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Functional changes in sleep-related arousal after ketamine administration in individuals with treatment-resistant depression.

Elizabeth D. Ballard, Deanna K Greenstein, Philip T Reiss, Ciprian M Crainiceanu, Erjia Cui, Wallace C. Duncan, Nadia S. Hejazi, Carlos A. Zarate

Translational Psychiatry June 4, 2024 DOI: 10.1038/s41398-024-02956-2 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Randomized controlled trial Double-blind Peer reviewed
Sample size 61
Population Adults with treatment-resistant major depression and healthy volunteers
Interventions Ketamine Saline placebo
Dose 0.5 mg/kg
Duration One day before and one day after infusion
Topics Depression Esketamine Ketamine
Keywords Ketamine therapy Sleep disorders Depression treatment Neuroscience research Mental health
Citations 16
Registration NCT00088699
Key findings Ketamine altered sleep brain activity patterns but did not significantly change sleep arousal metrics or mediate antidepressant effects through sleep.

Abstract

The glutamatergic modulator ketamine is associated with changes in sleep, depression, and suicidal ideation (SI). This study sought to evaluate differences in arousal-related sleep metrics between 36 individuals with treatment-resistant major depression (TRD) and 25 healthy volunteers (HVs). It also sought to determine whether ketamine normalizes arousal in individuals with TRD and whether ketamine's effects on arousal mediate its antidepressant and anti-SI effects. This was a secondary analysis of a biomarker-focused, randomized, double-blind, crossover trial of ketamine (0.5 mg/kg) compared to saline placebo. Polysomnography (PSG) studies were conducted one day before and one day after ketamine/placebo infusions. Sleep arousal was measured using spectral power functions over time including alpha (quiet wakefulness), beta (alert wakefulness), and delta (deep sleep) power, as well as macroarchitecture variables, including wakefulness after sleep onset (WASO), total sleep time (TST), rapid eye movement (REM) latency, and Post-Sleep Onset Sleep Efficiency (PSOSE). At baseline, diagnostic differences in sleep macroarchitecture included lower TST (p = 0.006) and shorter REM latency (p = 0.04) in the TRD versus HV group. Ketamine's temporal dynamic effects (relative to placebo) in TRD included increased delta power earlier in the night and increased alpha and delta power later in the night. However, there were no significant diagnostic differences in temporal patterns of alpha, beta, or delta power, no ketamine effects on sleep macroarchitecture arousal metrics, and no mediation effects of sleep variables on ketamine's antidepressant or anti-SI effects. These results highlight the role of sleep-related variables as part of the systemic neurobiological changes initiated after ketamine administration. Clinical Trials Identifier: NCT00088699.