABAergic Serotonergic and Other Neurons of the Pontomedullary Reticular Formation and Raphe after Paradoxical Sleep Deprivation and Recovery
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c-Fos Expression in GABAergic Serotonergic and Other Neurons of the Pontomedullary Reticular Formation and Raphe after Paradoxical Sleep Deprivation and Recovery

机译:矛盾的睡眠剥夺和恢复后GABA能血清素能和其他神经元的网状网状结构和网状细胞中的c-Fos表达

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摘要

The brainstem contains the neural systems that are necessary for the generation of the state of paradoxical sleep (PS) and accompanying muscle atonia. Important for its initiation are the pontomesencephalic cholinergic neurons that project into the pontomedullary reticular formation and that we have recently shown increase c-Fos expression as a reflection of neural activity in association with PS rebound after deprivation in rats (). As a continuation, we examined in the present study c-Fos expression in the pontomedullary reticular and raphe neurons, including importantly GABAergic neurons [immunostained for glutamic acid decarboxylase (GAD)] and serotonergic neurons [immunostained for serotonin (Ser)].Numbers of single-labeled c-Fos+ neurons were significantly increased with PS rebound only in the pars oralis of the pontine reticular nuclei (PnO), where numbers of GAD+/c-Fos+ neurons were conversely significantly decreased. c-Fos+ neurons were positively correlated with PS, whereas GAD+/c-Fos+ neurons were negatively correlated with PS, suggesting that disinhibition of reticular neurons in the PnO from locally projecting GABAergic neurons may be important in the generation of PS. In contrast, through the caudal pons and medulla, GAD+/c-Fos+ cells were increased with PS rebound, covaried positively with PS and negatively with the electromyogram (EMG). In the raphe pallidus-obscurus, Ser+/c-Fos+ neurons were positively correlated, in a reciprocal manner to GAD+/c-Fos+ cells, with EMG, suggesting that disfacilitation by removal of a serotonergic influence and inhibition by imposition of a GABAergic influence within the lower brainstem and spinal cord may be important in the development of muscle atonia accompanying PS.
机译:脑干包含产生悖论性睡眠(PS)状态和伴随的肌肉无力状态所必需的神经系统。对它的启动很重要的是突入桥状网状网状结构的脑桥脑胆碱能神经元,并且我们最近显示了c-Fos表达的增加反映了大鼠剥夺后与PS反弹相关的神经活动。作为继续,我们在本研究中检查了椎弓状网状和网状神经元中c-Fos的表达,包括重要的GABA能神经元[谷氨酸脱羧酶(GAD)免疫接种]和血清素能神经元[5-羟色胺(Ser)免疫接种]。单标记的c-Fos +神经元仅在桥脑网状核(PnO)的口部出现PS反弹而明显增加,而GAD + / c-Fos +神经元的数量则明显减少。 c-Fos +神经元与PS呈正相关,而GAD + / c-Fos +神经元与PS呈负相关,表明从局部投射的GABA能神经元中PnO中网状神经元的抑制作用可能对PS的产生很重要。相反,通过尾桥和延髓,GAD + / c-Fos +细胞随PS反弹而增加,与PS呈正相关,而与肌电图(EMG)呈负相关。在睑板苍白-闭锁中,Ser + / c-Fos +神经元与GAD + / c-Fos +细胞呈正相关,与EMG呈正相关,这表明通过去除血清素能影响而造成的削弱和通过施加GABA能影响来抑制下脑干和脊髓可能在伴随PS的肌肉无力发展中起重要作用。

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