High-Dose Methylphenidate and Carboxylesterase 1 Genetic Variability in Patients With Attention-Deficit/Hyperactivity Disorder

Author:

Westerkamp Andrie C.1,Pereira Rob Rodrigues2,Huitema Vera R.3,Kouwert Ester A.M.1,Matic Maja4,van Schaik Ron H.N.4,Punt Nieko,Schoevers Robert A.1,Touw Daan J.1

Affiliation:

1. University Center of Psychiatry, University Medical Center Groningen, University of Groningen, Groningen, the Netherlands

2. Medical Center Kinderplein, Rotterdam, the Netherlands

3. Department of Clinical Pharmacy and Pharmacology, University Medical Center Groningen, Groningen, the Netherlands

4. Department of Clinical Chemistry, Erasmus MC University Medical Center, Rotterdam, the Netherlands

Abstract

Abstract Purpose/Background Methylphenidate (MPH) is widely used to reduce symptoms of attention-deficit/hyperactivity disorder. Methylphenidate is metabolized by the carboxylesterase 1 (CES1) enzyme. Some patients need a very high dose of MPH to reach desired clinical effects, without having adverse effects. This may be due to differences in MPH pharmacokinetics (PK), potentially caused by DNA variants in CES1, the gene encoding the enzyme that metabolizes MPH. Here we describe 3 patients requiring high-dose MPH and investigated the CES1 gene. Methods/Procedures The 3 patients were using short-acting MPH in a dose of 180 to 640 mg instead of the maximum advised dose of around 100 mg MPH in the Netherlands. Plasma concentrations of MPH were determined at scheduled time points (day-curve). Methylphenidate plasma concentrations were used for PK analysis using an earlier published 2-compartment PK population model of MPH. Individual data of the 3 patients were compared with simulated population data, when equivalent doses were used. In addition, CES1 was genotyped (number of gene copies and single nucleotide polymorphisms) using real-time polymerase chain reaction. Findings/Results Pharmacokinetic analysis in all 3 patients showed lower plasma concentrations of MPH in comparison with the population data. The mean absorption time and volume of distribution of the central compartment were equal, but the elimination clearance was higher. However, CES1 genotyping revealed no variations that could explain a higher metabolism of MPH. Implications/Conclusions In these 3 cases, we could not demonstrate a correlation between MPH clearance and known genetic variants of the CES1 gene.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Pharmacology (medical),Psychiatry and Mental health

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