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小鼠主嗅球中通过缝隙连接和化学突触相连的肾小球内树突连接:电子显微镜连续切片分析

Intraglomerular dendritic link connected by gap junctions and chemical synapses in the mouse main olfactory bulb: electron microscopic serial section analyses.

作者信息

Kosaka T, Kosaka K

机构信息

Department of Anatomy and Neurobiology, Graduate School of Medical Sciences, Kyushu University, Fukuoka 812-8582, Japan.

出版信息

Neuroscience. 2005;131(3):611-25. doi: 10.1016/j.neuroscience.2004.11.050.

Abstract

Glomeruli of the main olfactory bulb are considered to serve as functional units in processing the olfactory information. Thus the fine tuning of the output level from each glomerulus is important to the information processing in the olfactory system. The interactions among neuronal elements in glomeruli might be one of main mechanisms regulating this output level. In the mouse main olfactory bulb neuronal connections via chemical synapses and gap junction in glomeruli were analyzed by the serial electron microscopical reconstruction. Gap junctions were encountered between diverse types of dendritic processes, between mitral/tufted cell dendrites, between mitral/tufted cell dendrites and periglomerular cell dendrites and between mitral/tufted cell dendrites and dendrites of some interneurons different from periglomerular cells. Then these morphological observations indicate that we must consider both direct coupling between mitral/tufted cells via gap junctions and indirect coupling between mitral/tufted cells via intervening interneuronal processes. One of gap junction-forming processes presynaptic in asymmetrical synapses was traced back to the soma of its origin located in the glomerular layer, which was thus identified as an external tufted cell. However, interestingly, it showed apparently different ultrastructural features from other external tufted cells located at the border between the glomerular and external plexiform layers; the latter resemble so-called mitral/tufted cells located in the external plexiform and mitral cell layers. Then external tufted cells were assumed to be heterogeneous in their ultrastructural features. We occasionally encountered several dendrites connected by gap junctions, which furthermore made chemical synapses with each other and with other surrounding processes. Thus both chemical synapses and gap junctions interconnect complexly various processes in the glomerulus, where the local circuit among intermingled olfactory nerves, mitral/tufted cell dendrites and interneuron dendrites is far more complex than previously schematized.

摘要

主嗅球的肾小球被认为是处理嗅觉信息的功能单位。因此,对每个肾小球输出水平的精细调节对嗅觉系统中的信息处理很重要。肾小球中神经元成分之间的相互作用可能是调节这种输出水平的主要机制之一。通过连续电子显微镜重建分析了小鼠主嗅球中肾小球内通过化学突触和缝隙连接的神经元连接。在不同类型的树突状突起之间、在僧帽/簇状细胞树突之间、在僧帽/簇状细胞树突与球周细胞树突之间以及在僧帽/簇状细胞树突与一些不同于球周细胞的中间神经元的树突之间都发现了缝隙连接。这些形态学观察表明,我们必须考虑僧帽/簇状细胞通过缝隙连接的直接耦合以及僧帽/簇状细胞通过中间神经元过程的间接耦合。在不对称突触中形成缝隙连接的一个过程的突触前部分追溯到其位于肾小球层的起源细胞体,因此被鉴定为外部簇状细胞。然而,有趣的是,它与位于肾小球层和外部丛状层边界的其他外部簇状细胞表现出明显不同的超微结构特征;后者类似于位于外部丛状层和僧帽细胞层的所谓僧帽/簇状细胞。因此,外部簇状细胞在超微结构特征上被认为是异质的。我们偶尔会遇到几个通过缝隙连接相连的树突,它们还相互之间以及与其他周围过程形成化学突触。因此,化学突触和缝隙连接在肾小球中复杂地连接各种过程,其中混合的嗅觉神经、僧帽/簇状细胞树突和中间神经元树突之间的局部回路比以前设想的要复杂得多。

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