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Somatostatin neurons in the bed nucleus of the stria terminalis play a sex-dependent role in binge Drinking

Authors :
Malini Suresh Nair
Nigel C. Dao
Daniela Lopez Melean
Keith R. Griffith
W. David Starnes
J. Brody Moyer
Avery R. Sicher
Dakota F. Brockway
Kathleen D. Meeks
Nicole A Crowley
Source :
Brain Research Bulletin. 186:38-46
Publication Year :
2022
Publisher :
Elsevier BV, 2022.

Abstract

Alcohol use disorder (AUD) is characterized by alcohol use coupled with chronic relapse and involves brain regions including the bed nucleus of the stria terminalis (BNST). Here, we explore whether a subpopulation of BNST neurons, somatostatin (SST) expressing GABAergic neurons, play a role in an animal model of binge-like alcohol consumption, the Drinking in the Dark (DID) model. Chemogenetic activation of BNST SST neurons reduced binge alcohol consumption in female but not male SST-Cre mice, while inhibition of these neurons in the same mice had no effect. In addition, chemogenetic activation of these neurons did not cause apparent changes in models of anxiety-like behavior in either sex. Basal SST cell counts and intrinsic excitability of SST neurons were compared to attempt to understand sex differences in DREADD-induced changes in drinking, and while males had a greater number of BNST SST neurons, this effect went away when normalizing for total BNST volume. Together, these results suggest SST neurons in the BNST should be further explored as a potential neuronal subtype modulated by AUD, and for their therapeutic potential.HIGHLIGHTSChemogenetic activation of BNST SST neurons reduces binge drinking in female but not male miceChemogenetic activation of these neurons has no effect on anxiety-like behavior in either sexElectrophysiology revealed no clear sex differences in intrinsic excitability BNST SST neurons between males and femalesImaging revealed males had greater overall BNST SST cell numbers than females, but this effect could be explained by normalizing for total BNST volume

Details

ISSN :
03619230
Volume :
186
Database :
OpenAIRE
Journal :
Brain Research Bulletin
Accession number :
edsair.doi.dedup.....0800b0e7c229f93f16a9f0ffc5e79287