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Published on: August 30, 2018
Prophylactic ranitidine treatment in critically ill children--a population pharmacokinetic study
Ahmed F Hawwa1, Paul M Westwood, Paul S Collier
1Clinical and Practice Research Group, School of Pharmacy, Queen's University Belfast, Belfast, BT9 7BL, UK.
Insights
Population pharmacokinetics of ranitidine in critically ill children show that cardiac failure or surgery significantly reduces clearance. Dosing should consider weight, cardiac status, and surgery to optimize ranitidine administration.
Area of Science:
- Pediatric Pharmacology
- Critical Care Medicine
- Pharmacokinetic Modeling
Background:
- Ranitidine is commonly used in critically ill children for gastrointestinal protection.
- Current dosing recommendations are primarily weight-based.
- Understanding ranitidine disposition in this population is crucial for safe and effective therapy.
Purpose of the Study:
- To characterize the population pharmacokinetics of ranitidine in critically ill pediatric patients.
- To identify clinical and demographic factors influencing ranitidine's pharmacokinetic parameters.
Main Methods:
- Prospective data collection from 78 pediatric patients receiving ranitidine.
- Analysis of 248 plasma samples using high-performance liquid chromatography.
- Population pharmacokinetic analysis employing nonlinear mixed-effects modeling.
Main Results:
- A one-compartment model best described ranitidine plasma concentrations.
- Total clearance was estimated at 32.1 L/h and volume of distribution at 285 L, allometrically scaled.
- Cardiac failure or surgery significantly reduced ranitidine clearance by 0.46-fold, independent of age and weight.
Conclusions:
- Ranitidine dosing in critically ill children should incorporate factors beyond weight.
- A more refined dosing strategy considering cardiac status and surgical history is recommended.
- This approach aims to prevent under- or over-dosing of ranitidine.
Aims:
To characterize the population pharmacokinetics of ranitidine in critically ill children and to determine the influence of various clinical and demographic factors on its disposition.
Methods:
Data were collected prospectively from 78 paediatric patients (n = 248 plasma samples) who received oral or intravenous ranitidine for prophylaxis against stress ulcers, gastrointestinal bleeding or the treatment of gastro-oesophageal reflux. Plasma samples were analysed using high-performance liquid chromatography, and the data were subjected to population pharmacokinetic analysis using nonlinear mixed-effects modelling.
Results:
A one-compartment model best described the plasma concentration profile, with an exponential structure for interindividual errors and a proportional structure for intra-individual error. After backward stepwise elimination, the final model showed a significant decrease in objective function value (-12.618; P < 0.001) compared with the weight-corrected base model. Final parameter estimates for the population were 32.1 l h(-1) for total clearance and 285 l for volume of distribution, both allometrically modelled for a 70 kg adult. Final estimates for absorption rate constant and bioavailability were 1.31 h(-1) and 27.5%, respectively. No significant relationship was found between age and weight-corrected ranitidine pharmacokinetic parameters in the final model, with the covariate for cardiac failure or surgery being shown to reduce clearance significantly by a factor of 0.46.
Conclusions:
Currently, ranitidine dose recommendations are based on children's weights. However, our findings suggest that a dosing scheme that takes into consideration both weight and cardiac failure/surgery would be more appropriate in order to avoid administration of higher or more frequent doses than necessary.
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