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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >NITRERGIC VENTRO-MEDIAL MEDULLARY NEURONS ACTIVATED DURING CHOLINERGICALLY INDUCED ACTIVE (RAPID EYE MOVEMENT) SLEEP IN THE CAT
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NITRERGIC VENTRO-MEDIAL MEDULLARY NEURONS ACTIVATED DURING CHOLINERGICALLY INDUCED ACTIVE (RAPID EYE MOVEMENT) SLEEP IN THE CAT

机译:胆碱诱发猫的主动(快速眼动)睡眠期间激活的硝化腹膜中枢神经元神经元

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The rostral ventro-medial medullary reticular formation is a complex structure that is involved with a variety of motor functions. It contains glycinergic neurons that are activated during active (rapid eye movement (REM)) sleep (AS); these neurons appear to be responsible for the postsynaptic inhibition of motoneurons that occurs during this state. We have reported that neurons in this same region contain nitric oxide (NO) synthase and that they innervate brainstem motor pools. In the present study we examined the c-fos expression of these neurons after carbachol-induced active sleep (C-AS). Three control and four experimental cats were employed to identify c-fos expressing nitrergic neurons using immunocytochemical techniques to detect the Fos protein together with neuronal nitric oxide synthase (nNOS) or nicotinamide adenine dinucleotide phosphate (NADPH)-diaph-orase activity. The classical neurotransmitter content of the nitrergic cells in this region was examined through the combination of immunocytochemical techniques for the detection of glutamate, glycine, choline acetyltransferase (ChAT), tyrosine hydroxilase (TH) or GABA together with nNOS. During C-AS, there was a 1074% increase in the number of nitrergic neurons that expressed c-fos. These neurons did not contain glycine, ChAT, TH or GABA, but a subpopulation (15%) of them displayed glutamate-like immunoreactivity. Therefore, some of these neurons contain both an excitatory neurotransmitter (glutamate) and an excitatory neuromodulator (NO); the neurotransmitter content of the rest of them remains to be determined. Because some of the nitrergic neurons innervate brainstem motoneurons it is possible that they participate in the generation of tonic and excitatory phasic motor events that occur during AS. We also suggest that these nitrergic neurons may be involved in autonomic regulation during this state. In addition, because NO has trophic effects on target neurons, the present findings represent the first, albeit indirect, evidence for a possible trophic function of this nature during AS.
机译:鼻翼腹内侧髓质网状结构是复杂的结构,涉及多种运动功能。它包含在主动(快速眼动(REM))睡眠(AS)期间激活的甘氨酸神经元。这些神经元似乎负责这种状态下发生的运动神经元的突触后抑制。我们已经报道了在同一区域中的神经元包含一氧化氮(NO)合酶,并且它们支配脑干运动池。在本研究中,我们检查了卡巴胆碱诱导的主动睡眠(C-AS)后这些神经元的c-fos表达。三只对照和四只实验猫被用于使用免疫细胞化学技术识别表达c-fos的硝化神经元,以检测Fos蛋白以及神经元一氧化氮合酶(nNOS)或烟酰胺腺嘌呤二核苷酸磷酸(NADPH)-膜-orase活性。通过免疫细胞化学技术结合检测谷氨酸,甘氨酸,胆碱乙酰基转移酶(ChAT),酪氨酸羟化酶(TH)或GABA与nNOS的结合,检查了该区域硝化细胞经典的神经递质含量。在C-AS期间,表达c-fos的硝化神经元数量增加了1074%。这些神经元不含甘氨酸,ChAT,TH或GABA,但其中的一小部分(15%)显示出类似谷氨酸的免疫反应性。因此,其中一些神经元既包含兴奋性神经递质(谷氨酸),又包含兴奋性神经调节剂(NO)。它们中其余的神经递质含量仍有待确定。由于某些亚硝酸盐神经元支配脑干运动神经元,因此它们可能参与AS期间发生的强直性和兴奋性阶段性运动事件的产生。我们还建议,在这种状态下,这些亚硝化神经元可能参与了自主调节。此外,由于NO对靶神经元有营养作用,因此本研究结果首次(尽管是间接的)代表了AS期间这种性质的可能营养功能。

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