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5-MeO-DMT modifies innate behaviors and promotes structural neural plasticity in mice

Sarah J. Jefferson, Ian Gregg, Mark Dibbs, Clara Liao, Hao Wu, Pasha A. Davoudian, Jeffrey Sprouse, Alexander M. Sherwood, Alfred P. Kaye, Christopher Pittenger, Alex C. Kwan

bioRxiv (Cold Spring Harbor Laboratory) November 3, 2022 preprint DOI: 10.1101/2022.11.03.515044 via OpenAlex

Summary

AI-generated from the abstract

The short-acting psychedelic 5-MeO-DMT increases head-twitch response in mice in a dose-dependent manner, with a shorter duration than psilocybin. It strongly suppresses social ultrasonic vocalizations during mating behavior and produces long-lasting increases in dendritic spine density in the medial frontal cortex by elevating the rate of spine formation, but unlike psilocybin, it does not affect spine size. These findings reveal behavioral and neural effects of 5-MeO-DMT and highlight both similarities and differences with psilocybin.

Study at a glance

Characteristics Preclinical animal study
Population Mice
Interventions 5-MeO-DMT psilocybin
Topics Psilocybin Serotonin
Keywords Dendritic spine Neuroscience Inhibitory postsynaptic potential
Citations 5
Key finding 5-MeO-DMT induces a shorter-duration head-twitch response than psilocybin, suppresses mating-related ultrasonic vocalizations, and increases dendritic spine density in the medial frontal cortex through elevated spine formation without altering spine size.

Abstract

ABSTRACT Serotonergic psychedelics are gaining increasing interest as potential therapeutics for a range of mental illnesses. Compounds with short-lived subjective effects may be clinically useful because dosing time would be reduced, which may improve patient access. One short-acting psychedelic is 5-MeO-DMT, which has been associated with improvement in depression and anxiety symptoms in early clinical studies. However relatively little is known about the behavioral effects and neural mechanisms of 5-MeO-DMT in animal models. Here we characterized the effects of 5-MeO-DMT on innate behaviors and dendritic architecture in mice. We showed that 5-MeO-DMT induces a dose-dependent increase in head-twitch response that is shorter in duration than that induced by psilocybin at all doses tested. 5-MeO-DMT also substantially suppresses social ultrasonic vocalizations produced during mating behavior. 5-MeO-DMT produces long-lasting increases in dendritic spine density in the mouse medial frontal cortex that are driven by an elevated rate of spine formation. However, unlike psilocybin, 5-MeO-DMT did not affect the size of dendritic spines. These data provide insights into the behavioral and neural consequences underlying the action of 5-MeO-DMT and highlight similarities and differences with those of psilocybin.

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