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Published on: August 30, 2018
Model-informed dosing optimization of colistin sulphate in critically ill patients with and without continuous renal
Jing Fu1, Ruiyun Ling1, Fang Jie2
1Wenzhou Medical University, Wenzhou, PR China; Department of Pharmacy, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou, PR China.
Objective:
This multicentre study aimed to evaluate the influence of continuous renal replacement therapy (CRRT) on the pharmacokinetics (PK) of colistin sulphate (CS) in critically ill patients and to propose optimized dosing regimens.
Methods:
Serial blood samples were obtained from critically ill patients receiving CS. Total CS concentrations were measured using a validated LC-MS/MS assay. The NONMEM software was utilized to develop the population PK model of CS and identify covariates influencing its PK. Monte Carlo simulations were conducted to optimize dosing regimens based on the probability of target attainment. Clinical efficacy, microbiological eradication, and adverse events of CS were also assessed. Logistic regression was conducted to identify clinical success predictors.
Results:
A total of 123 critically ill patients with 370 plasma concentration measurements were included. 29 patients (23.6%) received CRRT during CS treatment. The final population PK model was best characterized by a two-compartment structure, with creatinine clearance and CRRT significantly affecting CS clearance. Monte Carlo simulations indicated that patients undergoing CRRT required higher doses, and the use of a loading dose facilitated rapid target attainment. Overall, 68.3% of patients achieved clinical success, and bacterial eradication was 65.0%. Clinical efficacy was positively associated with longer treatment duration and negatively associated with vasoactive agent use. Notably, acute kidney injury occurred in 21.9% of patients during CS therapy.
Conclusions:
This study highlights the impact of CRRT on the PK of CS in critically ill patients, necessitating higher doses, and the use of a loading dose is recommended for rapid target attainment.
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