High Midbrain [18F]DOPA Accumulation in Children With Attention Deficit Hyperactivity Disorder
- 1 August 1999
- journal article
- research article
- Published by American Psychiatric Association Publishing in American Journal of Psychiatry
- Vol. 156 (8) , 1209-1215
- https://doi.org/10.1176/ajp.156.8.1209
Abstract
OBJECTIVE: Attention deficit hyperactivity disorder (ADHD) is a highly prevalent childhood psychiatric disorder characterized by impaired attention, excessive motor activity, and impulsivity. Despite extensive investigation of the neuropathophysiology of ADHD by a wide array of methodologies, the neurobiochemical substrate of this disorder is still unknown. Converging evidence, however, suggests a primary role of the dopaminergic system. METHOD: This study examined the integrity of presynaptic dopaminergic function in children with ADHD through use of positron emission tomography and the tracer [18F]fluorodopa ([18F]DOPA). Accumulation of [18F]DOPA in synaptic terminals, a measure of dopa decarboxylase activity, was quantified in regions rich in dopaminergic innervation, including caudate nucleus, putamen, frontal cortex, and midbrain (i.e., substantia nigra and ventral tegmentum). RESULTS: Accumulation of [18F]DOPA in the right midbrain was higher by 48% in 10 children with ADHD than in 10 normal children. Despite its magnitude, this difference would not have reached statistical significance if corrected by the Bonferroni test for multiple comparisons. However, [18F]DOPA in the right midbrain was correlated with symptom severity. No other dopamine-rich regions significantly differed between groups. CONCLUSIONS: These findings are suggestive of dopaminergic dysfunction at the level of the dopaminergic nuclei in children with ADHD. Abnormality in dopa decarboxylase activity may be primary or secondary to deficits in other functional units of the dopamine pathway (e.g., receptor, uptake transporter, vesicular transporter, degradation enzymes). Efforts toward defining the origin of this abnormality should help delineate mechanisms of midbrain control of attention and motor behavior important for the understanding of the causes and treatment of ADHD.Keywords
This publication has 37 references indexed in Scilit:
- Intravenous Dextroamphetamine and Brain Glucose MetabolismNeuropsychopharmacology, 1997
- Selegiline in ADHD Adults: Plasma Monoamines and Monoamine MetabolitesNeuropsychopharmacology, 1997
- Differential effects of levodopa on dopaminergic function in early and advanced Parkinson's diseaseAnnals of Neurology, 1997
- Cerebrospinal Fluid Homovanillic Acid Predicts Behavioral Response to Stimulants in 45 Boys with Attention Deficit/Hyperactivity DisorderNeuropsychopharmacology, 1996
- Methylphenidate Slows Right Hemisphere Processing in Children with Attention-Deficit/Hyperactivity DisorderJournal of Child and Adolescent Psychopharmacology, 1996
- Aromatic L‐Amino Acid Decarboxylase Activity of Mouse Striatum Is Modulated via Dopamine ReceptorsJournal of Neurochemistry, 1993
- Positron emission tomography with 18F-DOPA: Interpretation and biological correlates in nonhuman primatesPsychiatry Research: Neuroimaging, 1992
- New rapid analysis method demonstrates differences in 6-[18F]fluoro-l-dopa plasma input curves with and without carbidopa and in hemi-MPTP lesioned monkeysInternational Journal of Radiation Applications and Instrumentation. Part A. Applied Radiation and Isotopes, 1991
- Effects ofl-DOPA on extracellular dopamine in striatum of normal and 6-hydroxydopamine-treated ratsBrain Research, 1990
- CSF monoamine metabolites in children with minimal brain dysfunction: Evidence for alteration of brain dopamineThe Journal of Pediatrics, 1977