Naltrexone and alcohol drinking in mice lacking beta-endorphin by site-directed mutagenesis

N J Grahame1, A K Mosemiller, M J Low

  • 1Departments of Medicine and Psychiatry, Indiana University School of Medicine, 791 Union Drive PR 311, Indianapolis, IN 46222, USA. ngrahame@iupui.edu

Insights

Eliminating beta-endorphin (BE) synthesis in mice did not affect long-term alcohol intake but increased it initially and after short deprivation periods. Opioid receptor blockade reduced drinking in both BE-deficient and wildtype mice.

Area of Science:

  • Neuroscience
  • Genetics
  • Pharmacology

Background:

  • Alcohol's reinforcing effects are partly mediated by the opioid system.
  • Beta-endorphin (BE) is a key endogenous opioid implicated in reward pathways.

Purpose of the Study:

  • To investigate the role of beta-endorphin (BE) synthesis in alcohol consumption and intake regulation.
  • To determine if eliminating BE affects alcohol intake patterns in mice.

Main Methods:

  • Generated beta-endorphin (BE)-deficient mice using site-directed mutagenesis in embryonic stem cells.
  • Administered alcohol (10% v/v) under various access conditions (24h, scheduled) and deprivation periods.
  • Assessed alcohol intake following naltrexone or saline treatment in BE-deficient and wildtype (WT) mice.

Main Results:

  • BE-deficient and WT mice showed similar alcohol intake with chronic access.
  • BE-deficient mice exhibited greater alcohol intake during initial scheduled access and after 2-day deprivation.
  • Naltrexone reduced alcohol intake in both BE-deficient and WT mice, indicating opioid receptor involvement.

Conclusions:

  • BE synthesis plays a role in the initial stages of alcohol intake and during short-term withdrawal.
  • Opioid receptor activation contributes to alcohol consumption regardless of BE deficiency.