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Published on: February 14, 2018
Pharmacokinetics and pharmacodynamics of antifungals in children: clinical implications
Julie Autmizguine1, Jeffrey T Guptill, Michael Cohen-Wolkowiez
1Duke Clinical Research Institute, 2400 Pratt St, PO Box 17969, Durham, NC, 27705, USA.
Abstract:
Invasive fungal disease (IFD) remains life threatening in premature infants and immunocompromised children despite the recent development of new antifungal agents. Optimal dosing of antifungals is one of the few factors clinicians can control to improve outcomes of IFD. However, dosing in children cannot be extrapolated from adult data because IFD pathophysiology, immune response, and drug disposition differ from adults. We critically examined the literature on pharmacokinetics (PK) and pharmacodynamics (PD) of antifungal agents and highlight recent developments in treating pediatric IFD. To match adult exposure in pediatric patients, dosing adjustment is necessary for almost all antifungals. In young infants, the maturation of renal and metabolic functions occurs rapidly and can significantly influence drug exposure. Fluconazole clearance doubles from birth to 28 days of life and, beyond the neonatal period, agents such as fluconazole, voriconazole, and micafungin require higher dosing than in adults because of faster clearance in children. As a result, dosing recommendations are specific to bracketed ranges of age. PD principles of antifungals mostly rely on in vitro and in vivo models but very few PD studies specifically address IFD in children. The exposure-response relationship may differ in younger children compared with adults, especially in infants with invasive candidiasis who are at higher risk of disseminated disease and meningoencephalitis, and by extension severe neurodevelopmental impairment. Micafungin is the only antifungal agent for which a specific target of exposure was proposed based on a neonatal hematogenous Candida meningoencephalitis animal model. In this review, we found that pediatric data on drug disposition of newer triazoles and echinocandins are lacking, dosing of older antifungals such as fluconazole and amphotericin B products still need optimization in young infants, and that target PK/PD indices need to be clinically validated for almost all antifungals in children. A better understanding of age-specific PK and PD of new antifungals in infants and children will help improve clinical outcomes of IFD by informing dosing and identifying future research areas.
Insights
Optimizing antifungal dosing is crucial for treating invasive fungal disease (IFD) in children. Pediatric pharmacokinetics and pharmacodynamics differ from adults, necessitating age-specific dosing strategies and further research for improved outcomes.
Area of Science:
- Pediatric Pharmacology
- Infectious Diseases
- Drug Metabolism and Disposition
Background:
- Invasive fungal disease (IFD) poses a significant threat to premature infants and immunocompromised children.
- Current antifungal dosing in children often cannot be extrapolated from adult data due to distinct physiological differences.
Purpose of the Study:
- To critically review the literature on antifungal pharmacokinetics (PK) and pharmacodynamics (PD) in pediatric populations.
- To highlight recent advancements and identify knowledge gaps in treating pediatric IFD.
Main Methods:
- Comprehensive literature review of PK/PD studies on antifungal agents in children.
- Analysis of age-specific drug disposition and exposure-response relationships.
Main Results:
- Pediatric patients often require adjusted antifungal dosing compared to adults due to rapid maturation of metabolic and renal functions.
- Specific agents like fluconazole, voriconazole, and micafungin demonstrate faster clearance in children, necessitating higher doses.
- Limited PK/PD data exists for newer antifungals, and target indices require clinical validation in pediatric populations.
Conclusions:
- Age-specific dosing is essential for effective and safe antifungal therapy in children.
- Further research is needed to establish robust PK/PD targets for antifungals in pediatric IFD.
- Improved understanding of age-specific PK/PD will optimize treatment and inform future drug development.
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Antifungal Agents

