Literature DB >> 29378710

Evaluation of a System-Specific Function To Describe the Pharmacokinetics of Benzylpenicillin in Term Neonates Undergoing Moderate Hypothermia.

Yuma A Bijleveld1, Timo R de Haan2, Johanna H van der Lee3, Floris Groenendaal4,5, Peter H Dijk6, Arno van Heijst7, Rogier C J de Jonge8, Koen P Dijkman9, Henrica L M van Straaten10, Monique Rijken11, Inge A Zonnenberg12, Filip Cools13, Alexandra Zecic14, Debbie H G M Nuytemans2, Anton H van Kaam2,12, Ron A A Mathôt.   

Abstract

The pharmacokinetic (PK) properties of intravenous (i.v.) benzylpenicillin in term neonates undergoing moderate hypothermia after perinatal asphyxia were evaluated, as they have been unknown until now. A system-specific modeling approach was applied, in which our recently developed covariate model describing developmental and temperature-induced changes in amoxicillin clearance (CL) in the same patient study population was incorporated into a population PK model of benzylpenicillin with a priori birthweight (BW)-based allometric scaling. Pediatric population covariate models describing the developmental changes in drug elimination may constitute system-specific information and may therefore be incorporated into PK models of drugs cleared through the same pathway. The performance of this system-specific model was compared to that of a reference model. Furthermore, Monte-Carlo simulations were performed to evaluate the optimal dose. The system-specific model performed as well as the reference model. Significant correlations were found between CL and postnatal age (PNA), gestational age (GA), body temperature (TEMP), urine output (UO; system-specific model), and multiorgan failure (reference model). For a typical patient with a GA of 40 weeks, BW of 3,000 g, PNA of 2 days (TEMP, 33.5°C), and normal UO (2 ml/kg/h), benzylpenicillin CL was 0.48 liter/h (interindividual variability [IIV] of 49%) and the volume of distribution of the central compartment was 0.62 liter/kg (IIV of 53%) in the system-specific model. Based on simulations, we advise a benzylpenicillin i.v. dose regimen of 75,000 IU/kg/day every 8 h (q8h), 150,000 IU/kg/day q8h, and 200,000 IU/kg/day q6h for patients with GAs of 36 to 37 weeks, 38 to 41 weeks, and ≥42 weeks, respectively. The system-specific model may be used for other drugs cleared through the same pathway accelerating model development.
Copyright © 2018 American Society for Microbiology.

Entities:  

Keywords:  benzylpenicillin; moderate hypothermia; neonate; perinatal asphyxia; population pharmacokinetics

Mesh:

Substances:

Year:  2018        PMID: 29378710      PMCID: PMC5914006          DOI: 10.1128/AAC.02311-17

Source DB:  PubMed          Journal:  Antimicrob Agents Chemother        ISSN: 0066-4804            Impact factor:   5.191


  46 in total

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Journal:  CPT Pharmacometrics Syst Pharmacol       Date:  2012-10-03

10.  Pharmacokinetics and pharmacodynamics of medication in asphyxiated newborns during controlled hypothermia. The PharmaCool multicenter study.

Authors:  Timo R de Haan; Yuma A Bijleveld; Johanna H van der Lee; Floris Groenendaal; Marcel P H van den Broek; Carin M A Rademaker; Henrica L M van Straaten; Mirjam M van Weissenbruch; Jeroen R Vermeulen; Peter H Dijk; Jeroen Dudink; Monique Rijken; Arno van Heijst; Koen P Dijkman; Danilo Gavilanes; Anton H van Kaam; Martin Offringa; Ron A A Mathôt
Journal:  BMC Pediatr       Date:  2012-05-22       Impact factor: 2.125

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Authors:  Laurent M A Favié; Floris Groenendaal; Marcel P H van den Broek; Carin M A Rademaker; Timo R de Haan; Henrica L M van Straaten; Peter H Dijk; Arno van Heijst; Jeroen Dudink; Koen P Dijkman; Monique Rijken; Inge A Zonnenberg; Filip Cools; Alexandra Zecic; Johanna H van der Lee; Debbie H G M Nuytemans; Frank van Bel; Toine C G Egberts; Alwin D R Huitema
Journal:  PLoS One       Date:  2019-02-14       Impact factor: 3.240

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4.  Prediction of Drug Exposure in Critically Ill Encephalopathic Neonates Treated With Therapeutic Hypothermia Based on a Pooled Population Pharmacokinetic Analysis of Seven Drugs and Five Metabolites.

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