• J Clin Pharm Ther · Aug 2016

    Semi-mechanistic autoinduction model of midazolam in critically ill patients: population pharmacokinetic analysis.

    • T Aoyama, K Hirata, Y Yamamoto, H Yokota, H Hayashi, Y Aoyama, and Y Matsumoto.
    • Laboratory of Clinical Pharmacokinetics, School of Pharmacy, Nihon University, Chiba, Japan.
    • J Clin Pharm Ther. 2016 Aug 1; 41 (4): 392-8.

    What Is Known And ObjectiveMidazolam (MDZ) is commonly used for sedating critically ill patients. The daily dose required for adequate sedation increases in increments over 100 h after administration. The objectives of this study were to characterize the MDZ pharmacokinetics in critically ill patients and to describe the phenomenon of increasing daily dose by means of population pharmacokinetic analysis.MethodsData were obtained from 30 patients treated in an intensive care unit. The patients received MDZ intravenously as a combination of bolus and continuous infusion. Serum MDZ concentration was assayed by high-performance liquid chromatography. Population pharmacokinetic analysis was performed using the NONMEM software package. The alteration of clearance unexplained by demographic factors and clinical laboratory data was described as an autoinduction of MDZ clearance using a semi-mechanistic pharmacokinetic-enzyme turnover model.Results And DiscussionThe final population pharmacokinetic model was a one-compartment model estimated by incorporating a semi-mechanistic pharmacokinetic-enzyme turnover model for clearance, taking autoinduction into account. A significant covariate for MDZ clearance was total bilirubin. An increase in total bilirubin indicated a reduction in MDZ clearance. From simulation using the population pharmacokinetic parameters obtained in this study, MDZ clearance increased 2·3 times compared with pre-induced clearance 100 h after the start of 12·5 mg/h continuous infusion.What Is New And ConclusionAutoinduction and total bilirubin were significant predictors of the clearance of MDZ in this population. Step-by-step dosage adjustment using this population pharmacokinetic model may be useful for establishing a MDZ dosage regimen in critically ill patients.© 2016 John Wiley & Sons Ltd.

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