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Projections from basal forebrain to prefrontal cortex comprise cholinergic GABAergic and glutamatergic inputs to pyramidal cells or interneurons

机译:从基底前脑到前额叶皮层的投影包括锥体细胞或中间神经元的胆碱能GABA能和谷氨酸能输入

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摘要

The present study was undertaken to characterize the pre- and postsynaptic constituents of the basal forebrain (BF) projection to the prefrontal cortex in the rat, and determine whether it includes glutamatergic in addition to established γ-aminobutyric acid (GABA)ergic and cholinergic elements. BF fibres were labelled by anterograde transport using biotin dextran amine (BDA) and dual-stained for the vesicular transporter proteins (VTPs) for glutamate (VGluT), GABA (VGAT) or acetylcholine (VAChT). Viewed by fluorescence microscopy and estimated by stereology, proportions of BDA-labelled varicosities were found to be stained for VGluT2 (and not VGluT1 or 3), VGAT or VAChT (representing, respectively, ~15%, ~52% and ~19% within the infralimbic cortex). Each type was present in all, though commonly most densely in deep, cortical layers. Material was triple-stained for postsynaptic proteins to examine whether BDA+VTP+ varicosities might form excitatory or inhibitory synapses, respectively, labelled by postsynaptic density-95 kDA (PSD-95) or gephyrin (Geph). Viewed by confocal microscopy, a majority of BDA+/VGluT2+ varicosities were found to be apposed to PSD-95+ elements, and a majority of BDA+/VGAT+ varicosities to be apposed to Geph+ elements. Other series were triple-stained for cell marker proteins to assess whether the varicosities contacted interneurons or pyramidal cells. Viewed by confocal microscopy, BDA-labelled VGluT2+, VGAT+ and VAChT+ BF terminals were all found in contact with calbindin+ interneurons, whereas VGAT+ BF terminals were also seen in contact with parvalbumin+ interneurons and non-phosphorylated neurofilament+ pyramidal cells. Through distinct glutamatergic, GABAergic and cholinergic projections, the BF can thus influence cortical activity in a diverse manner.
机译:进行本研究以表征大鼠前额叶皮层基底前脑(BF)投射的突触前和突触后成分,并确定除确定的γ-氨基丁酸(GABA)能量和胆碱能成分外,是否还包括谷氨酸能。使用生物素葡聚糖胺(BDA)通过顺行转运标记高炉纤维,对谷氨酸(VGluT),GABA(VGAT)或乙酰胆碱(VAChT)的囊泡转运蛋白(VTP)双重染色。通过荧光显微镜观察并通过体视学估计,发现BDA标记的静脉曲张中有VGluT2(而不是VGluT1或3),VGAT或VAChT(分别代表〜15%,〜52%和〜19%)被染色边缘皮层)。每种类型均存在于所有区域中,尽管通常最密集地存在于深层皮质中。将材料对突触后蛋白进行三重染色,以检查BDA + VTP +静脉曲张是否可能分别形成兴奋性或抑制性突触,分别用突触后密度95 kDA(PSD-95)或gephyrin(Geph)标记。通过共聚焦显微镜观察,发现大多数BDA + / VGluT2 +静脉曲张与PSD-95 +元素相关,而大多数BDA + / VGAT +静脉曲张与Geph +元素相关。其他系列对细胞标记蛋白进行了三重染色,以评估静脉曲张是否接触了中间神经元或锥体细胞。通过共聚焦显微镜观察,发现BDA标记的VGluT2 +,VGAT +和VAChT + BF末端均与calbindin +中间神经元接触,而VGAT + BF末端也与小白蛋白+中间神经元和非磷酸化神经丝+锥体细胞接触。通过不同的谷氨酸能,GABA能和胆碱能预测,BF可以以多种方式影响皮层活动。

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