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猫中用辣根过氧化物酶细胞内标记的单脑干运动神经元的树突。突触覆盖和微环境的超微结构分析。

The dendrites of single brain-stem motoneurons intracellularly labelled with horseradish peroxidase in the cat. An ultrastructural analysis of the synaptic covering and the microenvironment.

作者信息

Bras H, Destombes J, Gogan P, Tyc-Dumont S

机构信息

INSERM-U.6, CNRS-UA.634, Marseille, France.

出版信息

Neuroscience. 1987 Sep;22(3):971-81. doi: 10.1016/0306-4522(87)92973-3.

Abstract

Two laryngeal motoneurons intracellularly stained with horseradish peroxidase were studied ultrastructurally. The precise position of the ultrastructural observations made along the dendrites was obtained from the computer-reconstruction of the motoneurons in three dimensions. The shape and the size of the synaptic boutons, the percentage of membrane covered by bouton appositions and active zones, the number of boutons per 100 microns2 (packing density) were analysed on the soma and on the labelled dendrites at different distances from the soma up to 1000 microns. The results revealed no important regional differences in the mean length of synaptic apposition. The packing density was in the range of 9.3-14.9 boutons per 100 microns2 and was not correlated with the distance from the soma. The percentage apposition covering was higher on the soma and the proximal part of the dendrites than on the remaining part of the dendritic arborization. Close appositions between labelled dendrite and unlabelled somata and/or dendrites together with dendro-dendritic synapses suggested the possibility that the dendrites may be involved in local cell-to-cell communication. Microdendrites emerging from the soma or the proximal dendrites were contacted by synaptic boutons which may be more efficient as revealed by computation.

摘要

对两个用辣根过氧化物酶进行细胞内染色的喉运动神经元进行了超微结构研究。沿着树突进行超微结构观察的精确位置是通过对运动神经元进行三维计算机重建获得的。分析了胞体以及距离胞体达1000微米的不同距离处的标记树突上突触小体的形状和大小、被突触小体附着和活性区覆盖的膜的百分比、每100平方微米的突触小体数量(堆积密度)。结果显示,突触附着的平均长度没有重要的区域差异。堆积密度在每100平方微米9.3 - 14.9个突触小体的范围内,且与距胞体的距离无关。胞体和树突近端部分的附着覆盖百分比高于树突分支的其余部分。标记树突与未标记的胞体和/或树突之间的紧密附着以及树突 - 树突突触表明,树突可能参与局部细胞间通讯。从胞体或近端树突发出的微树突与突触小体接触,计算结果显示这些突触小体可能更有效。

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