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Ciclosporin kinetics in children after stem cell transplantation
A J Willemze1, S C Cremers, R C Schoemaker
1Department of Paediatrics, Division of Immunology, Haematology, Oncology and Bone Marrow Transplantation and Autoimmune Diseases, Leiden University Medical Centre, Leiden, The Netherlands. a.j.willemze@lumc.nl
Insights
A new two-point sampling method accurately determines ciclosporin (cyclosporine) exposure (AUC) in children post-stem cell transplant. This strategy supports fixed dosing followed by AUC monitoring for personalized treatment.
Area of Science:
- Pharmacology
- Clinical Pharmacy
- Pediatric Stem Cell Transplantation
Background:
- Ciclosporin (cyclosporine) is a critical immunosuppressant post-stem cell transplantation (SCT).
- Accurate monitoring of systemic exposure, measured as area-under-the-curve (AUC), is essential for efficacy and safety.
- Limited sampling strategies can simplify therapeutic drug monitoring.
Purpose of the Study:
- To develop and validate a limited sampling strategy for determining ciclosporin AUC in pediatric SCT patients.
- To establish a simplified method for assessing drug exposure in this vulnerable population.
Main Methods:
- Prospective pharmacokinetic study in 17 pediatric SCT patients (aged 1.8-16.1 years).
- Ciclosporin administered intravenously and orally.
- Nonlinear mixed-effects modeling (NONMEM) used for parameter estimation.
- Correlation analysis between individual pharmacokinetic parameters and demographic variables.
Main Results:
- A two-compartment pharmacokinetic model with lag time adequately described ciclosporin disposition.
- A two-point limited sampling strategy (trough level plus one post-dose time point) accurately predicted ciclosporin AUC (r² = 0.97).
- No significant correlation was found between clearance/volume of distribution and patient demographics (weight, age, GFR).
Conclusions:
- A two-point limited sampling strategy combined with Bayesian fitting provides reliable ciclosporin AUC estimation.
- The lack of correlation with body weight suggests that weight-based dosing of ciclosporin may not be optimal.
- A fixed-dose initiation followed by AUC-guided dose adjustment is proposed for ciclosporin therapy.
Aims:
To develop a limited sampling strategy to determine ciclosporin systemic exposure [area-under-the-curve(AUC)]. This is meant to be the first step in a future study of the relationship between AUC and the biological effects of ciclosporin.
Methods:
The pharmacokinetics of ciclosporin was investigated prospectively following stem cell transplantation (SCT) in 17 children, aged 1.8-16.1 years. Ciclosporin was given twice daily, intravenously over a short infusion of 2 h duration during the early post-SCT period, or orally later on, when oral medication was well tolerated. Parameter estimation was performed using nonlinear mixed effect modelling as implemented in the NONMEM program. Individual empirical Bayes estimates of clearance and distribution volume were correlated with the demographic variables.
Results:
Pharmacokinetics was described adequately with a two-compartment model with lag time (population estimates: CL = 11.3 l h(-1); V(c) = 16.5 l; V(p) = 59.9 l; t(1/2) absorption = 0.78 h, t(lag) = 0.6 h). The AUCs, determined for the combination of trough level with one time point between 2 and 3 h after dosing, correlated very well with the reference AUC (r(2) = 0.97). No correlation was found between clearance and distribution volume, and the demographic patient variables length, body weight, age and glomerular filtration rate.
Conclusion:
A two-point limited sampling strategy, in combination with a Bayesian fitting procedure using the pharmacokinetic population model described, can adequately determine the AUC of ciclosporin. Since no correlation between clearance and body weight was found, dosing ciclosporin per kg bodyweight is not supported by the results of this study. We suggest starting with a fixed dose, followed by AUC determination and dose adjustment.
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