Molecular and circuit determinants in the globus pallidus mediating control of cocaine-induced behavioral plasticity.

苍白球中介导可卡因诱导行为可塑性控制的分子和回路决定因素

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作者:Tian Guilian, Bartas Katrina, Hui May, Chen Lingxuan, Vasquez Jose J, Azouz Ghalia, Derdeyn Pieter, Manville Rían W, Ho Erick L, Fang Amanda S, Li Yuan, Tyler Isabella, Setola Vincent, Aoto Jason, Abbott Geoffrey W, Beier Kevin T
The globus pallidus externus (GPe) is a central component of the basal ganglia circuit that acts as a gatekeeper of cocaine-induced behavioral plasticity. However, the molecular and circuit mechanisms underlying this function are unknown. Here, we show that GPe parvalbumin-positive (GPe(PV)) cells mediate cocaine responses by selectively modulating ventral tegmental area dopamine (VTA(DA)) cells projecting to the dorsomedial striatum (DMS). Interestingly, GPe(PV) cell activity in cocaine-naive mice is correlated with behavioral responses following cocaine, effectively predicting cocaine sensitivity. Expression of the voltage-gated potassium channels KCNQ3 and KCNQ5 that control intrinsic cellular excitability following cocaine was downregulated, contributing to the elevation in GPe(PV) cell excitability. Acutely activating channels containing KCNQ3 and/or KCNQ5 using the small molecule carnosic acid, a key psychoactive component of Salvia rosmarinus (rosemary) extract, reduced GPe(PV) cell excitability and impaired cocaine reward, sensitization, and volitional cocaine intake, indicating its therapeutic potential to counteract psychostimulant use disorder.

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