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A population pharmacokinetic model for simvastatin and its metabolites in children and adolescents.


ABSTRACT: PURPOSE:Poor adherence to dietary/behaviour modifications as interventions for hypercholesterolemia in paediatric patients often necessitates the initiation of statin therapy. The aim of this study was to develop a joint population pharmacokinetic model for simvastatin and four metabolites in children and adolescents to investigate sources of variability in simvastatin acid exposure in this patient population, in addition to SLCO1B1 genotype status. METHODS:Plasma concentrations of simvastatin and its four metabolites, demographic and polymorphism data for OATP1B1 and CYP3A5 were analysed utilising a population pharmacokinetic modelling approach from an existing single oral dose (10 mg C (rs4149056) on the pharmacokinetics of the active metabolite simvastatin acid in children/adolescents, consistent with adult data. In addition, age was identified as a covariate affecting elimination clearances of 6-hydroxymethyl simvastatin acid and 3, 5 dihydrodiol simvastatin metabolites. CONCLUSION:The model developed describes the pharmacokinetics of simvastatin and its metabolites in children/adolescents capturing the effects of both c.521T>C and age on variability in exposure in this patient population. This joint simvastatin metabolite model is envisaged to facilitate optimisation of simvastatin dosing in children/adolescents.

SUBMITTER: Ogungbenro K 

PROVIDER: S-EPMC6697721 | biostudies-literature | 2019 Sep

REPOSITORIES: biostudies-literature

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A population pharmacokinetic model for simvastatin and its metabolites in children and adolescents.

Ogungbenro Kayode K   Wagner Jonathan B JB   Abdel-Rahman Susan S   Leeder J Steven JS   Galetin Aleksandra A  

European journal of clinical pharmacology 20190606 9


<h4>Purpose</h4>Poor adherence to dietary/behaviour modifications as interventions for hypercholesterolemia in paediatric patients often necessitates the initiation of statin therapy. The aim of this study was to develop a joint population pharmacokinetic model for simvastatin and four metabolites in children and adolescents to investigate sources of variability in simvastatin acid exposure in this patient population, in addition to SLCO1B1 genotype status.<h4>Methods</h4>Plasma concentrations o  ...[more]

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