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Confocal Analysis of Cholinergic and Dopaminergic Inputs onto Pyramidal Cells in the Prefrontal Cortex of Rodents

机译:啮齿类动物前额叶皮层锥体细胞中胆碱能和多巴胺能输入的共聚焦分析

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摘要

Cholinergic and dopaminergic projections to the rat medial prefrontal cortex (mPFC) are both involved in cognitive functions including attention. These neuronal systems modulate mPFC neuronal activity mainly through diffuse transmission. In order to better understand the anatomical level of influence of these systems, confocal microscopy with triple-fluorescent immunolabeling was used in three subregions of the mPFC of rats and Drd1a-tdTomato/Drd2-EGFP transgenic mice. The zone of interaction was defined as a reciprocal microproximity between dopaminergic and cholinergic axonal segments as well as pyramidal neurons. The density of varicosities, along these segments was considered as a possible activity-dependant morphological feature. The percentage of cholinergic and dopaminergic fibers in microproximity ranged from 12 to 40% depending on the layer and mPFC subregion. The cholinergic system appeared to have more influence on dopaminergic fibers since a larger proportion of the dopaminergic fibers were within microproximity to cholinergic fibers. The density of both cholinergic and dopaminergic varicosities was significantly elevated within microproximities. The main results indicate that the cholinergic and dopaminergic systems converge on pyramidal cells in mPFC particularly in the layer V. In transgenic mice 93% of the pyramidal cells expressed the transgenic marker for Drd2 expression, but only 22% expressed the maker for Drd1ar expression. Data presented here suggest that the modulation of mPFC by dopaminergic fibers would be mostly inhibitory and localized at the output level whereas the cholinergic modulation would be exerted at the input and output level both through direct interaction with pyramidal cells and dopaminergic fibers.
机译:胆碱能和多巴胺能投射到大鼠内侧前额叶皮层(mPFC)均参与认知功能,包括注意力。这些神经系统主要通过扩散传播来调节mPFC神经元的活动。为了更好地了解这些系统的解剖学水平,在大鼠和Drd1a-tdTomato / Drd2-EGFP转基因小鼠的mPFC的三个子区域中使用了具有三重荧光免疫标记的共聚焦显微镜。相互作用区域定义为多巴胺能和胆碱能轴突节段以及锥体神经元之间的相互接近。沿着这些节段的静脉曲张密度被认为是可能的依赖于活动的形态特征。胆碱能和多巴胺能纤维在微邻近区域的百分比范围为12%至40%,具体取决于层和mPFC子区域。胆碱能系统似乎对多巴胺能纤维具有更大的影响,因为较大比例的多巴胺能纤维在微邻近胆碱能纤维的范围内。在微邻近范围内,胆碱能和多巴胺能静脉曲张的密度均显着升高。主要结果表明,胆碱能系统和多巴胺能系统在mPFC中的锥体细胞上会聚,尤其是在V层。在转基因小鼠中,有93%的锥体细胞表达了Drd2表达的转基因标记,但只有22%的表达了Drd1ar表达的产生子。此处提供的数据表明,多巴胺能纤维对mPFC的调节主要是抑制性的,并局限在输出水平,而胆碱能调节将通过与锥体细胞和多巴胺能纤维的直接相互作用在输入和输出水平发挥。

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