5-MeO-DMT induces sleep-like LFP spectral signatures in the hippocampus and prefrontal cortex of awake rats.
Annie C Souza, Bryan C Souza, Arthur França, Marzieh Moradi, Nicholy C Souza, Katarina E Leão, Adriano B L Tort, Richardson N Leão, Vítor Lopes-Dos-Santos, Sidarta Ribeiro
Scientific reports May 17, 2024 DOI: 10.1038/s41598-024-61474-9 via PubMed
Summary
AI-generated from the abstractThe psychedelic 5-MeO-DMT alters brain activity in rats by increasing delta waves and decreasing theta waves in the hippocampus, changes that are not explained by movement. It also reduces slow and mid gamma power and disrupts theta phase modulation. The overall brain state resembles patterns seen during slow-wave sleep and REM sleep, suggesting that the drug's effects involve mixing waking behavior with sleep-like neural oscillations.
Study at a glance
| Characteristics | Observational study Peer reviewed |
|---|---|
| Population | Freely behaving rats |
| Intervention | 5-MeO-DMT |
| Topics | 5-MeO-DMT |
| Keywords | Hippocampal oscillations Prefrontal cortex Psychedelics hallucinogens Entheogens |
| Citations | 7 |
| Key finding | 5-MeO-DMT induces hippocampal and prefrontal cortex local field potential patterns similar to sleep states, independent of locomotion. |
Abstract
5-methoxy-N,N-dimethyltryptamine (5-MeO-DMT) is a potent classical psychedelic known to induce changes in locomotion, behaviour, and sleep in rodents. However, there is limited knowledge regarding its acute neurophysiological effects. Local field potentials (LFPs) are commonly used as a proxy for neural activity, but previous studies investigating psychedelics have been hindered by confounding effects of behavioural changes and anaesthesia, which alter these signals. To address this gap, we investigated acute LFP changes in the hippocampus (HP) and medial prefrontal cortex (mPFC) of freely behaving rats, following 5-MeO-DMT administration. 5-MeO-DMT led to an increase of delta power and a decrease of theta power in the HP LFPs, which could not be accounted for by changes in locomotion. Furthermore, we observed a dose-dependent reduction in slow (20-50 Hz) and mid (50-100 Hz) gamma power, as well as in theta phase modulation, even after controlling for the effects of speed and theta power. State map analysis of the spectral profile of waking behaviour induced by 5-MeO-DMT revealed similarities to electrophysiological states observed during slow-wave sleep (SWS) and rapid-eye-movement (REM) sleep. Our findings suggest that the psychoactive effects of classical psychedelics are associated with the integration of waking behaviours with sleep-like spectral patterns in LFPs.