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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Corticotropic-releasing hormone and serotonin interact in the human brainstem: behavioral implications.
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Corticotropic-releasing hormone and serotonin interact in the human brainstem: behavioral implications.

机译:促肾上腺皮质激素释放激素和5-羟色胺在人脑干中相互作用:行为学意义。

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The objective of this human post mortem study was to determine whether neurons which synthesize corticotropic-releasing hormone and serotonin form circuits implicated in the pathophysiology of major depression and suicide. For the first time, a sensitive, dual immunocytochemical procedure was used to identify circuits formed by corticotropic-releasing hormone-synthesizing and serotonergic cell groups. Corticotropic-releasing hormone-immunoreactive varicose fibers and puncta with morphological characteristics of terminals were labeled in the midline raphe, periventricular gray and pontine parabrachial complex, on single-labeled tissues processed immunocytochemically with a rabbit antibody to rat/human corticotropic-releasing hormone. Presumptive synaptic interactions with monoaminergic neurons were demonstrated with dual labeling techniques. Corticotropic-releasing hormone-immunoreactive terminals apposed neuronal somata and primary dendrites of serotonergic neurons in the pontine raphe. Serotonergic neurons were immunolabeled with a mouse antibody to phenylalanine hydroxylase, an enzyme with substantial sequence homology to tryptophan hydroxylase. Interactions in the lateral parabrachial nucleus were suggested by precise overlap of corticotropic-releasing hormone and serotonergic terminal fields. Corticotropic-releasing hormone projections were confirmed to noradrenergic neurons containing neuromelanin in the locus ceruleus. Maps of corticotropic-releasing hormone fiber trajectories suggest that these pathways may derive from the forebrain and, locally, from the human homologue of Barrington's nucleus--a neurochemically specialized division of the laterodorsal tegmental complex. Chemosensory functions were predicted by novel evidence for corticotropic-releasing hormone- and monoaminergic neurovascular and subependymal fiber plexuses. In conclusion, corticotropic-releasing hormone may influence the activity of two major monoaminergic cell systems implicated in the stress-diathesis model of mental illness, through neural and humoral mechanisms.
机译:这项人类验尸研究的目的是确定合成促皮质激素和5-羟色胺的神经元是否形成与重度抑郁和自杀的病理生理有关的回路。首次使用敏感的双重免疫细胞化学方法鉴定由促皮质激素释放的激素合成和血清素能细胞群形成的回路。皮质的释放激素的免疫反应性静脉曲张纤维和具有末端形态特征的泪点在中线网眼,脑室灰色和桥臂旁臂复合物中标记,在单标记组织上用兔抗人/人类皮质释放激素的抗体进行免疫细胞化学处理。用双标记技术证明了与单胺能神经元的突触相互作用。促皮质激素释放激素免疫反应性末端在桥脑中并列神经元躯体和血清素能神经元的初级树突。用抗苯丙氨酸羟化酶的小鼠抗体对血清素能神经元进行免疫标记,苯丙氨酸羟化酶与色氨酸羟化酶具有基本的序列同源性。促皮质激素释放激素和血清素能终末域的精确重叠表明了臂旁臂旁核的相互作用。促肾上腺皮质神经元中含有神经性黑色素的去甲肾上腺素能神经元释放促皮质激素。促肾上腺皮质激素释放轨迹的地图表明,这些途径可能源自前脑,也可能源自于人的Barrington核同系物,后者是后背被膜复合体的神经化学专长。通过皮质激素释放和单胺能神经血管和室管膜下纤维丛的新证据预测化学感觉功能。总之,促肾上腺皮质激素释放可能通过神经和体液机制影响与精神疾病的应激素质模型有关的两个主要的单胺能细胞系统的活性。

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