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Updated: Sep 15, 2026

A Procedure to Observe Context-induced Renewal of Pavlovian-conditioned Alcohol-seeking Behavior in Rats
Published on: September 19, 2014
Acquisition-Recruited and MOR-Expressing Striatal dMSNs Differentially Regulate Extinction and Cue-Induced Relapse of
Xueyi Xie1, Xuehua Wang1, Jun Wang1
1Department of Neuroscience and Experimental Therapeutics, Naresh K. Vashisht College of Medicine, Texas A&M University Health Science Center, Bryan, Texas, USA.
Abstract:
Relapse to alcohol use is frequently triggered by re-exposure to alcohol-associated cues, and extinction-based interventions can reduce this vulnerability. However, the striatal cellular mechanisms through which extinction alters later alcohol seeking remain unclear. Using a mouse model of operant alcohol self-administration, we examined two distinct direct-pathway medium spiny neuron (dMSN) populations in the dorsomedial striatum. Extinction reduced cue-induced alcohol seeking and decreased the probability that acquisition-recruited dMSNs were reactivated during relapse testing. Chemogenetically maintaining activity in acquisition-recruited dMSNs during extinction slowed the reduction in alcohol-seeking and enhanced subsequent relapse. In contrast, increasing activity in μ-opioid receptor (MOR)-expressing dMSNs, a striosome-enriched population, accelerated the reduction in responding and decreased later relapse without altering inactive-lever responding or locomotor activity. These findings indicate that extinction is associated with reduced re-engagement of acquisition-related dMSN ensembles, whereas enhancing activity in a MOR-defined, striosome-enriched output population can facilitate extinction-related behavioural change. Together, the results identify two complementary striatal processes that regulate alcohol extinction and relapse.

