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大鼠海马体(CA1和CA3区)非锥体细胞树突之间的缝隙连接:一项高尔基染色法与电子显微镜联合研究

Gap junctions between non-pyramidal cell dendrites in the rat hippocampus (CA1 and CA3 regions): a combined Golgi-electron microscopy study.

作者信息

Kosaka T, Hama K

出版信息

J Comp Neurol. 1985 Jan 8;231(2):150-61. doi: 10.1002/cne.902310203.

Abstract

Non-pyramidal cells in the rat hippocampus were examined with a combined Golgi-electron microscopic method. The somata of non-pyramidal cells were ovoid, about 15 X 30 micron, and several smooth and/or varicose dendrites extended from them. With electron microscopy, Golgi-impregnated gold-toned non-pyramidal cells showed distinctive fine structural features. The somata displayed large nuclei and an extensive perikaryal cytoplasm. The nuclei showed extensive cytoplasmic invaginations, little heterochromatin, conspicuous nucleoli, and intranuclear rods composed of filamentous bundles. The perikaryal cytoplasm was rich in cell organelles such as well-developed cisternae of rough endoplasmic reticulum and Golgi apparatus, and numerous clusters of free ribosomes and mitochondria. Many synaptic boutons, most of which formed asymmetrical synapses, impinged upon the somata and dendrites. Gap junctions were seen on varicose dendrites of Golgi-impregnated non-pyramidal cells. These gap junctions were patch-like, about 0.1-0.6 micron in diameter, and situated in the stratum radiatum or stratum oriens of the CA1 and CA3 regions 70-230 micron from the soma. They displayed a characteristic cytoplasmic semidense material undercoating the junctional membranes. The gap junctions were usually formed between impregnated and unimpregnated varicose dendrites. Thirteen of a total of 22 gap junctions involving the impregnated dendrites were situated singly, whereas the remaining nine were on four impregnated dendrites in clusters of two or three side by side. In the latter cases, two pairs of junctions were formed between pairs of dendrites running parallel to each other, and each of the other two pairs was formed among three dendrites, appearing to make a dendritic network bridged by gap junctions. One gap junction was seen between two impregnated dendrites originating from two identified Golgi-impregnated non-pyramidal cells. These observations revealed unequivocally that non-pyramidal cells in the hippocampus form gap junctions with one another on their dendrites.

摘要

采用高尔基染色法与电子显微镜相结合的方法对大鼠海马中的非锥体神经元进行了研究。非锥体神经元的胞体呈椭圆形,大小约为15×30微米,从胞体伸出数条光滑和/或曲张的树突。通过电子显微镜观察,经高尔基染色呈金色的非锥体神经元显示出独特的精细结构特征。胞体具有大的细胞核和广泛的核周细胞质。细胞核显示出广泛的细胞质内陷、少量异染色质、明显的核仁以及由丝状束组成的核内棒。核周细胞质富含细胞器,如发育良好的粗面内质网和高尔基体的扁平囊,以及大量游离核糖体和线粒体的聚集。许多突触小体,其中大多数形成不对称突触,与胞体和树突接触。在经高尔基染色的非锥体神经元的曲张树突上可见缝隙连接。这些缝隙连接呈斑块状,直径约为0.1 - 0.6微米,位于CA1和CA3区的辐射层或原层,距离胞体70 - 230微米。它们在连接膜下方显示出特征性的细胞质半致密物质。缝隙连接通常在经染色和未经染色的曲张树突之间形成。在涉及经染色树突的总共22个缝隙连接中,有13个是单个存在的,而其余9个位于4个经染色的树突上,以两三个并排的簇状形式存在。在后一种情况下,在彼此平行的树突对之间形成了两对连接,另外两对中的每一对是在三个树突之间形成的,似乎形成了一个由缝隙连接桥接的树突网络。在源自两个已鉴定的经高尔基染色的非锥体神经元的两个经染色的树突之间可见一个缝隙连接。这些观察结果明确表明,海马中的非锥体神经元在其树突上相互形成缝隙连接。

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