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Drug Disposition and Pharmacotherapy in Neonatal ECMO: From Fragmented Data to Integrated Knowledge
Genny Raffaeli1,2, Pavla Pokorna3,4,5, Karel Allegaert6,7
1Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, NICU, Milan, Italy.
Insights
Optimizing drug dosing for neonates on extracorporeal membrane oxygenation (ECMO) is critical. This review examines pharmacokinetics and pharmacodynamics, offering evidence-based recommendations for safe and effective pharmacotherapy in critically ill infants.
Area of Science:
- Neonatal pharmacology
- Critical care medicine
- Pharmacokinetics and pharmacodynamics (PK/PD)
Background:
- Extracorporeal membrane oxygenation (ECMO) is vital for neonates with cardiac/respiratory failure.
- Effective pharmacotherapy is essential for patient survival and recovery.
- Limited data exist on drug dosing for neonates on ECMO, posing a significant clinical challenge.
Purpose of the Study:
- To review the current evidence on drug pharmacokinetics and pharmacodynamics in neonates undergoing ECMO.
- To identify key factors influencing drug disposition and response in this population.
- To provide evidence-based recommendations for optimizing pharmacotherapy and highlight areas for future research.
Main Methods:
- Literature review of existing studies on neonatal pharmacology during ECMO.
- Analysis of factors affecting drug pharmacokinetics (PK) and pharmacodynamics (PD), including patient-specific and circuit-related variables.
- Exploration of physiologically-based pharmacokinetic (PBPK) modeling as a tool for dosing guidance.
Main Results:
- Drug dosing during neonatal ECMO is complex due to maturational changes and critical illness.
- Factors like organ function, protein binding, and ECMO circuit characteristics significantly alter drug PK/PD.
- Physiologically-based pharmacokinetic modeling shows promise for improving bedside dosing strategies.
Conclusions:
- An integrated approach to drug prescription is crucial to avoid under- and over-dosing in neonates on ECMO.
- Understanding the dose-exposure-response relationship is key to optimizing safety and efficacy.
- Further research is needed to refine dosing strategies and enhance clinical practice.
Abstract:
Extracorporeal membrane oxygenation (ECMO) is a lifesaving support technology for potentially reversible neonatal cardiac and/or respiratory failure. As the survival and the overall outcome of patients rely on the treatment and reversal of the underlying disease, effective and preferentially evidence-based pharmacotherapy is crucial to target recovery. Currently limited data exist to support the clinicians in their every-day intensive care prescribing practice with the contemporary ECMO technology. Indeed, drug dosing to optimize pharmacotherapy during neonatal ECMO is a major challenge. The impact of the maturational changes of the organ function on both pharmacokinetics (PK) and pharmacodynamics (PD) has been widely established over the last decades. Next to the developmental pharmacology, additional non-maturational factors have been recognized as key-determinants of PK/PD variability. The dynamically changing state of critical illness during the ECMO course impairs the achievement of optimal drug exposure, as a result of single or multi-organ failure, capillary leak, altered protein binding, and sometimes a hyperdynamic state, with a variable effect on both the volume of distribution (Vd) and the clearance (Cl) of drugs. Extracorporeal membrane oxygenation introduces further PK/PD perturbation due to drug sequestration and hemodilution, thus increasing the Vd and clearance (sequestration). Drug disposition depends on the characteristics of the compounds (hydrophilic vs. lipophilic, protein binding), patients (age, comorbidities, surgery, co-medications, genetic variations), and circuits (roller vs. centrifugal-based systems; silicone vs. hollow-fiber oxygenators; renal replacement therapy). Based on the potential combination of the above-mentioned drug PK/PD determinants, an integrated approach in clinical drug prescription is pivotal to limit the risks of over- and under-dosing. The understanding of the dose-exposure-response relationship in critically-ill neonates on ECMO will enable the optimization of dosing strategies to ensure safety and efficacy for the individual patient. Next to in vitro and clinical PK data collection, physiologically-based pharmacokinetic modeling (PBPK) are emerging as alternative approaches to provide bedside dosing guidance. This article provides an overview of the available evidence in the field of neonatal pharmacology during ECMO. We will identify the main determinants of altered PK and PD, elaborate on evidence-based recommendations on pharmacotherapy and highlight areas for further research.
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