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Repeated Binge Alcohol Drinking Leads to Reductions in Corticostriatal Theta Coherence in Female but Not Male Mice

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Journal bioRxiv
Date 2024 Mar 18
PMID 38496601
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Abstract

Decreased functional connectivity between the striatum and frontal cortex is observed in individuals with alcohol use disorder (AUD), and predicts the probability of relapse in abstinent individuals with AUD. To further our understanding of how repeated alcohol (ethanol; EtOH) consumption impacts the corticostriatal circuit, extracellular electrophysiological recordings (local field potentials; LFPs) were gathered from the nucleus accumbens (NAc) and prefrontal cortex (PFC) of C57BL/6J mice voluntarily consuming EtOH or water using a 'drinking-in-the-dark' (DID) procedure. Following a three-day acclimation period wherein only water access was provided during DID, mice were given 15 consecutive days of access to EtOH. Each session consisted of a 30-minute baseline period where water was available and was followed immediately by a 2-hour period where sippers containing water were replaced with new sippers containing either unsweetened 20% (v/v) EtOH (days 4-18; DID) or water (days 1-3; acclimation). Our analyses focused primarily on theta coherence during bouts of drinking, as differences in this band are associated with several behavioral markers of AUD. Both sexes displayed decreases in theta coherence during the first day of binge EtOH consumption. However, only females displayed further decreases in theta coherence on the 14 day of EtOH access. No differences in theta coherence were observed between the first and final bout on any EtOH drinking days. These results provide additional support for decreases in the functional coupling of corticostriatal circuits as a consequence of alcohol consumption and suggests that female mice are uniquely vulnerable to these effects following repeated EtOH drinking.

References
1.
Henricks A, Sullivan E, Dwiel L, Keus K, Adner E, Green A . Sex differences in the ability of corticostriatal oscillations to predict rodent alcohol consumption. Biol Sex Differ. 2019; 10(1):61. PMC: 6918672. DOI: 10.1186/s13293-019-0276-0. View

2.
Holahan C, Holahan C, Moos R . Binge Drinking and Alcohol Problems Among Moderate Average-Level Drinkers. Am J Prev Med. 2022; 63(3):324-330. DOI: 10.1016/j.amepre.2022.03.021. View

3.
Timme N, Ma B, Linsenbardt D, Cornwell E, Galbari T, Lapish C . Compulsive alcohol drinking in rodents is associated with altered representations of behavioral control and seeking in dorsal medial prefrontal cortex. Nat Commun. 2022; 13(1):3990. PMC: 9271071. DOI: 10.1038/s41467-022-31731-4. View

4.
Belin D, Jonkman S, Dickinson A, Robbins T, Everitt B . Parallel and interactive learning processes within the basal ganglia: relevance for the understanding of addiction. Behav Brain Res. 2008; 199(1):89-102. DOI: 10.1016/j.bbr.2008.09.027. View

5.
Linsenbardt D, Lapish C . Neural Firing in the Prefrontal Cortex During Alcohol Intake in Alcohol-Preferring "P" Versus Wistar Rats. Alcohol Clin Exp Res. 2015; 39(9):1642-53. PMC: 4558392. DOI: 10.1111/acer.12804. View