Population Pharmacokinetics of Liposomal Amphotericin B in Immunocompromised Children

Jodi M Lestner1, Andreas H Groll2, Ghaith Aljayyoussi3

  • 1Antimicrobial Pharmacodynamics and Therapeutics, University of Liverpool, Liverpool, United Kingdom jlestner@liverpool.ac.uk.

Insights

Liposomal amphotericin B (LAmB) dosing in children requires more pharmacokinetic data. A third of pediatric patients showed altered LAmB drug exposure over time, impacting toxicity risk.

Area of Science:

  • Pharmacology
  • Pediatric Medicine
  • Mycology

Background:

  • Liposomal amphotericin B (LAmB) is a critical antifungal agent for invasive fungal disease (IFD).
  • Limited pediatric pharmacokinetic (PK) data hinders optimal LAmB dosing in children.
  • Achieving adult-level drug exposures in pediatric patients is a key challenge.

Purpose of the Study:

  • To characterize LAmB pharmacokinetics in pediatric patients (1-17 years) with IFD.
  • To identify factors influencing LAmB exposure and toxicity in children.
  • To inform evidence-based LAmB dosing strategies for pediatric populations.

Main Methods:

  • Thirty-five children received LAmB (2.5-10 mg/kg/day).
  • Serial blood sampling for LAmB measurement via HPLC at baseline and end of therapy.
  • PK modeling using a 2-compartment model with weight and time-dependent functions.

Main Results:

  • LAmB PK exhibited nonlinearity and time-dependent changes in a subset of children (n=13).
  • Increased Cmax and AUC0-24 observed later in therapy without accumulation.
  • Significant association found between mean AUC0-24 and nephrotoxicity risk (OR 2.37).

Conclusions:

  • LAmB PK in children is nonlinear and can change over treatment duration.
  • Pediatric LAmB dosing may require adjustments due to time-dependent PK alterations.
  • AUC-driven dosing strategies are crucial for optimizing LAmB efficacy and safety in children.

Related Concept Videos

Pharmacokinetics in Pediatric Patients: Drug Excretion01:26

Pharmacokinetics in Pediatric Patients: Drug Excretion

In pediatric medicine, understanding the renal function and drug elimination nuances is crucial for administering safe and effective treatments. Newborns, in particular, display markedly slower renal functions than adults, profoundly affecting how drugs are cleared from their bodies. This slower drug clearance requires clinicians to extend the dosing intervals for many medications to prevent drug accumulation and toxicity while ensuring therapeutic efficacy.One key area where these adjustments...
349
Pharmacokinetics in Pediatric Patients: Drug Distribution01:17

Pharmacokinetics in Pediatric Patients: Drug Distribution

Drug distribution in the pediatric population exhibits unique challenges and considerations due to the physiological differences between children, particularly neonates and infants, and adults. A crucial aspect of pediatric pharmacology is understanding how these differences impact the pharmacokinetics of various drugs, necessitating age-specific dosing strategies to ensure efficacy and safety.Neonates and infants have a higher total body water content, ~75%–90% of their body weight,...
414
Pharmacokinetics in Pediatric Patients: Overview and Drug Absorption01:23

Pharmacokinetics in Pediatric Patients: Overview and Drug Absorption

Understanding the physiological differences in the pediatric population is crucial for effective pharmacotherapy. Neonates, infants, and children exhibit significant variations in gastric pH, gastric emptying time, intestinal transit time, and biliary function. These variations profoundly affect oral drug absorption, necessitating a nuanced approach to pediatric dosing.Neonates present with a unique physiological profile, having a gastric pH greater than 4 and faster and more irregular gastric...
626
Pharmacokinetics in Pediatric Patients: Drug Metabolism01:24

Pharmacokinetics in Pediatric Patients: Drug Metabolism

In pediatric care, understanding the nuances of hepatic drug metabolism is crucial, as it significantly differs from that of adults. This divergence is primarily due to the developmental stage of drug-metabolizing enzymes, which affects how medications are processed in the body. In neonates, for instance, the activity of Phase I enzymes—critical for the initial breakdown of drugs—is markedly reduced, functioning at just 20–40% of the levels seen in adults. This reduction poses...
309
Drug Dosing: Infants and Children01:29

Drug Dosing: Infants and Children

Pediatric patient dosages diverge from adults due to disparities in body surface area, total body water, and extracellular fluid per kilogram of body weight. The dosing regimen considers the variations in pharmacokinetics and pharmacology across distinct age groups, encompassing preterm newborns, infants, young children, older children, and adolescents. Calculation of pediatric patient doses is predicated on determining body surface area, which exhibits a superior correlation with the child's...
673
Dosage Regimens: Partial Pharmacokinetic Parameters01:01

Dosage Regimens: Partial Pharmacokinetic Parameters

It is not uncommon for complete drug pharmacokinetic profiles to remain elusive in pharmacokinetics. This necessitates certain educated assumptions by pharmacokineticists to determine appropriate dosage regimens without comprehensive pharmacokinetic data from animal or human studies. One prevalent assumption is setting the bioavailability factor, denoted as F, to 1 or 100%. This assumption caters to the scenario where a drug doesn't achieve full systemic absorption, resulting in the patient...
246