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小脑对中脑边缘多巴胺传递的调制具有功能不对称性。

Cerebellar Modulation of Mesolimbic Dopamine Transmission Is Functionally Asymmetrical.

机构信息

Department of Psychology, University of Memphis, Memphis, TN, 38152-3520, USA.

出版信息

Cerebellum. 2019 Oct;18(5):922-931. doi: 10.1007/s12311-019-01074-w.

Abstract

Cerebral and cerebellar hemispheres are known to be asymmetrical in structure and function, and previous literature supports that asymmetry extends to the neural dopamine systems. Using in vivo fixed potential amperometry with carbon fiber microelectrodes in anesthetized mice, the current study assessed hemispheric lateralization of stimulation-evoked dopamine in the nucleus accumbens (NAc) and the influence of the cerebellum in regulating this reward-associated pathway. Our results suggest that cerebellar output can modulate mesolimbic dopamine transmission, and this modulation contributes to asymmetrically lateralized dopamine release. Dopamine release did not differ between hemispheres when evoked by medial forebrain bundle (MFB) stimulation; however, dopamine release was significantly greater in the right NAc relative to the left when evoked by electrical stimulation of the cerebellar dentate nucleus (DN). Furthermore, cross-hemispheric talk between the left and right cerebellar DN does not seem to influence mesolimbic release given that lidocaine infused into the DN opposite to the stimulated DN did not alter release. These studies may provide a neurochemical mechanism for studies identifying the cerebellum as a relevant node for reward, motivational behavior, saliency, and inhibitory control. An increased understanding of the lateralization of dopaminergic systems may reveal novel targets for pharmacological interventions in neuropathology of the cerebellum and extending projections.

摘要

大脑的左右半球在结构和功能上是不对称的,先前的文献支持这种不对称性延伸到神经多巴胺系统。本研究采用麻醉小鼠体内固定电位安培法和碳纤维微电极,评估了伏隔核(NAc)中刺激诱发的多巴胺的半球侧化,以及小脑对调节这种与奖励相关的途径的影响。我们的结果表明,小脑输出可以调节中脑边缘多巴胺传递,这种调节有助于多巴胺释放的不对称侧化。当通过中脑束(MFB)刺激诱发时,两个半球之间的多巴胺释放没有差异;然而,当通过电刺激小脑齿状核(DN)诱发时,右侧 NAc 的多巴胺释放明显大于左侧。此外,由于将利多卡因注入与刺激的 DN 相对的 DN 中并没有改变释放,因此左、右小脑 DN 之间的交叉半球对话似乎不会影响中脑边缘释放。这些研究可能为将小脑确定为奖励、动机行为、显着性和抑制控制的相关节点的研究提供神经化学机制。对多巴胺能系统侧化的理解的增加可能会揭示小脑和延伸投射的神经病理学中药物干预的新靶点。

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