Human cognitive flexibility depends on dopamine D2 receptor signaling
Open Access
- 25 May 2011
- journal article
- research article
- Published by Springer Nature in Psychopharmacology
- Vol. 218 (3) , 567-578
- https://doi.org/10.1007/s00213-011-2340-2
Abstract
Rationale Accumulating evidence indicates that the cognitive effects of dopamine depend on the subtype of dopamine receptor that is activated. In particular, recent work with animals as well as current theorizing has suggested that cognitive flexibility depends on dopamine D2 receptor signaling. However, there is no evidence for similar mechanisms in humans. Objectives We aim to demonstrate that optimal dopamine D2 receptor signaling is critical for human cognitive flexibility. Methods To this end, a pharmacological pretreatment design was employed. This enabled us to investigate whether effects of the dopamine receptor agonist bromocriptine on task-set switching were abolished by pretreatment with the D2 receptor antagonist sulpiride. To account for individual (genetic) differences in baseline levels of dopamine, we made use of a common variable number of tandem repeat (VNTR) polymorphism in the 3′-untranslated region of the dopamine transporter gene, DAT1. Results Bromocriptine improved cognitive flexibility relative to placebo, but only in subjects with genetically determined low levels of dopamine (n = 27). This beneficial effect of bromocriptine on cognitive flexibility was blocked by pretreatment with the selective dopamine D2 receptor antagonist sulpiride (n = 14). Conclusions These results provide strong evidence in favor of the hypothesis that human cognitive flexibility implicates dopamine D2 receptor signaling.Keywords
This publication has 87 references indexed in Scilit:
- Inverted-U–Shaped Dopamine Actions on Human Working Memory and Cognitive ControlBiological Psychiatry, 2011
- Imaging the effects of genetic polymorphisms on radioligand binding in the living human brain: A review on genetic neuroreceptor imaging of monoaminergic systems in psychiatryNeuroImage, 2010
- Pharmacological Enhancement of Memory and Executive Functioning in Laboratory AnimalsNeuropsychopharmacology, 2010
- Dopaminergic Network Differences in Human ImpulsivityScience, 2010
- Neurogenetics and Pharmacology of Learning, Motivation, and CognitionNeuropsychopharmacology, 2010
- Striatal Dopamine Mediates the Interface between Motivational and Cognitive Control in Humans: Evidence from Genetic ImagingNeuropsychopharmacology, 2010
- The dopamine D2 receptor antagonist sulpiride modulates striatal BOLD signal during the manipulation of information in working memoryPsychopharmacology, 2009
- Striatal Dopamine Predicts Outcome-Specific Reversal Learning and Its Sensitivity to Dopaminergic Drug AdministrationJournal of Neuroscience, 2009
- Neural predictors of moment-to-moment fluctuations in cognitive flexibilityProceedings of the National Academy of Sciences, 2008
- Nucleus Accumbens D2/3 Receptors Predict Trait Impulsivity and Cocaine ReinforcementScience, 2007