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Castle, M. E.

Publications and source records attributed to Castle, M. E..

2 recordsLinked to original sources

Bed Nucleus of the Stria Terminalis (BNST) neurons containing the serotonin 5HT2c receptor modulate operant alcohol self-administration behavior in mice

The serotonin 5HT2c receptor has been widely implicated in the pathophysiology of alcohol use disorder (AUD), particularly alcohol seeking and the affective consequences of chronic alcohol consumption. However, little is known about the brain sites in which 5HT2c exerts its effects on specific alcohol-related behaviors, especially in females. Here, we investigated the effects of site-specific manipulation of the 5HT2c receptor system in the BNST on operant alcohol self-administration behaviors in adult mice of both sexes, including the acquisition and maintenance of fixed-ratio responding, motivation for alcohol (progressive ratio), and quinine-adulterated responding for alcohol on a fixed-ratio schedule (punished alcohol seeking). Knockdown of 5HT2c in the BNST did not affect the acquisition or maintenance of operant alcohol self-administration, nor did it affect progressive ratio responding for alcohol. This manipulation had only a subtle effect on responding for quinine alcohol selectively in females. On the other hand, chemogenetic inhibition of BNST 5HT2c-containing neurons (BNST5HT2c) increased operant alcohol self-administration behavior in both sexes on day 2, but not day 9, of testing. It also increased operant responding for 1000 M quinine-adulterated alcohol selectively in males. Importantly, chemogenetic inhibition of BNST5HT2c did not alter operant sucrose responding or motivation for sucrose in either sex. We then performed cell-type specific anterograde tracing, which revealed that BNST5HT2c project to similar regions in males and females, many of which have been previously implicated in AUD. We next used chemogenetics and quantification of the immediate early gene cFos to characterize the functional influence of BNST5HT2c inhibition on vlPAG activity. We show that chemogenetic inhibition of BNST5HT2c reduces vlPAG cFos in both sexes, but that this reduction is more robust in males. Together these findings suggest that BNST5HT2c neurons, and to a small extent the BNST 5HT2c receptor, serve to promote aversive responses to alcohol consumption, potentially through sex-dependent disinhibition of vlPAG neurons.

neuroscience↗

Sex-specific regulation of binge drinking and affective behaviors by subcortical serotonin 5HT2c receptors

Serotonin 5HT2c receptors have been implicated in the pathophysiology of both mood disorders and alcohol use disorder, but the circuits mediating the effects of systemic pharmacological manipulations of this receptor on behavior have not been identified. Binge alcohol consumption induces discrete social and arousal disturbances in human populations, which are thought to promote increased drinking. However, whether models of binge drinking in rodents can induce these same long-term negative behavioral symptoms is unknown. In this study, we employed multiple anatomical, physiological, and behavioral approaches to identify two populations of neurons expressing serotonin 5HT2c receptors, one in the lateral habenula (LHb5HT2c) and one in the bed nucleus of the stria terminalis (BNST5HT2c), that display coordinated in-vivo responses to social, arousal, and alcohol-related stimuli and are physiologically modulated by binge alcohol consumption in a sex-specific manner. Critically, these physiological changes were associated with sex-specific behavioral disturbances that closely mirror social and arousal symptoms observed in humans during abstinence from binge drinking. Specifically, we observed that one week of abstinence from three weeks of binge alcohol drinking induced social recognition deficits in females and potentiated acoustic startle responses in males. While both populations of neurons (BNST and LHb) and the 5HT2c receptor itself contribute to the sex-specific effects of alcohol on social and arousal behaviors to some degree, the primary causal mechanism underlying these phenomena appears to be excessive activation of LHb5HT2c neurons. These findings may have implications for the development of sex-specific treatments for mood and alcohol use disorders targeting the brains serotonin system.

neuroscience↗