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小鼠嗅球中钙视网膜蛋白阳性的球周中间神经元:寡言少语的细胞

Calretinin-Periglomerular Interneurons in Mice Olfactory Bulb: Cells of Few Words.

作者信息

Fogli Iseppe Alex, Pignatelli Angela, Belluzzi Ottorino

机构信息

Biology and Evolution - Neurobiology, Department of Life Sciences and Biotechnology, University of FerraraFerrara, Italy; Department of Neurobiology, Physiology and Behavior, University of California at Davis, DavisCA, USA.

Biology and Evolution - Neurobiology, Department of Life Sciences and Biotechnology, University of Ferrara Ferrara, Italy.

出版信息

Front Cell Neurosci. 2016 Oct 7;10:231. doi: 10.3389/fncel.2016.00231. eCollection 2016.

Abstract

Within the olfactory bulb (OB), periglomerular (PG) cells consist of various types of interneurons, generally classified by their chemical properties such as neurotransmitter and calcium binding proteins. Calretinin (CR) characterizes morphologically and functionally the more numerous and one of the less known subpopulation of PG cells in the OB. Using of transgenic mice expressing eGFP under the CR promoter, we have tried to obtain the first functional characterization of these cells. Electrophysiological recordings were made in these cells using the patch-clamp technique in thin slices. Using ion substitution methods and specific blockers, we dissected the main voltage-dependent conductances present, obtaining a complete kinetic description for each of them. The more peculiar property of these cells from the electrophysiological point of view is the presence only of a single K-current, A-type - there is no trace of delayed rectifier or of Ca-dependent K-current. Other currents identified, isolated and fully characterized are a fast sodium current, a small L-type calcium current, and an inward rectifier, h-type cationic current. As a consequence of the peculiar complement of voltage-dependent conductances present in these cells, and in particular the absence of delayed-rectifier potassium currents, under the functional point of view these cells present two interesting properties. First, in response to prolonged depolarisations, after the inactivation of the A-current these cells behave as a purely ohmic elements, showing no outward rectification. Second, the CR cells studied can respond only with a single action potential to excitatory inputs; since they send inhibitory synapses to projection neurones, they seem to be designed to inhibit responses of the main neurones to isolated, random excitatory signals, rapidly losing their vetoing effect in response to more structured, repetitive excitatory signals. We propose that a possible role for these rather untalkative interneurons in the intense exchange of messages within the OB might be that of improving the signal-to-noise ratio in the first stages of the olfactory information processing.

摘要

在嗅球(OB)内,球周(PG)细胞由各种类型的中间神经元组成,通常根据它们的化学性质如神经递质和钙结合蛋白进行分类。钙视网膜蛋白(CR)在形态和功能上表征了嗅球中数量较多且鲜为人知的PG细胞亚群之一。利用在CR启动子下表达eGFP的转基因小鼠,我们试图对这些细胞进行首次功能表征。在薄片中使用膜片钳技术对这些细胞进行电生理记录。使用离子替代方法和特异性阻滞剂,我们剖析了存在的主要电压依赖性电导,对每个电导都获得了完整的动力学描述。从电生理角度来看,这些细胞最独特的特性是仅存在单一的K电流,即A型电流——没有延迟整流器或钙依赖性K电流的痕迹。其他已识别、分离并完全表征的电流包括快速钠电流、小L型钙电流和内向整流器h型阳离子电流。由于这些细胞中存在独特的电压依赖性电导组合,特别是没有延迟整流钾电流,从功能角度来看,这些细胞呈现出两个有趣的特性。首先,在长时间去极化时,A电流失活后,这些细胞表现为纯粹的欧姆元件,没有向外整流。其次,所研究的CR细胞对兴奋性输入只能产生单个动作电位;由于它们向投射神经元发送抑制性突触,它们似乎旨在抑制主要神经元对孤立、随机兴奋性信号的反应,而在对更有组织、重复性的兴奋性信号的反应中迅速失去其否决作用。我们提出,这些相对沉默寡言的中间神经元在嗅球内强烈的信息交换中可能起到的一个作用是在嗅觉信息处理的第一阶段提高信噪比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f34/5054022/e10b9de823f5/fncel-10-00231-g002.jpg

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