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大鼠下丘脑室旁催产素神经元光遗传刺激后腰椎脊髓深层肽能神经元的在体电生理学。

In Vivo Electrophysiology of Peptidergic Neurons in Deep Layers of the Lumbar Spinal Cord after Optogenetic Stimulation of Hypothalamic Paraventricular Oxytocin Neurons in Rats.

机构信息

Department of Applied Pharmacology, Faculty of Pharmaceutical Sciences, University of Toyama, Toyama 930-0194, Japan.

Department of Biological Sciences, Faculty of Science, Kanagawa University, Hiratsuka, Kanagawa 259-1293, Japan.

出版信息

Int J Mol Sci. 2021 Mar 26;22(7):3400. doi: 10.3390/ijms22073400.

Abstract

The spinal ejaculation generator (SEG) is located in the central gray (lamina X) of the rat lumbar spinal cord and plays a pivotal role in the ejaculatory reflex. We recently reported that SEG neurons express the oxytocin receptor and are activated by oxytocin projections from the paraventricular nucleus of hypothalamus (PVH). However, it is unknown whether the SEG responds to oxytocin in vivo. In this study, we analyzed the characteristics of the brain-spinal cord neural circuit that controls male sexual function using a newly developed in vivo electrophysiological technique. Optogenetic stimulation of the PVH of rats expressing channel rhodopsin under the oxytocin receptor promoter increased the spontaneous firing of most lamina X SEG neurons. This is the first demonstration of the in vivo electrical response from the deeper (lamina X) neurons in the spinal cord. Furthermore, we succeeded in the in vivo whole-cell recordings of lamina X neurons. In vivo whole-cell recordings may reveal the features of lamina X SEG neurons, including differences in neurotransmitters and response to stimulation. Taken together, these results suggest that in vivo electrophysiological stimulation can elucidate the neurophysiological response of a variety of spinal neurons during male sexual behavior.

摘要

脊髓射精发生器 (SEG) 位于大鼠腰骶脊髓的中央灰色区域 (X 层),在射精反射中起着关键作用。我们最近报道称,SEG 神经元表达催产素受体,并被来自下丘脑室旁核 (PVH) 的催产素投射激活。然而,尚不清楚 SEG 是否在体内对催产素做出反应。在这项研究中,我们使用新开发的体内电生理技术分析了控制男性性功能的脑脊髓神经回路的特征。在催产素受体启动子下表达通道视紫红质的大鼠 PVH 的光遗传学刺激增加了大多数 X 层 SEG 神经元的自发放电。这是首次证明来自脊髓较深部位(X 层)神经元的体内电反应。此外,我们成功地进行了 X 层神经元的体内全细胞记录。体内全细胞记录可能揭示 X 层 SEG 神经元的特征,包括神经递质的差异和对刺激的反应。总之,这些结果表明,体内电生理刺激可以阐明雄性性行为过程中各种脊髓神经元的神经生理反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d27/8036474/fb909b7eb64d/ijms-22-03400-g001.jpg

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