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传出性前庭神经元在体外表现出均匀的放电输出,但突触输入分布具有异质性。

Efferent Vestibular Neurons Show Homogenous Discharge Output But Heterogeneous Synaptic Input Profile In Vitro.

作者信息

Mathews Miranda A, Murray Andrew, Wijesinghe Rajiv, Cullen Karen, Tung Victoria W K, Camp Aaron J

机构信息

Discipline of Biomedical Science, Bosch Institute, The University of Sydney, Sydney, New South Wales, Australia.

Department of Biochemistry and Molecular Biophysics, Howard Hughes Medical Institute, Columbia University, New York, United States of America.

出版信息

PLoS One. 2015 Sep 30;10(9):e0139548. doi: 10.1371/journal.pone.0139548. eCollection 2015.

Abstract

Despite the importance of our sense of balance we still know remarkably little about the central control of the peripheral balance system. While previous work has shown that activation of the efferent vestibular system results in modulation of afferent vestibular neuron discharge, the intrinsic and synaptic properties of efferent neurons themselves are largely unknown. Here we substantiate the location of the efferent vestibular nucleus (EVN) in the mouse, before characterizing the input and output properties of EVN neurons in vitro. We made transverse serial sections through the brainstem of 4-week-old mice, and performed immunohistochemistry for calcitonin gene-related peptide (CGRP) and choline acetyltransferase (ChAT), both expressed in the EVN of other species. We also injected fluorogold into the posterior canal and retrogradely labelled neurons in the EVN of ChAT:: tdTomato mice expressing tdTomato in all cholinergic neurons. As expected the EVN lies dorsolateral to the genu of the facial nerve (CNVII). We then made whole-cell current-, and voltage-clamp recordings from visually identified EVN neurons. In current-clamp, EVN neurons display a homogeneous discharge pattern. This is characterized by a high frequency burst of action potentials at the onset of a depolarizing stimulus and the offset of a hyperpolarizing stimulus that is mediated by T-type calcium channels. In voltage-clamp, EVN neurons receive either exclusively excitatory or inhibitory inputs, or a combination of both. Despite this heterogeneous mixture of inputs, we show that synaptic inputs onto EVN neurons are predominantly excitatory. Together these findings suggest that the inputs onto EVN neurons, and more specifically the origin of these inputs may underlie EVN neuron function.

摘要

尽管我们的平衡感很重要,但我们对周围平衡系统的中枢控制仍然知之甚少。虽然先前的研究表明,传出前庭系统的激活会导致传入前庭神经元放电的调制,但传出神经元本身的内在和突触特性在很大程度上尚不清楚。在这里,我们在体外表征传出前庭核(EVN)神经元的输入和输出特性之前,证实了其在小鼠体内的位置。我们对4周龄小鼠的脑干制作了横向连续切片,并对降钙素基因相关肽(CGRP)和胆碱乙酰转移酶(ChAT)进行了免疫组织化学检测,这两种物质在其他物种的EVN中均有表达。我们还将荧光金注入后半规管,并对所有胆碱能神经元中表达tdTomato的ChAT::tdTomato小鼠的EVN中的神经元进行逆行标记。正如预期的那样,EVN位于面神经(CNVII)膝部的背外侧。然后,我们对视觉识别的EVN神经元进行了全细胞电流钳和电压钳记录。在电流钳记录中,EVN神经元呈现出均匀的放电模式。其特征是在去极化刺激开始时和由T型钙通道介导的超极化刺激结束时出现高频动作电位爆发。在电压钳记录中,EVN神经元要么只接受兴奋性输入,要么只接受抑制性输入,或者两者兼而有之。尽管存在这种异质性的输入混合,但我们表明,EVN神经元上的突触输入主要是兴奋性的。这些发现共同表明,EVN神经元上的输入,更具体地说是这些输入的来源,可能是EVN神经元功能的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab60/4589407/dbf71904d69e/pone.0139548.g001.jpg

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