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Morphological heterogeneity of the GABAergic network in the suprachiasmatic nucleus the brains circadian pacemaker

机译:大脑上昼夜节律性起搏器上核中GABA能网络的形态异质性

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摘要

GABA (gamma-amino-butyric acid) is the predominant neurotransmitter in the mammalian suprachiasmatic nucleus (SCN), with a central role in circadian time-keeping. We therefore undertook an ultrastructural analysis of the GABA-containing innervation in the SCN of mice and rats using immunoperoxidase and immunogold procedures. GABA-immunoreactive (GABA-ir) neurons were identified by use of anti-GABA and anti-GAD (glutamic acid decarboxylase) antisera. The relationship between GABA-ir elements and the most prominent peptidergic neurons in the SCN, containing vasopressin-neurophysin (VP-NP) or vasoactive intestinal polypeptide (VIP), was also studied. Within any given field in the SCN, approximately 40–70% of the neuronal profiles were GABA-ir. In GABA-ir somata, immunogold particles were prominent over mitochondria, sparse over cytoplasm, and scattered as aggregates over nucleoplasm. In axonal boutons, gold particles were concentrated over electron-lucent synaptic vesicles (diameter 40–60 nm) and mitochondria, and in some instances over dense-cored vesicles (DCVs, diameter 90–110 nm). GABA-ir boutons formed either symmetric or asymmetric synaptic contacts with somata, dendritic shafts and spines, and occasionally with other terminals (axo-axonic). Homologous or autaptic connections (GABA on GABA, or GAD on GAD) were common. Although GABA appeared to predominate in most neuronal profiles, colocalisation of GABA within neurons that were predominantly neuropeptide-containing was also evident. About 66% of the VIP-containing boutons and 32% of the vasopressinergic boutons contained GABA. The dense and complex GABAergic network that pervades the SCN is therefore comprised of multiple neuronal phenotypes containing GABA, including a wide variety of axonal boutons that impinge on heterologous and homologous postsynaptic sites.
机译:GABA(γ-氨基丁酸)是哺乳动物哺乳动物视交叉上核(SCN)中主要的神经递质,在昼夜节律中具有重要作用。因此,我们使用免疫过氧化物酶和免疫金方法对小鼠和大鼠的SCN中含有GABA的神经支配进行了超微结构分析。通过使用抗GABA和抗GAD(谷氨酸脱羧酶)抗血清来鉴定GABA免疫反应性(GABA-ir)神经元。还研究了GABA-ir元素与SCN中最主要的肽能神经元之间的关系,该神经元含有血管加压素神经营养素(VP-NP)或血管活性肠多肽(VIP)。在SCN的任何给定字段中,大约40-70%的神经元特征是GABA-ir。在GABA-ir体细胞中,免疫金颗粒在线粒体上突出,在细胞质上稀疏,并以聚集体形式分散在核质上。在轴突的钮扣中,金颗粒集中在电子透明突触囊泡(直径40-60 nm)和线粒体上,在某些情况下集中在密芯囊泡(DCVs,直径90-110 nm)上。 GABA-ir钮扣与躯体,树突状干和棘突以及其他末端(轴突-轴突)形成对称或不对称的突触接触。同源或自闭连接(GABA在GABA上或GAD在GAD上)很常见。尽管在大多数神经元特征中GABA似乎占主导地位,但在主要含有神经肽的神经元内GABA的共定位也很明显。约66%的含VIP的按钮和32%的血管加压药性的按钮包含GABA。因此,遍及SCN的致密而复杂的GABA能网络由包含GABA的多种神经元表型组成,包括撞击异源和同源突触后位点的多种轴突钮扣。

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