Biased allosteric modulator of neurotensin receptor 1 reduces ethanol drinking and responses to ethanol administration in rodents

Graydon B. Gereau, Diana Zhou, Kalynn Van Voorhies, Ryan E. Tyler, Jeffrey Campbell, Jackson G. Murray, Ali Alvarez-Pamir, Luke A. Wykoff, Michel A. Companion, Michael R. Jackson, Steven H. Olson, Lawrence S. Barak, Lauren M. Slosky, Ryan P. Vetreno, Joyce Besheer, Zoe A. McElligott

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Alcohol use disorders (AUDs) impose an enormous societal and financial burden, and world-wide, alcohol misuse is the 7th leading cause of premature death [1]. Despite this, there are currently only 3 FDA approved pharmacological approaches for the treatment of AUDs in the United States. The neurotensin (Nts) system has long been implicated in modulating behaviors associated with alcohol misuse. Recently, a novel compound, SBI-553, that biases the action of Nts receptor 1 (NTSR1) activation, has shown promise in preclinical models of psychostimulant use. Here we investigate the efficacy of this compound to alter ethanol-mediated behaviors in a comprehensive battery of experiments assessing ethanol consumption, behavioral responses to ethanol, physiological sensitivity to ethanol, and ethanol metabolism. Additionally, we investigated behavior in avoidance and cognitive assays to monitor potential side effects of SBI-553. We find that SBI-553 reduces ethanol consumption in mice without altering avoidance behavior or novel object recognition. We also observe sex-dependent differences in physiological responses to sequential ethanol injections in mice. In rats, we show that SBI-553 attenuates sensitivity to the interoceptive effects of ethanol (using a Pavlovian drug discrimination task). Our data suggest that targeting NTSR1 signaling may be promising to attenuate alcohol misuse, and adds to a body of literature that suggests NTSR1 may be a common downstream target involved in the psychoactive effects of multiple reinforcing substances.

Original languageEnglish (US)
Article number100185
JournalAddiction Neuroscience
Volume13
DOIs
StatePublished - Dec 2024

Bibliographical note

Publisher Copyright:
© 2024

Keywords

  • Alcohol use disorder
  • Beta-arrestin
  • Mouse
  • Neurotensin
  • Rat

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