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EEG Gamma Band Alterations and REM-like Traits Underpin the Acute Effect of the Atypical Psychedelic Ibogaine in the Rat.

Joaquín González, Matías Cavelli, Santiago Castro-Zaballa, Alejandra Mondino, Adriano B L Tort, Nicolás Rubido, Ignacio Carrera, Pablo Torterolo

ACS pharmacology & translational science April 9, 2021 DOI: 10.1021/acsptsci.0c00164 via PubMed

Summary

AI-generated from the abstract

Ibogaine, a psychedelic alkaloid with anti-addictive potential, produces vivid, dream-like experiences while awake. Analyzing intracranial electroencephalograms in rats, ibogaine-induced wakefulness showed gamma oscillations with greater power than control levels but reduced coherence and complexity. This gamma activity profile resembled that of natural REM sleep, providing biological evidence linking the psychedelic state to REM sleep and advancing understanding of ibogaine's oneirogenic effects.

Study at a glance

Characteristics Observational study Peer reviewed
Population Rats
Intervention Ibogaine
Topics Ibogaine
Keywords Anti-addictive potential Waking dream Dream-like effects Vivid effects Natural rem sleep
Citations 26
Key finding Ibogaine induces gamma oscillations during wakefulness that, despite higher power, are less coherent and less complex, similar to natural REM sleep.

Abstract

Ibogaine is a psychedelic alkaloid that has attracted large scientific interest because of its antiaddictive properties in observational studies in humans as well as in animal models. Its subjective effect has been described as intense, vivid dream-like experiences occurring while awake; hence, ibogaine is often referred to as an oneirogenic psychedelic. While this unique dream-like profile has been hypothesized to aid the antiaddictive effects, the electrophysiological signatures of this psychedelic state remain unknown. We previously showed in rats that ibogaine promotes a waking state with abnormal motor behavior along with a decrease in NREM and REM sleep. Here, we performed an in-depth analysis of the intracranial electroencephalogram during "ibogaine wakefulness". We found that ibogaine induces gamma oscillations that, despite having larger power than control levels, are less coherent and less complex. Further analysis revealed that this profile of gamma activity compares to that of natural REM sleep. Thus, our results provide novel biological evidence for the association between the psychedelic state and REM sleep, contributing to the understanding of the brain mechanisms associated with the oneirogenic psychedelic effect of ibogaine.

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