Population pharmacokinetics of piperacillin using scavenged samples from preterm infants

Michael Cohen-Wolkowiez1, Daniel K Benjamin, Ashley Ross

  • 1Department of Pediatrics, Duke University, Durham, North Carolina 27715, USA. michael.cohenwolkowiez@duke.edu

Insights

Scavenged pharmacokinetic sampling in preterm infants provided valuable data for piperacillin models but not dosing. This minimal-risk approach offers insights but requires further exploration for definitive drug recommendations.

Area of Science:

  • Neonatal pharmacology
  • Pediatric pharmacokinetics
  • Infectious disease management

Background:

  • Piperacillin is crucial for intra-abdominal infections in preterm infants.
  • Current dosing lacks data from extremely preterm infants, a high-risk group.
  • Population pharmacokinetics (PK) studies are needed for optimized dosing.

Purpose of the Study:

  • To evaluate the population pharmacokinetics (PK) of piperacillin in preterm infants.
  • To utilize targeted sparse and scavenged sampling methods.
  • To include infants ≤ 32 weeks gestational age and <120 postnatal days.

Main Methods:

  • A 5-center study employing nonlinear mixed-effect modeling for population PK analysis.
  • Utilized a dataset of 211 samples, with 96% being scavenged from discarded specimens.
  • Evaluated covariate effects based on precision and clinical significance.

Main Results:

  • Piperacillin PK was best described by a 1-compartment model.
  • Clearance (CL) was influenced by weight and serum creatinine; higher gestational age showed increased CL.
  • A significant reduction in piperacillin CL (60%) was observed in infants with serum creatinine ≥ 1.2 mg/dL.
  • Over 70% of infants did not achieve predefined pharmacodynamic efficacy targets.

Conclusions:

  • Scavenged PK sampling is a low-risk method for generating data for PK model development.
  • This method provided meaningful PK information but not definitive piperacillin dosing recommendations.
  • The utility of scavenged sampling for dosing recommendations requires further drug-specific investigation.
Abstract

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