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The Effects of Daytime Psilocybin Administration on Sleep: Implications for Antidepressant Action

Daniela Dudysová, Karolína Janků, Michal Šmotek, Elizaveta Saifutdinová, Jana Kopřivová, Jitka Bušková, Bryce A. Mander, Martin Brunovský, Peter Zach, Jakub Korčák, Veronika Andrashko, Michaela Viktorinová, Filip Tylš, Anna Bravermanová, Tom Froese, Tomáš Páleníček, Jiřı́ Horáček

Frontiers in Pharmacology December 3, 2020 DOI: 10.3389/fphar.2020.602590 via OpenAlex

Summary

AI-generated from the abstract

Psilocybin, a serotonergic psychedelic with antidepressant potential, altered sleep architecture in healthy volunteers the night after administration. In a randomized, double-blinded trial, 20 healthy adults (10 women, ages 28–53) received psilocybin or placebo. Psilocybin prolonged REM sleep latency and showed a trend toward reduced total REM sleep duration, with no changes in NREM sleep or whole-night EEG power spectra. Contrary to expectations, psilocybin suppressed slow-wave activity in the first sleep cycle, providing no evidence for sleep-related neuroplasticity. The findings suggest that psilocybin's antidepressant properties may involve sleep changes, possibly through different mechanisms than those of classical antidepressants.

Study at a glance

Characteristics Randomized controlled trial Double-blind Peer reviewed
Sample size 20
Population Healthy volunteers
Intervention Psilocybin
Duration Night after psilocybin administration
Topics Psilocybin
Keywords Antidepressant Slow-wave sleep Sleep spindle Psychology
Citations 37
Key finding Psilocybin prolonged REM sleep latency and suppressed slow-wave activity in the first sleep cycle, with no evidence of sleep-related neuroplasticity.

Abstract

Serotonergic agonist psilocybin is a psychedelic with antidepressant potential. Sleep may interact with psilocybin’s antidepressant properties like other antidepressant drugs via induction of neuroplasticity. The main aim of the study was to evaluate the effect of psilocybin on sleep architecture on the night after psilocybin administration. Regarding the potential antidepressant properties, we hypothesized that psilocybin, similar to other classical antidepressants, would reduce rapid eye movement (REM) sleep and prolong REM sleep latency. Moreover, we also hypothesized that psilocybin would promote slow-wave activity (SWA) expression in the first sleep cycle, a marker of sleep-related neuroplasticity. Twenty healthy volunteers (10 women, age 28–53) underwent two drug administration sessions, psilocybin or placebo, in a randomized, double-blinded design. Changes in sleep macrostructure, SWA during the first sleep cycle, whole night EEG spectral power across frequencies in non-rapid eye movement (NREM) and REM sleep, and changes in subjective sleep measures were analyzed. The results revealed prolonged REM sleep latency after psilocybin administration and a trend toward a decrease in overall REM sleep duration. No changes in NREM sleep were observed. Psilocybin did not affect EEG power spectra in NREM or REM sleep when examined across the whole night. However, psilocybin suppressed SWA in the first sleep cycle. No evidence was found for sleep-related neuroplasticity, however, a different dosage, timing, effect on homeostatic regulation of sleep, or other mechanisms related to antidepressant effects may play a role. Overall, this study suggests that potential antidepressant properties of psilocybin might be related to changes in sleep.

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