King's College London
London, SE58AF, United Kingdom
NCT Number: NCT04977674
The overarching aim of this research is to determine the acute effects of ketamine on brain glutamate, functional connectivity and cerebral blood flow in treatment-resistant depression, explore whether the effects are attenuated by the opioid receptor antagonist naltrexone and relate these findings to antidepressant response.
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Notify Me18 year–50 year
All sexes
Interventional
Early Phase 1
London, SE58AF, United Kingdom
The study is a randomised, double-blind, crossover design with two treatment conditions: oral placebo or oral naltrexone preceding ketamine infusion during neuroimaging in subjects with treatment-resistant depression.
Each subject will participate in two imaging sessions on two separate days. Each subject will receive a dose of ketamine (IV infusion, 0.5 mg/kg over 40 minutes) during each scan. Subjects will receive either oral placebo or naltrexone 50 mg, 45 minutes before the initiation of each of the ketamine infusions.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
The following inclusion criteria will apply:
The following exclusion criteria will apply:
The following will be reasons for exclusion from analysis:
Pre-treatment with naltrexone 45 min before the ketamine infusion.
Pre-treatment with placebo 45 min before the ketamine infusion.
Participants receive intravenous ketamine infusion (0.5 mg/kg over 40 min) at both study visits.
Time frame: Changes will be in the same session comparing the ketamine infusion period to the pre-ketamine infusion baseline
Compare changes in glutamate and GLX (glutamate +glutamine), referenced to total creatine (tCr), during ketamine infusion as measured by functional magnetic resonance spectroscopy (1H-fMRS) for naltrexone versus placebo pre-treatment conditions.
Hypothesis: There will be a significant increase in glutamate measures during ketamine administration compared to a resting baseline condition in a medial prefrontal cortex (mPFC) /anterior cingulate cortex (ACC) region. Pre-treatment with naltrexone will attenuate this increase.
Time frame: Changes will be in the same session comparing post-infusion (immediately after ketamine infusion) to the pre-ketamine infusion baseline
Compare changes in functional connectivity as measured by resting state-fMRI post-ketamine administration for naltrexone versus placebo pre-treatment conditions.
Hypotheses:
Time frame: Changes will be in the same session comparing data collected 30 minutes after the ketamine infusion commences to the pre-ketamine infusion baseline
Compare changes in cerebral blood flow during ketamine infusion as measured by arterial spin labelling (ASL) for naltrexone versus placebo pre-treatment conditions.
Hypothesis: Ketamine administration will lead to a significant increase in CBF in sgACC, pregenual ACC (pgACC), dorsal ACC (dACC) and thalamus regions of interest compared to a resting baseline condition. Pre-treatment with naltrexone will attenuate these increases.
King's College London
Other
Investigating Glutamate and Opioid Mechanisms of Antidepressant Response to Ketamine
Acronym: GO-MARK
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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