Skip to content

Carboxylesterase 1 Genetic Variation and Methylphenidate in ADHD

Carboxylesterase 1 Genetic Variation and Methylphenidate in ADHD

Status
Recruiting
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03781752
Enrollment
500
Registered
2018-12-20
Start date
2018-03-04
Completion date
2025-08-31
Last updated
2024-08-09

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

ADHD, Attention Deficit Hyperactivity Disorder

Keywords

PK Study, PD Study, Pharmacokinetics, Pharmacodynamics, Methylphenidate, MPH

Brief summary

The study team will determine the association between d,l-methylphenidate (MPH) therapeutic outcomes in ADHD patients and genetic variants of CES1 and reveal key associations between CES1 genotypes and the PK and PD of MPH.

Detailed description

Psychostimulants are the first-line pharmacotherapy for Attention deficit-hyperactivity disorder (ADHD), and MPH accounts for approximately 50% of all stimulant usage. There has been an \ 10-fold increase in MPH prescribing since 1990, with 18 million prescriptions dispensed in 2010, including 1.9 million new starts on MPH, making it the 5th most commonly prescribed medication to children ages 2 -11 and the single most frequently prescribed medication of any type in those aged 12-17 years. The annual exposure of pediatric patients to MPH is extremely high and MPH is among the most commonly prescribed chronic use oral medications for US children. Despite nearly 60 years of accrued clinical experience with MPH, the significant inter-individual variability in MPH pharmacokinetics (PK), pharmacodynamics (PD) and adverse effects is inadequately explained and unpredictable. Up to 35% of ADHD patients do not respond satisfactorily to MPH therapy, and an even larger percentage discontinues treatment despite persistent ADHD. During clinical trials of MPH in treatment-naïve patients, a significant number suffer from adverse effects that are severe and persistent enough to require dose decreases or even study withdrawal. Moreover, some severe adverse drug reactions (ADRs) - including sudden cardiac death - have been associated with MPH, although the precise reasons for these associations remain elusive and controversial. Research efforts have been made to identify genetic biomarkers associated with MPH therapeutic outcomes, almost exclusively focusing on genes related to MPH PD (e.g., dopamine transporter gene \[DAT1, SLC6A3\]). Unfortunately, findings from these studies have been somewhat inconsistent, equivocal or even contradictory, and they do not explain the variability in the PK of MPH. Pharmacogenomic studies in MPH-treated children have not assessed the influence of genes associated with individual variability in PK in relation to clinical response. Carboxylesterase-1 (CES1), an abundant hepatic enzyme encoded by the polymorphic CES1 gene, is the sole hepatic enzyme catalyzing the metabolism (i.e., hydrolytic deactivation) of MPH. CES1 expression and activity are known to vary substantially among individuals. The first clinically significant CES1 variant G143E (rs71647871), discovered in the study team's lab during the course of a healthy volunteer MPH PK study, led to gross impairments in MPH metabolism. This variant has been unequivocally shown in vitro and in clinical studies to lead to significantly impaired metabolism of MPH and other known CES1 substrates. The study team has established the minor allele frequency (MAF) of the G143E variant as 3-4% in the general population. Accordingly, with \ 1.9 million new starts of MPH annually, an estimated 133,000 pediatric patients (i.e. G143E carrier's frequency 6-8%) with a genetically impaired ability to metabolize/deactivate the drug will receive it - exposing them to high systemic concentrations of MPH and any attendant risks or toxicities. In addition, the study team's in vitro studies have revealed that another common CES1 variant D203E (rs2307227) exhibited significantly impaired activity on MPH metabolism, although the effects on D203E on clinical response are in need of further elucidation. Furthermore, despite recent intensive research on CES1 pharmacogenetics, the functions of a large number of additional CES1 variants remain undetermined. The study team's hypothesis is that the CES1 variants, such as the G143E and D203E, can significantly alter the expression and/or activity of CES1, thereby influencing the metabolism and disposition of MPH. These influences will be directly investigated in relation to MPH therapeutic response and tolerability in ADHD patients.

Interventions

DRUGMethylphenidate

study to determine dose

Sponsors

Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD)
CollaboratorNIH
University of Florida
CollaboratorOTHER
Children's Hospital Medical Center, Cincinnati
CollaboratorOTHER
Seattle Children's Hospital
CollaboratorOTHER
Icahn School of Medicine at Mount Sinai
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
BASIC_SCIENCE
Masking
NONE

Intervention model description

The study team is performing a pharmacokinetic (PK) study using a single dose of methylphenidate (MPH) for children with ADHD diagnoses.

Eligibility

Sex/Gender
ALL
Age
6 Years to 17 Years
Healthy volunteers
No

Inclusion criteria

\- Youth ages 6-17 years with ADHD as a primary diagnosis

Exclusion criteria

* Participants that do not have ADHD as a primary diagnosis * Participants that do not want, require, or are not healthy enough for a single dose trial of MPH for ADHD per the clinical judgment of the treating and study clinicians * Participants that are smokers or, are pregnant

Design outcomes

Primary

MeasureTime frameDescription
Maximum methylphenidate plasma concentration (Cmax),up to 8 HoursThe maximum plasma concentration achieved after dosing.

Secondary

MeasureTime frameDescription
Time to maximum concentration (Tmax)up 8 hoursThe time after administration of a drug when the maximum plasma concentration is reached; when the rate of absorption equals the rate of elimination.
Area under the plasma concentration curve (AUClast)up to 8 hoursArea under the plasma concentration-time curve from time zero to the last measurable concentration.
Area under the plasma concentration curve (AUCinf)up to 8 hoursArea under the plasma concentration-time curve from time zero to infinity.

Countries

United States

Contacts

Primary ContactBeth Krone, PhD
beth.krone@mssm.edu212-241-8012
Backup ContactJohn Markowitz, PharmD

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026