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Updated: Jul 8, 2025

Murine Drinking Models in the Development of Pharmacotherapies for Alcoholism: Drinking in the Dark and Two-bottle Choice
Published on: January 7, 2019
Mu-opioid receptor knockout on Foxp2-expressing neurons reduces aversion-resistant alcohol drinking
Abstract:
Mu-opioid receptors (MORs) in the amygdala and striatum are important in addictive and rewarding behaviors. The transcription factor Foxp2 is a genetic marker of intercalated (ITC) cells in the amygdala and a subset of striatal medium spiny neurons (MSNs), both of which express MORs in wild-type mice and are neuronal subpopulations of potential relevance to alcohol-drinking behaviors. For the current series of studies, we characterized the behavior of mice with genetic deletion of the MOR gene Oprm1 in Foxp2-expressing neurons (Foxp2-Cre/Oprm1fl/fl). Male and female Foxp2-Cre/Oprm1fl/fl mice were generated and heterozygous Cre+ (knockout) and homozygous Cre- (control) animals were tested for aversion-resistant alcohol consumption using an intermittent access (IA) task, operant responding for a sucrose reward, conditioned place aversion (CPA) to morphine withdrawal, and locomotor sensitization to morphine. The results demonstrate that deletion of MOR on Foxp2-expressing neurons renders mice more sensitive to quinine-adulterated ethanol (EtOH). Mice with the deletion (vs. Cre- controls) also consumed less alcohol during the final sessions of the IA task, responded less for sucrose under an FR3 schedule, and were less active at baseline and following morphine injection. Foxp2-MOR deletion did not impair the ability to learn to respond for reward or develop a conditioned aversion to morphine withdrawal. Together, these investigations demonstrate that Foxp2-expressing neurons may be involved in escalation of alcohol consumption and the development of compulsive-like alcohol drinking.
Insights
Deleting mu-opioid receptors (MORs) in Foxp2-expressing neurons reduced alcohol consumption and reward-seeking behaviors in mice. This suggests these neurons play a role in addiction and compulsive drinking.
Area of Science:
- Neuroscience
- Addiction Research
- Genetics
Background:
- Mu-opioid receptors (MORs) in the amygdala and striatum are crucial for addictive and rewarding behaviors.
- Foxp2 is a marker for specific neuronal populations (intercalated cells and striatal medium spiny neurons) that express MORs and may influence alcohol consumption.
Purpose of the Study:
- To investigate the role of MORs in Foxp2-expressing neurons in alcohol consumption and related behaviors.
- To characterize the behavioral effects of deleting the MOR gene (Oprm1) in Foxp2-expressing neurons.
Main Methods:
- Generated mice with genetic deletion of MOR in Foxp2-expressing neurons (Foxp2-Cre/Oprm1fl/fl).
- Assessed alcohol consumption using an intermittent access (IA) task.
- Evaluated operant responding for sucrose reward, conditioned place aversion to morphine withdrawal, and locomotor activity.
Main Results:
- Deletion of MOR in Foxp2-expressing neurons increased sensitivity to quinine-adulterated ethanol.
- These mice consumed less alcohol during IA, responded less for sucrose, and showed reduced locomotor activity.
- The ability to learn reward tasks and develop morphine withdrawal aversion remained intact.
Conclusions:
- Foxp2-expressing neurons, by expressing MORs, are implicated in the escalation of alcohol intake.
- These findings suggest a role for Foxp2-MOR neurons in the development of compulsive-like alcohol drinking behaviors.
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