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[混合突触小泡群体的定量形态学检查——方法与意义]

[Quantitative morphologic examination of the vesicle population of mixed synapses--method and significance].

作者信息

Saballus R, Schuster T, Ossyra H

出版信息

J Hirnforsch. 1982;23(2):175-90.

PMID:7108197
Abstract

Quantitative electron microscopic investigations have been performed regarding the population of clear round vesicles within the axosomatic mixed contacts between secondary vestibular and oculomotor neurons of the trout. The measurements are based on a subdivision of the axon terminal area into single fields which topographically belong to different synaptic types (active zone, gap junction) of this mixed contact. Furthermore, areas between active zones and gap junctions ("intermediate zones") and areas along the lateral membranes of the axon terminal ("border zones") have been analyzed. The following vesicle parameters have been estimated stereologically: volume density (Vvv), surface density (Svv), numerical vesicle density (Nvv) mean vesicle volume (Vv) and mean vesicle surface (Sv). In this connection, aspects of the homogeneous distribution, of number and size of the organelles hae been investigated. The results obtained show a characteristic distribution in number and size of vesicles inthe presynaptic areas of the different membrane specializations of this mixed synapses. The results further indicate that two different pools of clear round vesicles exist in this mixed synapse, clear synaptic vesicles for chemical transmission and gap junction vesicles. In relation to the synaptic vesicles, a recycling mechanism is suggested. Gap-junction vesicles may function as Ca++ transport organelles to regulate gap junction permeability. A possible role in trophic tasks of the gap junction is also discussed.

摘要

已对鳟鱼次级前庭神经元与动眼神经元之间轴体混合接触内的清亮圆形囊泡群体进行了定量电子显微镜研究。测量基于将轴突终末区域细分为单个区域,这些区域在拓扑学上属于这种混合接触的不同突触类型(活性区、缝隙连接)。此外,还分析了活性区与缝隙连接之间的区域(“中间区”)以及沿着轴突终末侧膜的区域(“边界区”)。已通过体视学方法估计了以下囊泡参数:体积密度(Vvv)、表面积密度(Svv)、囊泡数量密度(Nvv)、平均囊泡体积(Vv)和平均囊泡表面积(Sv)。在此方面,已研究了细胞器数量和大小的均匀分布情况。所获得的结果显示,在这种混合突触不同膜特化的突触前区域中,囊泡的数量和大小具有特征性分布。结果还表明,在这种混合突触中存在两种不同的清亮圆形囊泡池,即用于化学传递的清亮突触囊泡和缝隙连接囊泡。关于突触囊泡,提出了一种循环机制。缝隙连接囊泡可能作为Ca++转运细胞器来调节缝隙连接的通透性。还讨论了缝隙连接在营养任务中的可能作用。

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