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啮齿动物嗅球内小近肾小球细胞亚型的树突分支模式

Dendritic Arborization Patterns of Small Juxtaglomerular Cell Subtypes within the Rodent Olfactory Bulb.

作者信息

Bywalez Wolfgang G, Ona-Jodar Tiffany, Lukas Michael, Ninkovic Jovica, Egger Veronica

机构信息

Systems Neurobiology, Department II of Biology, Ludwig-Maximilians-Universität MünchenMunich, Germany; Neurophysiology, Institute of Zoology, Universität RegensburgRegensburg, Germany.

Neurophysiology, Institute of Zoology, Universität Regensburg Regensburg, Germany.

出版信息

Front Neuroanat. 2017 Jan 20;10:127. doi: 10.3389/fnana.2016.00127. eCollection 2016.

Abstract

Within the glomerular layer of the rodent olfactory bulb, numerous subtypes of local interneurons contribute to early processing of incoming sensory information. Here we have investigated dopaminergic and other small local juxtaglomerular cells in rats and mice and characterized their dendritic arborization pattern with respect to individual glomeruli by fluorescent labeling via patching and reconstruction of dendrites and glomerular contours from two-photon imaging data. Dopaminergic neurons were identified in a transgenic mouse line where the expression of dopamine transporter (DAT) was labeled with GFP. Among the DAT+ cells we found a small short-axon cell (SAC) subtype featuring hitherto undescribed dendritic specializations. These densely ramifying structures clasped mostly around somata of other juxtaglomerular neurons, which were also small, non-dopaminergic and to a large extent non-GABAergic. Clasping SACs were observed also in wild-type mice and juvenile rats. In DAT+ SAC dendrites, single backpropagating action potentials evoked robust calcium entry throughout both clasping and non-clasping compartments. Besides clasping SACs, most other small neurons either corresponded to the classical periglomerular cell type (PGCs), which was never DAT+, or were undersized cells with a small dendritic tree and low excitability. Aside from the presence of clasps in SAC dendrites, many descriptors of dendritic morphology such as the number of dendrites and the extent of branching were not significantly different between clasping SACs and PGCs. However, a detailed morphometric analysis in relation to glomerular contours revealed that the dendrites of clasping SACs arborized mostly in the juxtaglomerular space and never entered more than one glomerulus (if at all), whereas most PGC dendrites were restricted to their parent glomerulus, similar to the apical tufts of mitral cells. These complementary arborization patterns might underlie a highly complementary functional connectivity. The morphometric approach may serve to differentiate also other subtypes of juxtaglomerular neurons, help to identify putative synaptic partners and thus to establish a more refined picture of glomerular network interactions during odor sensing.

摘要

在啮齿动物嗅球的肾小球层内,众多类型的局部中间神经元参与传入感觉信息的早期处理。在这里,我们研究了大鼠和小鼠中的多巴胺能及其他小型局部近肾小球细胞,并通过膜片钳荧光标记以及从双光子成像数据重建树突和肾小球轮廓,来表征它们相对于单个肾小球的树突分支模式。在一个转基因小鼠品系中鉴定出多巴胺能神经元,其中多巴胺转运体(DAT)的表达用绿色荧光蛋白(GFP)标记。在DAT +细胞中,我们发现了一种小型短轴突细胞(SAC)亚型,其具有迄今未描述的树突特化。这些密集分支的结构大多围绕其他近肾小球神经元的胞体,这些神经元也很小,非多巴胺能且在很大程度上非GABA能。在野生型小鼠和幼年大鼠中也观察到了扣合型SAC。在DAT + SAC树突中,单个反向传播动作电位在扣合和非扣合区均引发强烈的钙内流。除了扣合型SAC,大多数其他小神经元要么对应于经典的球周细胞类型(PGC),其从不为DAT +,要么是树突树小且兴奋性低的小型细胞。除了SAC树突中存在扣合结构外,扣合型SAC和PGC在许多树突形态描述方面,如树突数量和分支程度,并无显著差异。然而,与肾小球轮廓相关的详细形态计量分析表明,扣合型SAC的树突大多在近肾小球空间分支,且从不进入超过一个肾小球(如果有的话),而大多数PGC树突局限于其母肾小球,类似于二尖瓣细胞的顶端簇。这些互补的分支模式可能是高度互补的功能连接的基础。形态计量方法也可用于区分近肾小球神经元的其他亚型,有助于识别假定的突触伙伴,从而建立气味感知过程中肾小球网络相互作用的更精细图景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90c0/5247448/e5a538bff927/fnana-10-00127-g0001.jpg

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