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Segregated cholinergic transmission modulates dopamine neurons integrated in distinct functional circuits

机译:隔离的胆碱能传导调节集成在不同功能电路中的多巴胺神经元

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Dopamine neurons in the ventral tegmental area (VTA) receive cholinergic innervation from brainstem structures that are associated with either movement or reward. Whereas cholinergic neurons of the pedunculopontine nucleus (PPN) carry an associative/motor signal, those of the laterodorsal tegmental nucleus (LDT) convey limbic information. We used optogenetics and in vivo juxtacellular recording and labeling to examine the influence of brainstem cholinergic innervation of distinct neuronal subpopulations in the VTA. We found that LDT cholinergic axons selectively enhanced the bursting activity of mesolimbic dopamine neurons that were excited by aversive stimulation. In contrast, PPN cholinergic axons activated and changed the discharge properties of VTA neurons that were integrated in distinct functional circuits and were inhibited by aversive stimulation. Although both structures conveyed a reinforcing signal, they had opposite roles in locomotion. Our results demonstrate that two modes of cholinergic transmission operate in the VTA and segregate the neurons involved in different reward circuits.
机译:腹侧腹部区域(VTA)中的多巴胺神经元来自与移动或奖励相关的脑干结构的胆碱能物质。虽然pedinulopontine核(ppn)的胆碱能神经元携带缔合/电动机信号,但跨越的核心核(LDT)传达肢体信息。我们使用光源和体内Juxtacellular记录和标记,以检查VTA中不同神经元群的脑干胆碱能物质的影响。我们发现LDT Cholinergic轴突选择性地增强了由厌恶刺激激发的培养基多巴胺神经元的爆破活性。相反,PPN Cholineric轴突被激活并改变了集成在不同的功能电路中的VTA神经元的放电特性,并被厌恶刺激抑制。虽然两个结构都传达了一种增强信号,但它们在运动中具有相反的作用。我们的结果表明,在VTA中运行的两种胆碱能传动模式并分离涉及不同奖励电路的神经元。

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