Psilocin acutely disrupts sleep and affects local but not global sleep homeostasis in laboratory mice
Thomas, C. W.; Blanco-Duque, C.; Breant, B.; Sharp, T.; Goodwin, G.; Bannerman, D.; Vyazovskiy, V. V.
Show abstract
Serotonergic psychedelic drugs, such as psilocin (4-hydroxy-N,N-dimethyltryptamine), profoundly alter the quality of consciousness through mechanisms which are incompletely understood. Growing evidence suggests that a single psychedelic experience can positively impact long-term psychological well-being, with relevance for the treatment of psychiatric disorders, including depression. A prominent factor associated with psychiatric disorders is disturbed sleep, and the sleep-wake cycle is implicated in the regulation of neuronal firing and activity homeostasis. It remains unknown to what extent psychedelic agents directly affect sleep, in terms of both acute arousal and homeostatic sleep regulation. Here, chronic in vivo electrophysiological recordings were obtained in mice to track sleep-wake architecture and cortical activity after psilocin injection. Administration of psilocin led to delayed REM sleep onset and reduced NREM sleep maintenance for up to approximately 3 hours after dosing, and the acute EEG response was associated primarily with an enhanced oscillation around 4 Hz. No long-term changes in sleep-wake quantity were found. When combined with sleep deprivation, psilocin did not alter the dynamics of homeostatic sleep rebound during the subsequent recovery period, as reflected in both sleep amount and EEG slow wave activity. However, psilocin decreased the recovery rate of sleep slow wave activity following sleep deprivation in the local field potentials of electrodes targeting medial prefrontal and surrounding cortex. It is concluded that psilocin affects both global vigilance state control and local sleep homeostasis, an effect which may be relevant for its antidepressant efficacy.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Sustained polyphasic sleep restriction abolishes human growth hormone release 97%
- Quiet wakefulness: The influence of intraperitoneal and intranasal oxytocin on sleep-wake behaviour and neurophysiology in rats. 97%
- Vesicular GABA-transporter neurons in the zona incerta are maximally active during non rapid-eye movement (NREM) and rapid-eye movement (REM) sleep 96%
Similar papers in this journal
- Reducing brain kynurenic acid synthesis precludes kynurenine-induced sleep disturbances 98%
- Concentration-effect relationships of plasma caffeine on EEG delta power and cardiac autonomic activity during human sleep 97%
- Local sleep in songbirds: Different simultaneous sleep states across the avian pallium 96%
Similar papers in this journal
- Glutamatergic neurons in the preoptic hypothalamus promote wakefulness, destabilize NREM sleep, suppress REM sleep, and regulate cortical dynamics 99%
- Abrupt and gradual changes in neuronal processing upon falling asleep and awakening 96%
- Region-specific and state-dependent astrocyte Ca2+ dynamics during the sleep-wake cycle in mice 96%
Similar papers in this journal
- Altered EEG markers of synaptic plasticity in a human model of NMDA receptor deficiency: anti-NMDA receptor encephalitis 96%
- Odor cueing of declarative memories during sleep enhances coordinated spindles and slow oscillations 95%
- A genetic variation in the adenosine A2A receptor gene contributes to variability in oscillatory alpha power in wake and sleep EEG and A1 adenosine receptor availability in the human brain 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.