Our hypothesis is that targeted propofol infusion in treatment-resistant depressed patients will induce slow wave activity during sedation and augment subsequent sleep slow wave activity. We will recruit 15 participants for this open label single arm Phase I trial. All participants will undergo two propofol infusions 2-6 days apart, with each infusion maximizing expression of EEG slow waves. To minimize bias, there will be no specific gender or ethnic background consideration for enrollment. This will be a single site investigation at Washington University Medical Center.
Treatment-resistant depression (TRD) in older adults is a leading cause of disability, excess mortality from suicide, and dementia. Cognitive problems and sleep disturbances are common, contributing to recurrence and poor long-term outcomes. Disrupted slow wave sleep is at the nexus of depression and cognitive dysfunction in older adults. Novel approaches to target this core pathophysiology are lacking. Our mechanistic project is designed to elucidate the relationships between TRD and sleep disturbances in older adults. Through personalized infusions targeting electroencephalographic (EEG) patterns, we aim for a systematic characterization of the relationships between the propofol-induced EEG slow waves and enhancement of slow wave sleep. Through the repurposing of propofol as a therapeutic probe, this innovative proposal will establish whether EEG slow waves are a viable therapeutic target for novel antidepressant approaches. Study Intervention Propofol will be infused through a peripheral IV, with the assistance of target-controlled infusion software and pumps, with an anticipated infusion duration of 1-2 hours. Concurrent high-density EEG will be acquired, but with an updated recording rig and sensor nets that use either Elefix conductive gel or salt solution. An Axis P3364LV network camera, synchronized to EEG recordings, will provide video for post-hoc analysis. Participants will be discharged home after nurse monitoring and fulfillment of post-anesthetic care unit criteria. Patients will be instructed by staff on operation of the Dreem headband for at-home overnight sleep EEG recordings. Patients will demonstrate ability to successfully wear the Dreem and initiate recordings without assistance. The device, charger, instruction sheet, and a link to a 2-minute instructional video will be provided to patients. This paradigm has been successful in the acquisition of preoperative sleep recordings in over 150 geriatric cardiac surgical patients and eight patients who underwent ECT for TRD (ClinicalTrials.gov NCT04451135). Dreem recordings will be obtained prior to the first propofol infusion and on evenings of propofol infusions. Additionally, recordings will be obtained for up to 6 nights within a 2-week period after the final infusion, to evaluate persistence of restoration of sleep architecture. Participants will exchange the device with staff during each in-person visit, to allow device examination and data download. Planned subgroup analyses include stratification by sex and age. For the purposes of Phase II of the study, additional subgroup analyses will be performed based on baseline sleep structure (e.g. total sleep time and proportion of time in N3 sleep), and time interval separating the two infusions.
Targeted propofol infusion in TRD patients will induce sedation with maximal expression of EEG slow waves and minimal burst suppression.
EEG will be recorded during propofol infusion and during overnight sleep. Sleep EEG data will be acquired for a minimum of one night prior to the first sedation session, providing a baseline measure. Additional overnight sleep recordings will be performed on day of sedation and subsequent nights.
Duration of slow waves during sedation will be evaluated using automated approaches. SWA during sedation will be calculated as the total power in the 0.5-4 Hz frequency band/total time in minutes. SWA during N2/N3 sleep will be calculated as the total power in the 0.5-4 Hz frequency band/total time in minutes in the N2 and N3 sleep stages. Delta sleep ratio will be computed from the SWA measured during the first and second N2/N3 cycles.
Washington University School of Medicine/Barnes-Jewish Hospital
St Louis, Missouri, United States
Number of Participants Without Serious Adverse Events During Propofol Infusions
Adverse events and serious adverse events, including incidence, severity, and likelihood of relation to intervention. Evaluate whether serial propofol infusions are safe (\<5% serious adverse events directly attributable to infusions)
Time frame: Up to one week after propofol infusions
Change in SWA During Propofol Infusions Compared to Awake Baseline Before Infusion
Evaluate in geriatric TRD patients that propofol infusions can efficiently induce EEG slow waves during infusion. Sedation slow wave activity (SWA, frontal EEG power within 0.5-4 Hz frequency band) during propofol sedation compared to frontal EEG SWA during awake eyes closed baseline preceding infusion start. This is an indication of power/density of slow waves induced by propofol. Difference in 0.5-4Hz power (infusion - pre-infusion eyes closed). EEG power estimated using multitaper spectral analysis (Chronux toolbox). Difference values are averaged across the two infusions, leading to one outcome measure per participant.
