The D2 antagonist sulpiride modulates the neural processing of both rewarding and aversive stimuli in healthy volunteers
Open Access
- 15 April 2011
- journal article
- research article
- Published by Springer Nature in Psychopharmacology
- Vol. 217 (2) , 271-278
- https://doi.org/10.1007/s00213-011-2278-4
Abstract
Rationale Animal studies indicate that dopamine pathways in the ventral striatum code for the motivational salience of both rewarding and aversive stimuli, but evidence for this mechanism in humans is less established. We have developed a functional magnetic resonance imaging (fMRI) model which permits examination of the neural processing of both rewarding and aversive stimuli. Objectives The aim of the study was to determine the effect of the dopamine receptor antagonist, sulpiride, on the neural processing of rewarding and aversive stimuli in healthy volunteers. Methods We studied 30 healthy participants who were randomly allocated to receive a single dose of sulpiride (400 mg) or placebo, in a double-blind, parallel-group design. We used fMRI to measure the neural response to rewarding (taste or sight of chocolate) and aversive stimuli (sight of mouldy strawberries or unpleasant strawberry taste) 4 h after drug treatment. Results Relative to placebo, sulpiride reduced blood oxygenation level-dependent responses to chocolate stimuli in the striatum (ventral striatum) and anterior cingulate cortex. Sulpiride also reduced lateral orbitofrontal cortex and insula activations to the taste and sight of the aversive condition. Conclusions These results suggest that acute dopamine receptor blockade modulates mesolimbic and mesocortical neural activations in response to both rewarding and aversive stimuli in healthy volunteers. This effect may be relevant to the effects of dopamine receptor antagonists in the treatment of psychosis and may also have implications for the possible antidepressant properties of sulpiride.Keywords
This publication has 46 references indexed in Scilit:
- Deficits in Positive Reinforcement Learning and Uncertainty-Driven Exploration Are Associated with Distinct Aspects of Negative Symptoms in SchizophreniaBiological Psychiatry, 2010
- The neural code of reward anticipation in human orbitofrontal cortexProceedings of the National Academy of Sciences, 2010
- Multiple functions of dopamine neuronsF1000 Biology Reports, 2010
- Dopamine signals for reward value and risk: basic and recent dataBehavioral and Brain Functions, 2010
- Diminished Neural Processing of Aversive and Rewarding Stimuli During Selective Serotonin Reuptake Inhibitor TreatmentPublished by Elsevier ,2009
- Pharmacological modulation of subliminal learning in Parkinson's and Tourette's syndromesProceedings of the National Academy of Sciences, 2009
- Neural representation of reward in recovered depressed patientsPsychopharmacology, 2009
- Two types of dopamine neuron distinctly convey positive and negative motivational signalsNature, 2009
- Neural correlates of internally-generated disgust via autobiographical recall: a functional magnetic resonance imaging investigationNeuroscience Letters, 2004
- Reduced prefrontal activity predicts exaggerated striatal dopaminergic function in schizophreniaNature Neuroscience, 2002