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Maturation of Oxycodone Pharmacokinetics in Neonates and Infants: a Population Pharmacokinetic Model of Three Clinical Trials.

Authors :
Välitalo, Pyry
Kokki, Merja
Ranta, Veli-Pekka
Olkkola, Klaus
Hooker, Andrew
Kokki, Hannu
Source :
Pharmaceutical Research; May2017, Vol. 34 Issue 5, p1125-1133, 9p
Publication Year :
2017

Abstract

Purpose: The aim of the current population pharmacokinetic study was to quantify oxycodone pharmacokinetics in children ranging from preterm neonates to children up to 7 years of age. Methods: Data on intravenous or intramuscular oxycodone administration were obtained from three previously published studies ( n = 119). The median [range] postmenstrual age of the subjects was 299 days [170 days-7.8 years]. A population pharmacokinetic model was built using 781 measurements of oxycodone plasma concentration. The model was used to simulate repeated intravenous oxycodone administration in four representative infants covering the age range from an extremely preterm neonate to 1-year old infant. Results: The rapid maturation of oxycodone clearance was best described with combined allometric scaling and maturation function. Central and peripheral volumes of distribution were nonlinearly related to bodyweight. The simulations on repeated intravenous administration in virtual patients indicated that oxycodone plasma concentration can be kept between 10 and 50 ng/ml with a high probability when the maintenance dose is calculated using the typical clearance and the dose interval is 4 h. Conclusions: Oxycodone clearance matures rapidly after birth, and between-subject variability is pronounced in neonates. The pharmacokinetic model developed may be used to evaluate different multiple dosing regimens, but the safety of repeated doses should be ensured. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07248741
Volume :
34
Issue :
5
Database :
Complementary Index
Journal :
Pharmaceutical Research
Publication Type :
Academic Journal
Accession number :
122314880
Full Text :
https://doi.org/10.1007/s11095-017-2122-6