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PNAS Plus: Forebrain dopamine neurons project down to a brainstem region controlling locomotion

机译:PNAS Plus:前脑多巴胺神经元向下投射到控制运动的脑干区域

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摘要

The contribution of dopamine (DA) to locomotor control is traditionally attributed to ascending dopaminergic projections from the substantia nigra pars compacta and the ventral tegmental area to the basal ganglia, which in turn project down to the mesencephalic locomotor region (MLR), a brainstem region controlling locomotion in vertebrates. However, a dopaminergic innervation of the pedunculopontine nucleus, considered part of the MLR, was recently identified in the monkey. The origin and role of this dopaminergic input are unknown. We addressed these questions in a basal vertebrate, the lamprey. Here we report a functional descending dopaminergic pathway from the posterior tuberculum (PT; homologous to the substantia nigra pars compacta and/or ventral tegmental area of mammals) to the MLR. By using triple labeling, we found that dopaminergic cells from the PT not only project an ascending pathway to the striatum, but send a descending projection to the MLR. In an isolated brain preparation, PT stimulation elicited excitatory synaptic inputs into patch-clamped MLR cells, accompanied by activity in reticulospinal cells. By using voltammetry coupled with electrophysiological recordings, we demonstrate that PT stimulation evoked DA release in the MLR, together with the activation of reticulospinal cells. In a semi-intact preparation, stimulation of the PT elicited reticulospinal activity together with locomotor movements. Microinjections of a D1 antagonist in the MLR decreased the locomotor output elicited by PT stimulation, whereas injection of DA had an opposite effect. It appears that this descending dopaminergic pathway has a modulatory role on MLR cells that are known to receive glutamatergic projections and promotes locomotor output.
机译:传统上,多巴胺(DA)对运动控制的贡献是从黑质致密部和腹侧被盖区到基底神经节的多巴胺能投射上升,而神经节又向下投射到中脑运动区(MLR),即脑干区。控制脊椎动物的运动。但是,最近在猴子中发现了被认为是MLR一部分的足小神经足核的多巴胺能神经支配。这种多巴胺能输入的起源和作用尚不清楚。我们在基础脊椎动物七lamp鳗中解决了这些问题。在这里,我们报告了从后结核(PT;与黑质致密部和/或哺乳动物腹侧被盖区同源)的功能性多巴胺能下降途径。通过使用三重标记,我们发现来自PT的多巴胺能细胞不仅向纹状体投射上升途径,而且向MLR发送下降的投射。在孤立的大脑准备中,PT刺激将兴奋性突触输入到膜片钳MLR细胞中,并伴有网状脊髓细胞的活性。通过使用伏安法与电生理记录相结合,我们证明了PT刺激引起了MLR中DA的释放以及网状脊髓细胞的激活。在半完整制剂中,对PT的刺激会引起网状脊髓活动以及运动性运动。在MLR中微量注射D1拮抗剂可降低PT刺激引起的运动输出,而注射DA则具有相反的作用。看来这种下降的多巴胺能途径对已知接受谷氨酸能投射并促进运动输出的MLR细胞具有调节作用。

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