Time frame: During two-hour propofol infusion
Proportion of Infusion Completers With Augmentation of Sleep SWA After Propofol Infusion
Evaluate Change in sleep slow wave activity during N2/N3 Sleep (post-infusion - pre-infusion). Pre-infusion measure of sleep slow wave activity is averaged across multiple recordings. Post-infusion measures are based on average of sleep slow activity from nights of morning propofol infusions. Evaluate whether propofol can augment total sleep SWA in greater or equal to 40% of study completers.
Time frame: Over three-week period of pre- and post-infusion sleep recordings
Effects on Suicidality
Evaluate whether propofol infusions are associated with suicidality. Suicidality assessed using Columbia Suicide Severity Rating Scale (C-SSRS). The scale for the CSSR-S is as follows: 0-No or Low Risk: No suicidal ideation or behaviors reported, 1-Moderate Risk: Suicidal thoughts with some intent or planning but no action taken, 2-High Risk: Suicidal ideation with intent, plan, or recent suicidal behaviors. C-SSRS was administered approximately 1 week before the first infusion (baseline), and then approximately 1, 3, and 10 weeks after the second infusion. No C-SSRS was obtained during the 2-6 days separating the first and second infusions.
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Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
16
Time frame: Baseline, 1-week Post 2nd-Infusion, 3-week Post 2nd-Infusion, 10-week Post 2nd-Infusion
Changes in N3 Duration, REM Duration, Total Sleep Time (Post-infusion Change Relative to Baseline)
Baseline measures are averages taken from 2-3 recordings before infusions. Averages for post-infusion are taken for measures derived on recordings on the evenings of morning propofol infusions. Reported difference is calculated from averages of measures from post-infusion recordings and averages of baseline recordings.
Time frame: 1 week before 1st infusion and recordings taken on both infusion nights
Change in Delta Sleep Ratio (Infusion Nights - Baseline)
Delta sleep ratio (DSR, calculated as the SWA of the 1st NREM cycle divided by the SWA of the 2nd NREM cycle, is unitless). Baseline measures are averages taken from 2-3 recordings during the week before infusions. Averages for infusion nights are taken for measures derived on recordings taken on the evenings of morning propofol infusions. Reported change is the difference (average of infusion nights - baseline average)
Time frame: One week before first infusion and on nights after morning infusions
Changes in Proportion of Total Sleep Time in N3, Proportion of Total Sleep Time in REM
Calculated as total duration in N3/total sleep time and total duration in REM/total sleep time. Baseline measures are averages of taken from 2-3 sleep recordings before infusions. Post-infusion average is averaged from sleep recordings taken on the evenings of morning propofol infusions Reported change is infusion nights average - baseline average.
Time frame: Baseline pre-infusion and nights of infusions
Evaluate Changes in Cognitive Function (MoCA) Between Pre-infusion Baseline and 3-weeks Post Infusion
Evaluate changes in cognitive function Change in Cognitive Performance on the Montreal Cognitive Assessment (MoCA). Total score of the MoCA is from 0-30, Normal: 26-30, Mild Cognitive Impairment (MCI): 18-25, Moderate Cognitive Impairment: 10-17, Severe Cognitive Impairment: \<10 Examine potential positive or negative changes in cognition that may be associated with propofol infusion. Reported change is post-infusion - baseline. Positive change indicated improvement. Negative change indicates worsening of cognition.
Time frame: Two time points: baseline measure (approximately 1 week before the first infusion) and 3-weeks after second infusion
Number of Participants Able to Provide Complete Cognitive Assessment (Fluid Cognition) Using NIH Toolbox
Evaluate the feasibility in evaluating changes in cognitive function using NIH toolbox
Time frame: pre-infusion baseline and approximately 3-weeks after the 2nd infusion