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Cristina Blanco-Duque

2 papers in the library · 44 citations · publishing 2021-2022

Papers

Psilocin acutely alters sleep-wake architecture and cortical brain activity in laboratory mice

Translational Psychiatry February 23, 2022 Trevor Sharp, Christopher W. Thomas, Cristina Blanco-Duque et al. 40 citations

Psilocin, a serotonergic psychedelic, alters sleep architecture and cortical activity in mice. Acute administration delays REM sleep onset, reduces NREM sleep maintenance for about three hours, and enhances a 4 Hz EEG oscillation. No long-term changes in sleep-wake quantity occur. Psilocin does not affect the overall homeostatic sleep rebound after sleep deprivation, but it slows the recovery of slow-wave activity in the medial prefrontal and surrounding cortex. These findings suggest psilocin influences both global vigilance state control and local sleep homeostasis, which may relate to its antidepressant effects.

Psilocin acutely disrupts sleep and affects local but not global sleep homeostasis in laboratory mice

bioRxiv Preprint Server February 16, 2021 Christopher W. Thomas, Cristina Blanco-Duque, Benjamin J. B. Bréant et al. 4 citations preprint

A single dose of psilocin, the active compound in psychedelic mushrooms, alters sleep architecture in mice. Psilocin delayed the onset of REM sleep and reduced NREM sleep maintenance for about three hours after injection, without causing long-term changes in sleep quantity. The acute brain response featured enhanced oscillations around 4 Hz. When mice were sleep-deprived, psilocin did not change the overall amount of sleep rebound, but it slowed the recovery of slow wave activity in the medial prefrontal cortex. These findings suggest that psilocin affects both global vigilance and local sleep homeostasis, which may relate to its potential antidepressant effects.