4.6 Article

Dopaminergic modulation of the orbitofrontal cortex affects attention, motivation and impulsive responding in rats performing the five-choice serial reaction time task

期刊

BEHAVIOURAL BRAIN RESEARCH
卷 210, 期 2, 页码 263-272

出版社

ELSEVIER
DOI: 10.1016/j.bbr.2010.02.044

关键词

Impulsivity; Dopamine; Orbitofrontal cortex; Baseline-dependency; D-1 receptor; D-2 receptor

资金

  1. Canadian Institutes for Health Research (CIHR)
  2. National Sciences and Engineering Research Council
  3. Canadian Foundation for Innovation
  4. Michael Smith Foundation for Health Research

向作者/读者索取更多资源

Understanding the neurobiological factors underlying individual differences in impulsivity may provide valuable insight into vulnerability to impulse control disorders. Recent data implicate both the orbitofrontal cortex (OFC) and the dopaminergic system in psychiatric disorders associated with high levels of impulsivity, including substance abuse, mania and obsessive-compulsive disorder. However, the consequences of modulating dopaminergic activity within the OFC on impulsive behaviour are largely unknown. The effects of direct intra-OFC infusions of agonists and antagonists at the dopamine D-1 and D-2 receptors were therefore assessed in rats performing the five-choice serial reaction time test (5CSRT) of attention and motor impulsivity. Intra-OFC administration of SCH23390, a D-1 receptor antagonist, decreased impulsive responding in highly impulsive (HI) rats, but did not affect behaviour in less impulsive (LI) animals. Furthermore, the D-2 agonist quinpirole caused significant deficits in task performance, impairing accuracy, increasing omissions and decreasing the number of trials completed, which resembled the effects of systemic administration. In contrast, the D-1 agonist SKF 81297 had little effect on behaviour. Neither agonist increased impulsivity. These data provide partial support for the suggestion that high levels of impulsivity are associated with increased dopamine levels within the OFC, but further indicate that simulating dopamine's actions selectively at the D-1 or D-2 receptor cannot reproduce a highly impulsive phenotype. Dopaminergic activity within the OFC may therefore modulate impulsivity indirectly, perhaps in conjunction with other neurotransmitter systems. Furthermore, D-2-mediated neurotransmission within the OFC could make a more fundamental contribution to cognitive behaviour. (C) 2010 Elsevier B.V. All rights reserved.

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