Mu-opioid receptor knockout on Foxp2-expressing neurons reduces aversion-resistant 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.