The proposed study is a randomized, double-blind proof of concept (PoC) study on the neural impact of intranasal oxytocin (OXT) administration for adolescents (age 14 to 18), demonstrating a clinically significant level of irritability as defined by a score of ≥4 on the Affective Reactivity Index (ARI). Planned enrollment is 80 subjects over 3 years.
Endogenous oxytocin (OXT) has been a focus of prior psychiatric research due to its role in pro-social behavior, and modulation of response to social/emotional stimuli. Although many studies argue that the intranasal administration of OXT can produce behavioral as well as neural changes, there is surprisingly little comprehensive research on this issue. Most of the previous studies are limited by using a single dose of intranasal OXT in small samples, and there is no current consensus regarding appropriate dosage and very little data on neural impact as a function of dose. There has been little consideration of the relation between pharmacokinetics (peripheral level of OXT after administration) and the degree of induced neural changes. None of these issues have been studied in a pediatric population with clinically significant psychopathology. This study is proposed to determine the extent to which neural changes are induced by OXT intranasal administration, by examining the dose-response relationship (the degree of neural changes induced by various doses of OXT) and the correlation of pharmacokinetics (peripheral level of OXT after administration and the induced neural changes) in youths with clinically significant psychopathology. The form of psychopathology targeted is irritability: the increased propensity to exhibit anger relative to peers.One of the neurobiological mechanisms of irritability implicates dysfunction in the acute threat response system. OXT, with its most commonly proposed mechanism being reduction of hyperactivity in the acute threat response system, is a potentially promising agent to induce neural changes in the target brain areas of the acute threat response system for youths with high levels of irritability. The study aims to quantify the extent to which different doses of OXT will reduce the activation of the acute threat response system to emotional stimuli in youths with high levels of irritability. Both resting state and task-based functional MRI will be used , using affective-cognitive tasks (to obtain the primary aim will begin after the clinician scan) with demonstrated test-retest reliability and capability of capturing the core target areas of OXT administration in the acute threat response system. Pharmacokinetics (plasma and saliva level) after OXT administration will be examined to determine correlation with the induced neural changes in the target areas.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
TRIPLE
Enrollment
60
Functional MRI (fMRI) scan with affective/cognitive tasks
Oxytocin intranasal spray liquid administration
Oxytocin intranasal spray liquid administration
University of Nebraska Medical Center, Department of Psychiatry
Omaha, Nebraska, United States
Blood Oxygen Level Dependent (BOLD) response within rostro-medial prefrontal cortex ( rmPFC) region of interest to emotional stimuli during the Affective Stroop (AS) at approximately 50 minutes after intranasal administration of OXT.
Neural changes observable on fMRI as BOLD responses in medial prefrontal cortex. Response data will be generated for each participant for the four OXT doses (8, 24, 48 and 80 IU) and placebo.
Time frame: 50 minutes
Plasma concentrations of OXT at 10, 20, 30, 40, and 50 minutes post intranasal OXT administration, and immediately post-fMRI scanning.
Area under the curve (OXT dose response)
Time frame: 50 minutes and 2 hours
BOLD responses within the amygdala region of interest (ROI) to emotional stimuli during the Affective Stroop (AS) task (at approximately 50 minutes after intranasal administration of OXT (placebo, 8, 24, 48, and 80 IU).
Neural changes observable on fMRI as BOLD responses in amygdala.
Time frame: 50 minutes
The degree of functional connectivity between rmPFC and amygdala during resting-state fMRI (rs-fMRI) after intranasal administration of OXT.
functional connectivity observable on rs-fMRI
Time frame: 60 minutes
BOLD responses within peri-aqueductal gray (PAG) and amygdala regions of interest (ROIs) to emotional stimuli during the facial expression task (at approximately 70 minutes) after intranasal administration of OXT.
Neural changes observable on fMRI as BOLD responses in PAG and amygdala.
Time frame: 70 minutes
Saliva level of OXT at 10, 20, 30, 40 and 50 minutes post-administration of intranasal OXT, and immediately after fMRI scanning to calculate area under curve (AUC)
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Oxytocin intranasal spray liquid administration
Oxytocin intranasal spray liquid administration
Placebo intranasal spray liquid administration
Area under curve (OXT dose response)
Time frame: 50 minutes and 2 hours