The relapsing nature of opioid use disorder is a major obstacle to successful treatment. About 90% of those entering treatment will relapse within one year. To improve treatment outcome, new interventions targeting the underlying brain biomarkers of relapse vulnerability hold significant promise in reducing this critical public health problem. Transcranial direct current stimulation (tDCS) is a non-invasive brain stimulation technique that can modulate brain connectivity.
Cognitive flexibility, the ability to change maladaptive behavior, depends on dorsolateral prefrontal cortex (DLPFC) input to the nucleus accumbens (NAcc; Gruber, Hussain, and O'Donnell 2009). DLPFC stimulation may increase input to NAcc to facilitate proper selection of goal-directed behavior and may also decrease craving in individuals with substance use disorder (Boggio et al. 2008). We will use transcranial direct current stimulation (tDCS) to stimulate the DLPFC. TDCS is a non-invasive brain stimulation technique that can modulate brain connectivity. TDCS involves applying a weak electrical current (2mA or less) to the scalp via anodal and cathodal electrode sponges, causing either increases or decreases in cortical excitability, respectively. Research has shown in both healthy subjects and patients (e.g. Alzheimer's disease, Parkinson's disease, stroke, and depression) that tDCS has the potential to modulate synaptic strengthening and neurotransmitter-dependent plasticity underlying changes in behavior and learning (Lang et al. 2005). We are anticipating enrollment of 30 participants. Fifteen participants will be randomly assigned to the interventional tDCS condition, while 15 participants will be randomly assigned to sham tDCS. Both conditions will undergo five sessions of tDCS across five days. Participants will undergo pre- and post-tDCS MRI scans, in addition to clinical interviews and questionnaires. Follow-up interviews will be conducted in person 1 and 2 months after intervention completion to inquire about relapse status.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
DEVICE_FEASIBILITY
Masking
QUADRUPLE
tDCS will be performed with Neuroelectrics Starstim Enobio 20, a non-invasive investigational device that has been labeled as a non-significant risk device by the FDA. This study is regulated by the FDA as an Abbreviated IDE. It has built-in safety mechanisms which allow for immediate cessation of stimulation if the subject becomes uncomfortable. The current will be administered via two electrode sponges for 25 mins with 1-2 milliamperes. These administration protocols are in line with protocols that have outlined safe administration (Nitsche 2007; 2008). No side-effects have been reported with the exception of slight itching under the electrode and occasional occurrence of headache, fatigue, or nausea (Poreisz 2007). Electrodes placement: dorsolateral prefrontal cortex (DLPFC); cathode on left DLPFC, anode on right DLPFC.
University of Minnesota
Minneapolis, Minnesota, United States
Change in brain functional connectivity as measured by functional magnetic resonance imaging
Investigators will measure magnitude of functional connectivity in between nucleus accumbens (NAcc) and prefrontal cortex (PFC) both at baseline and at follow-up and compare the magnitude of change between the active-tDCS and sham-tDCS groups.
Time frame: Change between baseline and 1-week follow-up
Correlation between functional connectivity change and craving scores
Investigators will (1) compare change in craving scores (difference in craving scores between 2 and 3 weeks of abstinence) between active-tDCS and sham-tDCS groups and (2) conduct parametric correlations between functional connectivity change and change in craving scores.
Time frame: Data collection will be during 2 and 3 weeks of abstinence
Correlation between functional connectivity change and clinical outcome
Investigators will record relapse status during the 2 months following treatment discharge.
Time frame: Between 2 weeks of abstinence and 2 months later
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Enrollment
30