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OpenTrials
Completed

NCT Number: NCT03196466

Population Pharmacokinetics of Antiepileptic in Pediatrics

The purpose of this study is to develop population pharmacokinetic models for antiepileptic drugs in a pediatric population.

The interest of these models is multiple:

* describe the pharmacokinetics of these molecules in children and explain the inter-individual variability of concentrations through covariates such as weight, age, co-treatments, genetic polymorphisms and renal function; * estimate maximum, minimum and exposure concentrations from the individual pharmacokinetic parameters for each patient; * propose adaptations of doses for certain classes of children (according to age, weight etc.) and individualize the doses.

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Key information

Age range

Up to 18 year

Sex eligibility

All sexes

Study type

Observational

Primary location

AP-HP Cochin

Paris, 75014, France

About this study

Epilepsy affects about 1% of the population, with a peak incidence in childhood, and persistent seizures on antiepileptic therapy in approximately 30% of patients. Over the past two decades, many antiepileptic molecules have emerged, raising the question of their optimal use, especially in pediatrics, where pharmacokinetics and pharmacodynamics are different from adults and largely influenced by age and development.

The pharmacokinetics of antiepileptics have been little studied in pediatric populations. In children, it is important to know if a maturational effect (of age) has to be taken into account in addition to the physiological effect (of the weight) to adapt the doses. Moreover, these molecules are often used in combination and lot of enzyme interactions make their use delicate. All of these factors explain the existence of significant inter-individual variability in the pediatric population.

The implication of the demographic and medicinal factors mentioned above, as well as the balance of efficacy / undesirable effects, justify the interest of a pharmacological monitoring of these drugs in a pediatric population. The use of population pharmacokinetics is particularly interesting in children because it requires only a small number of samples per patient and can be used to describe the predominant inter-individual variability in this population.

The main goal is to develop population pharmacokinetic models for the following antiepileptic drugs in children: valproic acid, carbamazepine, phenobarbital, phenytoin, levetiracetam, lamotrigine, topiramate, oxcarbazepine, stiripentol, clobazam, brivaracétam, felbamate, lacosamide, rufinamide, gabapentine, pregabaline, sultiame, tiagabine, vigabatrine, mesuximide, primidone, perampanel, ethosuximide, zonisamide and cannabidiol. The interest of these models is multiple:

  • describe the pharmacokinetics of these molecules in children and explain the interindividual variability of concentrations through covariates such as weight, age, co-treatments, genetic polymorphisms and renal function;
  • estimate maximum, minimum and exposure concentrations from the individual pharmacokinetic parameters for each patient;
  • propose adaptations of doses for certain classes of children (according to age, weight etc.) and individualize the doses.

The secondary objectives of this work are:

  • Build models jointly with several antiepileptic drugs, accounting for the strength of interactions between them during multiple therapies.
  • Link antiepileptic concentrations to the effects of treatment (reduction or cessation of seizures): pharmacokinetic-pharmacodynamic study with concentration / efficacy and concentration / toxicity relationships.
  • The evaluation of preexisting models in the literature and the comparison of the data with the results of these models (external validation).

Pharmaco-statistical analysis will be carried out on the retrospective data of patients treated with one or more antiepileptic molecule (s) and whose blood dosage of the drug(s) as part of their therapeutic follow-up is available. The study of genetic polymorphisms will be carried out from available blood samples, collected and stored as part of therapeutic follow-up of patients.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Children from 0 to 18 years of age with epilepsy;
  • Treatment with one or more antiepileptic drug (s) studied (valproic acid, carbamazepine, phenobarbital, phenytoin, levetiracetam, lamotrigine, topiramate, oxcarbazepine, stiripentol, clobazam, brivaracétam, felbamate, lacosamide, rufinamide, gabapentine, pregabaline, sultiame, tiagabine, vigabatrine, mesuximide, primidone, perampanel, ethosuximide, zonisamide and cannabidiol);
  • Blood dosage of the drug (s) as part of their therapeutic follow-up in the Pharmacology laboratory of the Cochin hospital between 2007 and 2019

Exclusion criteria

  • patient with missing data on time of last drug taking, time of collection, co-treatments and / or dose administered;
  • patient with doubt about compliance

Treatment and study plan

Valproic acid

Biological

titration

carbamazepine

Biological

titration

phenobarbital

Biological

titration

phenytoin

Biological

titration

levetiracetam

Biological

titration

lamotrigine

Biological

titration

topiramate

Biological

titration

oxcarbazepine

Biological

titration

stiripentol

Biological

titration

clobazam

Biological

titration

brivaracétam

Biological

titration

felbamate

Biological

titration

lacosamide

Biological

titration

rufinamide

Biological

titration

gabapentine

Biological

titration

pregabaline

Biological

titration

sultiame

Biological

titration

tiagabine

Biological

titration

vigabatrine

Biological

titration

mesuximide

Biological

titration

primidone

Biological

titration

perampanel

Biological

titration

ethosuximide

Biological

titration

zonisamide

Biological

titration

cannabidiol

Biological

titration

genetic polymorphisms

Other

genetic polymorphisms

Primary outcomes

  1. Volume of distribution

    Time frame: through study completion, an average of 5 years

  2. Absorption constant

    Time frame: through study completion, an average of 5 years

  3. Clearance

    Time frame: through study completion, an average of 5 years

Secondary outcomes

  1. Composite measure of the inter-individual variability

    Time frame: through study completion, an average of 5 years

    Covariates of inter-individual variability : age, weight, co-treatments, genetic polymorphisms and renal function

Sponsors and collaborators

Lead sponsor

Assistance Publique - Hôpitaux de Paris

Other

Collaborators

  • URC-CIC Paris Descartes Necker Cochin

Registry information

Acronym: EPIPOP

Important dates

Study start
2017
Primary completion
2023
Study completion
2023
First posted
Jun 22, 2017
Registry last updated
Nov 20, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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