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外侧隔核的 VGLUT3 免疫反应传入纤维:谷氨酸的调节作用的超微结构证据。

VGLUT3-immunoreactive afferents of the lateral septum: ultrastructural evidence for a modulatory role of glutamate.

机构信息

Department of Zoology/Developmental Neurobiology, Otto von Guericke University Magdeburg, Leipziger Str. 44, 39120 Magdeburg, Germany.

出版信息

Brain Struct Funct. 2013 Jan;218(1):295-301. doi: 10.1007/s00429-012-0395-4. Epub 2012 Feb 29.

DOI:10.1007/s00429-012-0395-4
PMID:22374223
Abstract

Through its extensive connections with various brain regions, the lateral septum (LS) participates in the processing of cognitive, emotional and autonomic information. It is decisively involved in the generation of behavioral responses according to environmental demands. Modulatory afferents reaching the LS from the brain stem (e.g. dopaminergic, serotonergic) play a role in the adjustment of these behavioral responses. Recently, a population of vesicular glutamate transporter 3-immunoreactive (VGLUT3-ir) fibers forming prominent pericellular basket-like structures (PBLS) was described in the rat LS. These VGLUT3-ir PBLS are distributed in a layer-like pattern, which is very typical for modulatory afferents of the LS. There is meanwhile broad evidence that glutamate can act as a modulatory or co-transmitter and that those neurons, which make use of this transmission mode, primarily express VGLUT3. Thus, the VGLUT3-ir fibers within the LS could also display features typical for non-canonical glutamatergic transmission. Employing pre-embedding electron microscopy for VGLUT3 in rats, we show now that the VGLUT3-ir fibers outlining LS neurons represent axonal terminals, which primarily form symmetric synapses with somata and proximal dendrites of their target neurons. Occasionally, we also found VGLUT3-ir terminals that make canonical asymmetric synapses on distal dendrites and spines. Thus, VGLUT3-ir boutons in the LS form two different, disproportionate, populations of synaptic contacts with their target neurons. The larger one of them is indicative of employing glutamate as a modulatory transmitter.

摘要

通过与各种大脑区域的广泛联系,外侧隔核 (LS) 参与了认知、情感和自主信息的处理。它根据环境需求果断地参与生成行为反应。来自脑干的调制传入纤维(例如多巴胺能、5-羟色胺能)到达 LS ,在这些行为反应的调节中发挥作用。最近,在大鼠 LS 中描述了一群囊泡谷氨酸转运体 3 免疫反应性 (VGLUT3-ir) 纤维形成突出的细胞周篮状结构 (PBLS)。这些 VGLUT3-ir PBLS 呈层状分布,非常典型的 LS 调制传入纤维。同时,有广泛的证据表明谷氨酸可以作为一种调制或共递质,并且那些利用这种传递模式的神经元主要表达 VGLUT3。因此,LS 内的 VGLUT3-ir 纤维也可能表现出非典型谷氨酸能传递的特征。我们现在使用大鼠中的 VGLUT3 预嵌入电子显微镜,表明勾勒 LS 神经元的 VGLUT3-ir 纤维代表轴突末梢,它们主要与靶神经元的胞体和近端树突形成对称突触。偶尔,我们还发现 VGLUT3-ir 末端在远端树突和棘上形成典型的不对称突触。因此,LS 中的 VGLUT3-ir 末梢与靶神经元形成两种不同的不成比例的突触接触群体。其中较大的一个表明谷氨酸被用作调制递质。

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