首页> 外文期刊>The Journal of Comparative Neurology >Presence of glutamate, glycine, and gamma-aminobutyric acid in the retina of the larval sea lamprey: comparative immunohistochemical study of classical neurotransmitters in larval and postmetamorphic retinas.
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Presence of glutamate, glycine, and gamma-aminobutyric acid in the retina of the larval sea lamprey: comparative immunohistochemical study of classical neurotransmitters in larval and postmetamorphic retinas.

机译:幼虫海鳗的视网膜中存在谷氨酸,甘氨酸和γ-氨基丁酸:幼虫和后变态视网膜中经典神经递质的比较免疫组织化学研究。

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The neurochemistry of the retina of the larval and postmetamorphic sea lamprey was studied via immunocytochemistry using antibodies directed against the major candidate neurotransmitters [glutamate, glycine, gamma-aminobutyric acid (GABA), aspartate, dopamine, serotonin] and the neurotransmitter-synthesizing enzyme tyrosine hydroxylase. Immunoreactivity to rod opsin and calretinin was also used to distinguish some retinal cells. Two retinal regions are present in larvae: the central retina, with opsin-immunoreactive photoreceptors, and the lateral retina, which lacks photoreceptors and is mainly neuroblastic. We observed calretinin-immunostained ganglion cells in both retinal regions; immunolabeled bipolar cells were detected in the central retina only. Glutamate immunoreactivity was present in photoreceptors, ganglion cells, and bipolar cells. Faint to moderate glycine immunostaining was observed in photoreceptors and some cells of the ganglion cell/inner plexiform layer. No GABA-immunolabeled perikarya were observed. GABA-immunoreactive centrifugal fibers were present in the central and lateral retina. These centrifugal fibers contacted glutamate-immunostained ganglion cells. No aspartate, serotonin, dopamine, or TH immunoreactivity was observed in larvae, whereas these molecules, as well as GABA, glycine, and glutamate, were detected in neurons of the retina of recently transformed lamprey. Immunoreactivity to GABA was observed in outer horizontal cells, some bipolar cells, and numerous amacrine cells, whereas immunoreactivity to glycine was found in amacrine cells and interplexiform cells. Dopamine and serotonin immunoreactivity was found in scattered amacrine cells. Amacrine and horizontal cells did not express classical neurotransmitters (with the possible exception of glycine) during larval life, so transmitter-expressing cells of the larval retina appear to participate only in the vertical processing pathway.
机译:通过针对主要候选神经递质[谷氨酸,甘氨酸,γ-氨基丁酸(GABA),天冬氨酸,多巴胺,5-羟色胺]和神经递质合成酶酪氨酸的抗体,通过免疫细胞化学研究了幼虫和变态后海鳗的视网膜神经化学。羟化酶。对棒视蛋白和钙网蛋白的免疫反应性也被用于区分某些视网膜细胞。幼虫中存在两个视网膜区域:中央视网膜,具有视蛋白免疫反应性光感受器;以及外侧视网膜,其缺乏光感受器,主要是成神经细胞的。我们在两个视网膜区域都观察到了钙网蛋白免疫染色的神经节细胞。免疫标记的双极细胞仅在中央视网膜中检测到。谷氨酸的免疫反应性存在于感光器,神经节细胞和双极细胞中。在感光细胞和神经节细胞/内丛状层的一些细胞中观察到微弱至中等的甘氨酸免疫染色。没有观察到GABA免疫标记的果核。 GABA免疫反应性离心纤维存在于视网膜中央和外侧。这些离心纤维接触谷氨酸免疫染色的神经节细胞。在幼虫中未观察到天冬氨酸,5-羟色胺,多巴胺或TH的免疫反应性,而在最近转化的七lamp鳗的视网膜神经元中未检测到这些分子以及GABA,甘氨酸和谷氨酸。在外部水平细胞,一些双极细胞和许多无长突细胞中观察到了对GABA的免疫反应性,而在无长突细胞和丛状细胞中发现了对甘氨酸的免疫反应性。在分散的无长突细胞中发现多巴胺和5-羟色胺的免疫反应性。在幼虫生命期间,无长突蛋白和水平细胞未表达经典的神经递质(甘氨酸可能例外),因此,幼虫视网膜表达递质的细胞似乎仅参与垂直加工途径。

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