Related Experiment Video
Updated: Mar 31, 2026

Modeling Fetal Alcohol Spectrum Disorders in Zebrafish to Characterize the Impact of an Adverse Embryonic Environment on Adult Social Behavior
Published on: February 9, 2024
Fentanyl and alcohol co-exposure induce robust, sustained hyperlocomotion and neural circuit disruption in larval
Courtney Hillman1, James Kearn2, Matthew J Winter3
1Surrey Sleep Research Centre, Department of Clinical and Experimental Medicine, School of Biosciences, University of Surrey, Guildford, Surrey GU2 7XH, UK.
Abstract:
The increasing prevalence of poly-substance misuse, particularly co-use of synthetic opioids and alcohol, poses significant health risks, yet their combined neurobehavioral effects remain poorly understood. Here we used larval zebrafish to investigate interactions between fentanyl and ethanol, employing behavioral assays and in vivo whole-brain calcium imaging. Co-exposure induced a distinctive biphasic locomotor response characterized by initial suppression followed by sustained hyperlocomotion, which was replicated with other opioids but not with GABAA modulators, indicating an opioid- and ethanol-specific effect. Imaging revealed widespread neuronal hyperactivity and dysregulation during co-exposure compared to individual treatments. These findings reveal complex neurobehavioral mechanisms underlying opioid and alcohol co-use, highlighting ethanol's potentiation of opioid effects and suggesting larval zebrafish as a valuable model for studying poly-substance abuse. This work provides foundational insights that may inform future therapeutic strategies for managing opioid-alcohol co-intoxication.

