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Published on: January 29, 2017
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
Abstract:
Alcohol-induced activation of the opioid system may contribute to the reinforcing properties of alcohol. This study investigated whether elimination of beta-endorphin (BE) synthesis via site-directed mutagenesis in embryonic stem cells would alter alcohol intake in mice. Both BE-deficient and wildtype (WT) mice generated from the targeted stem cells were backcrossed for nine generations onto a C57BL/6 background, and were maintained with ad libitum food and water. Mice had access to alcohol (10% v/v) under the following conditions: 24 h, scheduled access for 2 h/day, following acute (1 or 2 days) or chronic (5 weeks) alcohol deprivation, and scheduled access following six doses of naltrexone (0.125-16.0 mg/kg BW, ip) or saline treatment. Alcohol intake was similar in BE-deficient and WT mice given chronic access to alcohol, but greater in BE-deficient compared with WT mice during the first 10 days of scheduled access to alcohol, but not after more extensive experience with scheduled access. BE-deficient, but not WT mice, increased alcohol intake following 2 days, but not 1 day or 5 weeks, of deprivation. Naltrexone reduced alcohol drinking both in BE-deficient and WT mice, suggesting that drinking is mediated, in part, by activation of opioid receptors in both genotypes.
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.

