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Prominent Expression of Two Forms of Glutamate Decarboxylase in the Embryonic and Early Postnatal Rat Hippocampal Formation

机译:两种形式的谷氨酸脱羧酶在胚胎和出生后早期大鼠海马结构中的突出表达

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摘要

Immunohistochemical methods were used to determine the earliest times of detection for two forms of glutamate decarboxylase (GAD67 and GAD65) in the embryonic and early postnatal rat hippocampal formation and to determine whether their distribution patterns differed from each other and from those of the adult. Both GAD67- and GAD65-containing neurons were observed as early as embryonic day 17 (E17)–E18 in the hippocampus and E19 in the dentate gyrus, and this was substantially earlier than GAD had been detected previously in the hippocampal formation. The two GAD isoforms displayed very similar distribution patterns, but these patterns were distinctly different from those of the adult. From E17 to E20, GAD67 and GAD65 were expressed in neuronal cell bodies throughout the hippocampal and dentate marginal zones (future dendritic layers), and relatively few existed within the principal cell body layers, where GAD-positive neurons are frequently concentrated in the adult. At E21 to postnatal day 1 (P1), there was a sudden shift from a predominance of GAD-containing cell bodies within the developing dendritic regions to a meshwork of GAD-positive processes with terminal-like varicosities in these same regions. This pattern also contrasted with that of the adult, in which GAD-labeled terminals are highly concentrated in the principal cell layers. Electron microscopic observations of the GAD-labeled processes at P1 confirmed their axon-like appearance and demonstrated that the immunoreactivity was consistently localized in vesicle-filled regions that were often closely apposed to and, in some instances, established synaptic contacts with dendritic profiles.The present identification of an early abundance of GAD-containing structures in the hippocampal formation and the marked change in their distribution during development complement recent observations of developmental changes in the functioning of the GABA system and provide additional support for the early involvement of this neurotransmitter system in hippocampal development.
机译:免疫组织化学方法用于确定最早的两种形式的谷氨酸脱羧酶(GAD67和GAD65)在胚胎和出生后早期大鼠海马结构中的检测时间,并确定它们的分布模式是否彼此不同以及与成年人不同。早在海马的胚胎第17天(E17)–E18和齿状回的E19都观察到了含有GAD67和GAD65的神经元,这比之前在海马形成中检测到的GAD要早得多。这两种GAD亚型显示出非常相似的分布模式,但这些模式与成年人的模式明显不同。从E17到E20,GAD67和GAD65在整个海马和齿状边缘区(未来树突层)的神经元细胞体中表达,而在主要细胞体层中相对较少,GAD阳性神经元通常集中在成年人中。在E21到出生后第1天(P1),从发育中的树突区域中占主导地位的GAD细胞体突然转变为这些区域中具有终末样静脉曲张的GAD阳性过程的网状结构。这种模式也与成年人相反,在成人模式下,GAD标记的末端高度集中在主要细胞层中。在P1处GAD标记过程的电子显微镜观察证实了它们的轴突样外观,并表明免疫反应性始终位于囊泡填充区域,该区域通常与树突状轮廓紧密相关并在某些情况下建立了突触接触。目前对海马结构中含有大量GAD的结构的早期鉴定及其在发育过程中分布的显着变化补充了最近对GABA系统功能发育变化的观察,并为该神经递质系统的早期参与提供了额外的支持。海马发育。

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