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Blunted anterior midcingulate response to reward in opioid users is normalized by prefrontal transcranial magnetic
Kathryn Biernacki1,2, Rita Z Goldstein3, Malte R Güth4,5
1Center for Molecular and Behavioral Neuroscience, Rutgers University-Newark, Newark, NJ, USA. kathryn.biernacki@nih.gov.
Abstract:
Abnormalities in goal-directed behavior, mediated by mesocorticolimbic reward system, contribute to worse clinical outcomes including higher risk of treatment dropout and drug relapse in opioid users (OU). Despite efforts to counteract such neural alterations, brain-based interventions for this disorder remain ineffective. In this sham-controlled randomized study, we report the initial results on the efficacy of transcranial magnetic stimulus (TMS) in normalizing reward functioning in this population. During a reward-based choice task, we applied robot-assisted 10-Hz TMS to the prefrontal cortex in OU (Active = 16, Sham = 18) and matched healthy controls (HC, Active = 22, Sham = 24) while we recorded the reward positivity - an electrophysiological signal believed to index sensitivity of the anterior midcingulate cortex (MCC) to rewards. A robotic arm positioned a TMS coil over a prefrontal cortex target, and 50 pulses were delivered at 10-Hz before every 10 trials (2000 pulses, 400 trials). Our results revealed an interaction between TMS (Active vs Sham) and Group (OU vs HC) (F1,72 = 6.9, p = 0.01, η2 = 0.09). First, in the Sham TMS condition, OU exhibited a blunted reward positivity compared to HC (p = 0.01, d = 0.84). Second, OU receiving active TMS displayed a larger reward positivity compared to OU receiving sham (p = 0. 003, d = 0.98), and no differences were observed between OU and HC (p = 0.42, d = 0.17) or HC receiving sham (p = 0.48, d = 0.11). We envision that targeting a specific frontal-cingulate reward pathway is an important first step to maintain long-terms effect of TMS on MCC reward function, which may enhance treatment success through the maintenance of treatment goals.
Insights
Transcranial magnetic stimulation (TMS) normalized reward functioning in opioid users (OU) by increasing reward positivity. This brain-based intervention shows promise for improving treatment outcomes and reducing relapse risk in individuals with opioid use disorder.
Area of Science:
- Neuroscience
- Psychiatry
- Addiction Medicine
Background:
- Opioid users (OU) exhibit abnormalities in goal-directed behavior linked to the mesocorticolimbic reward system.
- These neural alterations contribute to poor clinical outcomes, including treatment dropout and relapse.
- Current brain-based interventions for opioid use disorder have limited efficacy.
Purpose of the Study:
- To investigate the efficacy of robot-assisted transcranial magnetic stimulation (TMS) in normalizing reward functioning in opioid users.
- To assess the impact of TMS on reward positivity, an electrophysiological marker of reward sensitivity.
Main Methods:
- A sham-controlled randomized study involving opioid users (OU) and healthy controls (HC).
- Robot-assisted 10-Hz TMS was applied to the prefrontal cortex during a reward-based choice task.
- Reward positivity was recorded using electroencephalography (EEG).
Main Results:
- Opioid users receiving sham TMS showed blunted reward positivity compared to healthy controls.
- Active TMS significantly increased reward positivity in opioid users compared to those receiving sham TMS.
- Following active TMS, no significant differences in reward positivity were observed between opioid users and healthy controls.
Conclusions:
- Robot-assisted TMS targeting the frontal-cingulate reward pathway can normalize reward functioning in opioid users.
- This intervention may enhance treatment success by improving reward system sensitivity and supporting treatment goal maintenance.
- TMS represents a promising brain-based approach for managing opioid use disorder.
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