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负鼠梨状皮质中对γ-氨基丁酸(GABA)、谷氨酸脱羧酶(GAD)呈免疫反应性且对高亲和力氚标记γ-氨基丁酸有摄取作用的神经元的分布及超微结构

Distribution and ultrastructure of neurons in opossum piriform cortex displaying immunoreactivity to GABA and GAD and high-affinity tritiated GABA uptake.

作者信息

Haberly L B, Hansen D J, Feig S L, Presto S

机构信息

Department of Anatomy, University of Wisconsin, Madison 53706.

出版信息

J Comp Neurol. 1987 Dec 8;266(2):269-90. doi: 10.1002/cne.902660211.

Abstract

GABAergic neurons have been identified in the piriform cortex of the opossum at light and electron microscopic levels by immunocytochemical localization of GABA and the GABA-synthesizing enzyme glutamic acid decarboxylase and by autoradiographic visualization of high-affinity 3H-GABA uptake. Four major neuron populations have been distinguished on the basis of soma size, shape, and segregation at specific depths and locations: large horizontal cells in layer Ia of the anterior piriform cortex, small globular cells with thin dendrites concentrated in layers Ib and II of the posterior piriform cortex, and multipolar and fusiform cells concentrated in the deep part of layer III in anterior and posterior parts of the piriform cortex and the subjacent endopiriform nucleus. All four populations were well visualized with both antisera, but the large layer Ia horizontal cells displayed only very light 3H-GABA uptake, thus suggesting a lack of local axon collaterals or lack of high-affinity GABA uptake sites. The large, ultrastructurally distinctive somata of layer Ia horizontal cells receive a very small number of symmetrical synapses; the thin, axonlike dendrites of small globular cells are exclusively postsynaptic and receive large numbers of both symmetrical and asymmetrical synapses, in contrast to somata which receive a small number of both types; and the deep multipolar and fusiform cells receive a highly variable number of symmetrical and asymmetrical synapses on somata and proximal dendrites. Labeled puncta of axon terminal dimensions were found in large numbers in the neuropil surrounding pyramidal cell somata in layer II and in the endopiriform nucleus. Moderately large numbers of labeled puncta were found in layer I at the depth of pyramidal cell apical dendrites with greater numbers in layer Ia at the depth of distal apical segments than in layer Ib. High-affinity GABA uptake was demonstrated in the termination zone of the projection from the anterior olfactory nucleus to the anterior piriform cortex. Cell bodies of origin of this projection displayed heavy retrograde labeling with 3H-GABA. Matching neuropil and cellular labeling was demonstrated with the GABA-BSA antiserum but not with the GAD antiserum, thus suggesting that GABA is normally present in these cells but is taken up from the neuropil rather than synthesized. No comparable high-affinity GABA uptake was demonstrated in the association fiber systems that originate in the piriform cortex.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

通过对γ-氨基丁酸(GABA)和GABA合成酶谷氨酸脱羧酶进行免疫细胞化学定位,以及通过高亲和力³H-GABA摄取的放射自显影可视化,在光镜和电镜水平上已在负鼠的梨状皮质中鉴定出GABA能神经元。根据细胞体大小、形状以及在特定深度和位置的分布,已区分出四种主要的神经元群体:前梨状皮质Ia层中的大型水平细胞、后梨状皮质Ib层和II层中具有细树突的小型球状细胞,以及集中在梨状皮质前部和后部以及相邻的内梨状核III层深部的多极细胞和梭形细胞。用两种抗血清都能很好地观察到所有这四种群体,但Ia层大型水平细胞仅显示出非常微弱的³H-GABA摄取,因此表明缺乏局部轴突侧支或缺乏高亲和力GABA摄取位点。Ia层水平细胞的大型、超微结构独特的细胞体接受非常少量的对称突触;小型球状细胞的细、轴突样树突仅为突触后成分,并接受大量的对称和不对称突触,与之形成对比的是,细胞体接受少量的这两种类型突触;而深部的多极细胞和梭形细胞在细胞体和近端树突上接受数量高度可变的对称和不对称突触。在II层锥体细胞体周围的神经毡以及内梨状核中发现了大量轴突终末大小的标记斑点。在I层锥体细胞顶树突深度处发现了中等数量的标记斑点,在远端顶段深度处,Ia层中的标记斑点数量多于Ib层。在前嗅核到前梨状皮质的投射终末区域证实有高亲和力GABA摄取。该投射的起源细胞体显示出用³H-GABA进行的强烈逆行标记。用GABA-BSA抗血清证实了神经毡和细胞标记相匹配,但用谷氨酸脱羧酶抗血清则未证实,因此表明GABA通常存在于这些细胞中,但它是从神经毡摄取而非合成的。在起源于梨状皮质的联合纤维系统中未证实有类似的高亲和力GABA摄取。(摘要截短至400字)

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