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低纹状体紧张性多巴胺小鼠模型中增强的认知灵活性和阶段性纹状体多巴胺动态变化

Enhanced cognitive flexibility and phasic striatal dopamine dynamics in a mouse model of low striatal tonic dopamine.

作者信息

Delaney Jena, Nathani Sanya, Tan Victor, Chavez Carson, Orr Alexander, Paek Joon, Faraji Mojdeh, Setlow Barry, Urs Nikhil M

机构信息

Department of Pharmacology and Therapeutics, University of Florida, Gainesville, FL, 32610, USA.

Department of Psychiatry, University of Florida, Gainesville, FL, 32610, USA.

出版信息

Neuropsychopharmacology. 2024 Sep;49(10):1600-1608. doi: 10.1038/s41386-024-01868-5. Epub 2024 May 2.

Abstract

The catecholamine neuromodulators dopamine and norepinephrine are implicated in motor function, motivation, and cognition. Although roles for striatal dopamine in these aspects of behavior are well established, the specific roles for cortical catecholamines in regulating striatal dopamine dynamics and behavior are less clear. We recently showed that elevating cortical dopamine but not norepinephrine suppresses hyperactivity in dopamine transporter knockout (DAT-KO) mice, which have elevated striatal dopamine levels. In contrast, norepinephrine transporter knockout (NET-KO) mice have a phenotype distinct from DAT-KO mice, as they show elevated extracellular cortical catecholamines but reduced baseline striatal dopamine levels. Here we evaluated the consequences of altered catecholamine levels in NET-KO mice on cognitive flexibility and striatal dopamine dynamics. In a probabilistic reversal learning task, NET-KO mice showed enhanced reversal learning, which was consistent with larger phasic dopamine transients (dLight) in the dorsomedial striatum (DMS) during reward delivery and reward omission, compared to WT controls. Selective depletion of dorsal medial prefrontal cortex (mPFC) norepinephrine in WT mice did not alter performance on the reversal learning task but reduced nestlet shredding. Surprisingly, NET-KO mice did not show altered breakpoints in a progressive ratio task, suggesting intact food motivation. Collectively, these studies show novel roles of cortical catecholamines in the regulation of tonic and phasic striatal dopamine dynamics and cognitive flexibility, updating our current views on dopamine regulation and informing future therapeutic strategies to counter multiple psychiatric disorders.

摘要

儿茶酚胺神经调质多巴胺和去甲肾上腺素与运动功能、动机和认知有关。尽管纹状体多巴胺在这些行为方面的作用已得到充分证实,但皮质儿茶酚胺在调节纹状体多巴胺动态和行为中的具体作用尚不清楚。我们最近发现,提高皮质多巴胺水平而非去甲肾上腺素水平可抑制多巴胺转运体敲除(DAT-KO)小鼠的多动,这些小鼠的纹状体多巴胺水平升高。相比之下,去甲肾上腺素转运体敲除(NET-KO)小鼠具有与DAT-KO小鼠不同的表型,因为它们的细胞外皮质儿茶酚胺水平升高,但基线纹状体多巴胺水平降低。在这里,我们评估了NET-KO小鼠儿茶酚胺水平改变对认知灵活性和纹状体多巴胺动态的影响。在概率性反转学习任务中,与野生型对照组相比,NET-KO小鼠表现出增强的反转学习能力,这与奖励发放和奖励遗漏期间背内侧纹状体(DMS)中较大的阶段性多巴胺瞬变(dLight)一致。在野生型小鼠中选择性耗尽背内侧前额叶皮质(mPFC)中的去甲肾上腺素不会改变反转学习任务的表现,但会减少筑巢材料的撕碎行为。令人惊讶的是,NET-KO小鼠在渐进比率任务中没有表现出断点改变,表明其食物动机完好。总的来说,这些研究揭示了皮质儿茶酚胺在调节纹状体多巴胺的紧张性和阶段性动态以及认知灵活性方面的新作用,更新了我们目前对多巴胺调节的看法,并为对抗多种精神疾病的未来治疗策略提供了信息。

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