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LSD Administered as a Single Dose Reduces Alcohol Consumption in C57BL/6J Mice

Kenneth Alper, Bin Dong, Relish Shah, Henry Sershen, Vinod Kumar

Frontiers in Pharmacology August 31, 2018 DOI: 10.3389/fphar.2018.00994 via OpenAlex

Summary

AI-generated from the abstract

A single high dose of LSD (50 μg/kg) reduced alcohol consumption by an average of 17.9% in adult male mice over 46 days, with no change in total fluid intake or activity. A lower dose (25 μg/kg) had no effect. The findings suggest classical hallucinogens warrant further animal research for addiction neurobiology and drug discovery.

Study at a glance

Characteristics Randomized controlled trial Peer reviewed
Population Adult male C57BL/6J mice
Intervention LSD
Dose 25 or 50 μg/kg
Duration 46 days following LSD administration
Topics LSD
Keywords Ethanol Hallucinogen Pharmacology Alcohol consumption
Citations 37
Key finding A single 50 μg/kg dose of LSD reduced ethanol consumption and preference in mice over 46 days, while 25 μg/kg had no significant effect.

Abstract

There is a substantive clinical literature on classical hallucinogens, most commonly lysergic acid diethylamide (LSD) for the treatment of alcohol use disorder. However, there has been no published research on the effect of LSD on alcohol consumption in animals. This study evaluated the effect of LSD in mice using a two-bottle choice alcohol drinking paradigm. Adult male C57BL/6J mice were exposed to ethanol to develop preference and divided into three groups of equal ethanol consumption, and then treated with single intraperitoneal injection of saline or 25 or 50 μg/kg LSD and offered water and 20% ethanol. The respective LSD-treated groups were compared to the control group utilizing a multilevel model for repeated measures. In mice treated with 50 μg/kg LSD ethanol consumption was reduced relative to controls (p = 0.0035), as was ethanol preference (p = 0.0024), with a group mean reduction of ethanol consumption of 17.9% sustained over an interval of 46 days following LSD administration. No significant effects on ethanol consumption or preference were observed in mice treated with 25 μg/kg LSD. Neither total fluid intake nor locomotor activity in the LSD-treated groups differed significantly from controls. These results suggest that classical hallucinogens in the animal model merit further study as a potential approach to the identification of targets for drug discovery and investigation of the neurobiology of addiction.

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