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Vancomycin pharmacokinetic and pharmacodynamic models for critically ill patients with post-sternotomy mediastinitis
Olivier Mangin1, Saïk Urien, Jean-Luc Mainardi
1Medical Intensive Care Unit, Hôpital Européen Georges Pompidou, Assistance Publique-Hôpitaux de Paris, Université Paris Descartes Sorbonne Paris Cité, 20 rue Leblanc, 75908, Paris Cedex 15, France.
Background And Objective:
Vancomycin is commonly used to treat serious methicillin-resistant staphylococcal infections, especially post-sternotomy mediastinitis (PSM). However, information on pharmacokinetics and pharmacodynamics in intensive care unit (ICU) patients remains scarce. We conducted vancomycin pharmacokinetic-pharmacodynamic modeling for ICU patients with PSM.
Methods:
This cohort study included 30 consecutive patients who received multiple vancomycin doses during primary closed drainage of PSM with Redon catheters, targeting serum drug trough concentrations of 25-35 mg/L, and generating 359 serum vancomycin concentration-time values for analysis. Population pharmacodynamics served to describe the withdrawal of Redon catheters, i.e., the probability of in-ICU cure.
Results:
Vancomycin pharmacokinetics corresponded to a two-compartment open model with first-order elimination kinetics. Mean [between-subject variability] population estimates were 1.91 (men)/1.25 (women) [0.28] L/h for vancomycin elimination, with intercompartmental clearance of 5.71 [1.01] L/h, and respective central and peripheral distribution volumes of 21.9 and 68 [0.53] L. Vancomycin clearance increased with body weight and declined with severity at ICU admission and serum creatinine (SCr), thereby allowing the prediction of the vancomycin plateau. Intercompartmental clearance decreased with diabetes mellitus (-70 %). The probability of withdrawing all Redon catheters (patient cured) was dependent only on the area under the concentration-time curve to minimum inhibitory concentration (AUC/MIC) exposures ratio in plasma. Neither preoperative factors, antistaphylococcal co-treatments, nor the initial number of Redon catheters significantly influenced this probability. The AUC/MIC exposures ratio had no significant effect on SCr levels.
Conclusion:
These modeling analysis results identified five clinically relevant covariates that influenced vancomycin pharmacokinetics and might achieve better individualization of vancomycin dosing for methicillin-resistant staphylococcal PSM in ICU patients.
Insights
This study modeled vancomycin pharmacokinetics in intensive care unit (ICU) patients with post-sternotomy mediastinitis (PSM). Achieving optimal vancomycin exposure (AUC/MIC) is key for successful treatment and catheter removal in these critical patients.
Area of Science:
- Pharmacology
- Infectious Diseases
- Critical Care Medicine
Background:
- Vancomycin is crucial for treating methicillin-resistant staphylococcal infections, particularly post-sternotomy mediastinitis (PSM).
- Limited pharmacokinetic and pharmacodynamic data exist for vancomycin in intensive care unit (ICU) patients with PSM.
Purpose of the Study:
- To conduct pharmacokinetic-pharmacodynamic (PK/PD) modeling of vancomycin in ICU patients diagnosed with PSM.
- To identify factors influencing vancomycin PK/PD and patient cure rates.
Main Methods:
- A cohort study involving 30 ICU patients with PSM receiving multiple vancomycin doses.
- Collected 359 serum vancomycin concentration-time data points for population PK/PD analysis.
- Modeled the probability of Redon catheter withdrawal (in-ICU cure) based on PK/PD parameters.
Main Results:
- Vancomycin PK followed a two-compartment open model; clearance was influenced by body weight, ICU admission severity, and serum creatinine.
- Intercompartmental clearance was reduced in patients with diabetes mellitus.
- Patient cure, indicated by Redon catheter withdrawal, was solely dependent on the area under the concentration-time curve to minimum inhibitory concentration (AUC/MIC) ratio.
Conclusions:
- Five clinical covariates significantly impact vancomycin pharmacokinetics in ICU patients with PSM.
- Individualized vancomycin dosing strategies can be developed based on these PK/PD findings.
- Optimizing AUC/MIC exposure is critical for achieving successful treatment outcomes in this patient population.
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