Population Pharmacokinetics of Intravenous Acyclovir in Oncologic Pediatric Patients
Natalia Maximova1, Daniela Nisticò2, Giacomo Luci3
1Department of Pediatrics, Institute for Maternal and Child Health-IRCCS Burlo Garofolo, Trieste, Italy.
Insights
Standard intravenous acyclovir dosing may be ineffective or toxic in pediatric oncology patients due to variable pharmacokinetics. Prolonged or continuous infusions may improve efficacy and safety by optimizing drug concentrations.
Area of Science:
- Pharmacology
- Pediatric Oncology
- Infectious Diseases
Background:
- Acyclovir is a first-line treatment for herpes virus infections.
- Pediatric pharmacokinetics of acyclovir can lead to ineffective or toxic drug levels.
- Oncologic children are particularly vulnerable to these pharmacokinetic challenges.
Purpose of the Study:
- To investigate the population pharmacokinetics (POP/PK) of intravenous (IV) acyclovir in pediatric oncology patients.
- To identify factors influencing acyclovir pharmacokinetics, such as estimated glomerular filtration rate (eGFR) and body weight.
- To simulate different dosing regimens to optimize acyclovir therapy.
Main Methods:
- Population pharmacokinetic (POP/PK) analysis using nonlinear mixed-effect modeling.
- Therapeutic drug monitoring of plasma acyclovir concentrations (minimum and maximal).
- Simulation of standard, prolonged, and continuous IV infusion regimens.
- Stratification of findings based on an eGFR threshold of 250 ml/min/1.73 m².
Main Results:
- eGFR significantly impacted acyclovir clearance; body weight influenced both clearance and volume of distribution.
- Standard 1-hour IV infusion (10 mg/kg every 6 hours) achieved target concentrations in children with normal eGFR (≤250 ml/min/1.73 m²).
- Higher eGFR necessitated higher doses, increasing toxicity risk; prolonged/continuous infusions improved target attainment and reduced toxicity.
Conclusions:
- Acyclovir pharmacokinetics vary significantly in pediatric oncology patients, rendering standard dosing potentially ineffective or toxic.
- Prolonged (2-3 hour) or continuous IV infusions may offer a safer and more effective alternative.
- Further prospective trials are needed to confirm the benefits of alternative infusion strategies.
Abstract:
Background: Acyclovir represents the first-line prophylaxis and therapy for herpes virus infections. However, its pharmacokinetics in children exposes them to the risk of ineffective or toxic concentrations. The study was aimed at investigating the population pharmacokinetics (POP/PK) of intravenous (IV) acyclovir in oncologic children. Methods: Patients (age, 8.6 ± 5.0 years, 73 males and 47 females) received IV acyclovir for prophylaxis (n = 94) and therapy (n = 26) under a therapeutic drug monitoring (i.e., minimum and maximal plasma concentrations, >0.5 and <25 mg/L, respectively). Plasma concentrations were fitted by nonlinear mixed effect modeling and a simulation of dosing regimens was performed. Findings were stratified according to an estimated glomerular filtration rate (eGFR) threshold of 250 ml/min/1.73 m2. Results: The final 1-compartment POP/PK model showed that eGFR had a significant effect on drug clearance, while allometric body weight influenced both clearance and volume of distribution. The population clearance (14.0 ± 5.5 L/h) was consistent across occasions. Simulation of standard 1-h IV infusion showed that a 10-mg/kg dose every 6 h achieved target concentrations in children with normal eGFR (i.e., ≤250 ml/min/1.73 m2). Increased eGFR values required higher doses that led to an augmented risk of toxic peak concentrations. On the contrary, simulated prolonged (i.e., 2 and 3-h) or continuous IV infusions at lower doses increased the probability of target attainment while reducing the risk of toxicities. Conclusion: Due to the variable pharmacokinetics of acyclovir, standard dosing regimens may not be effective in some patients. Prospective trials should confirm the therapeutic advantage of prolonged and continuous IV infusions.
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