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Published on: May 2, 2025
Pharmacokinetics in the Fontan circulation: a multi-organ puzzle
Panayotis K Vlachakis1,2, Maria Drakopoulou1,2, Panagiotis Theofilis1,2
1First Department of Cardiology, Hippokration General Hospital of Athens, National and Kapodistrian University of Athens, 114 Vasilissis Sophias, Athens 11527, Greece.
Insights
Patients with Fontan circulation have altered drug processing due to their unique physiology. Current prescribing practices often fail to account for these pharmacokinetic changes, impacting medication effectiveness and safety.
Area of Science:
- Pharmacology
- Cardiovascular Physiology
- Drug Metabolism
Background:
- Fontan circulation presents unique physiological challenges affecting drug disposition.
- Altered hemodynamics, liver function, and protein binding impact pharmacokinetics.
- Current prescribing practices often overlook these Fontan-specific alterations.
Purpose of the Study:
- To review the pharmacokinetic alterations in patients with Fontan circulation.
- To evaluate the impact of these changes on major cardiovascular drug classes.
- To propose a research agenda for Fontan-specific pharmacokinetics.
Main Methods:
- Literature review of pharmacokinetic alterations in Fontan patients.
- Examination of mechanistic basis for altered drug disposition.
- Evaluation of existing drug-class evidence.
Main Results:
- Fontan-associated liver disease reduces first-pass metabolism, increasing drug bioavailability.
- Hypoalbuminemia increases the free fraction of protein-bound drugs.
- Reduced cardiac output and renal perfusion affect drug distribution and clearance.
Conclusions:
- Pharmacokinetic changes in Fontan patients necessitate tailored prescribing strategies.
- Further research, including physiologically-based modeling and dedicated trials, is crucial.
- Optimizing drug therapy requires accounting for Fontan-specific pharmacokinetic alterations.
Abstract:
Patients with Fontan circulation represent a pharmacologically distinct population in whom the haemodynamic consequences of single-ventricle physiology alter every phase of drug disposition in ways that current prescribing practice systematically fails to account for. Fontan-associated liver disease suppresses hepatic CYP enzyme activity and reduces first-pass metabolism, increasing bioavailability and systemic exposure of drugs. Hypoalbuminaemia from protein-losing enteropathy elevates the free fraction of highly protein-bound agents, rendering standard total drug concentration targets unreliable. Reduced cardiac output contracts the volume of distribution of hydrophilic drugs and diminishes renal perfusion, while creatinine-based glomerular filtration rate equations systematically overestimate true renal function due to reduced skeletal muscle mass, leading to inadequate dose reduction for renally cleared agents. These disturbances are predicted to affect the pharmacokinetics of every major cardiovascular drug class prescribed in this population, including anticoagulants, antiarrhythmics, neurohormonal antagonists, and pulmonary vasodilators, although direct Fontan-specific pharmacokinetic data remain scarce and confirm these effects for only a minority of agents, with dosing largely extrapolated from non-congenital populations. This review examines the mechanistic basis of pharmacokinetic alterations across drug disposition, evaluate available drug-class evidence, and outlines a research agenda including physiologically based pharmacokinetic modelling, registry-embedded studies, and dedicated inclusion of Fontan patients in future trials.
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