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Determination of Optimal Amikacin Dosing Regimens for Pediatric Patients With Burn Wound Sepsis
Tian Yu1, Chris Stockmann, Daniel P Healy
1From the *Department of Pediatrics, Division of Clinical Pharmacology, University of Utah, Salt Lake City; †James L. Winkle College of Pharmacy, University of Cincinnati, Ohio; ‡The Shriners Hospitals for Children®, Cincinnati, Ohio; §Intermountain Primary Children's Hospital, Salt Lake City, Utah; and ‖Department of Surgery, University of Cincinnati College of Medicine, Ohio.
Abstract:
This study aimed to develop optimal amikacin dosing regimens for the empirical treatment of Gram-negative bacterial sepsis in pediatric patients with burn injuries. A pharmacodynamic (PD) target in which the peak concentration (Cmax) is ≥8 times the minimum inhibitory concentration (MIC) (Cmax/MIC ≥ 8) is reflective of optimal bactericidal activity and has been used to predict clinical outcomes. Population pharmacokinetic modeling was performed in NONMEM 7.2 for pediatric patients with and without burn injuries. Amikacin pharmacokinetic parameters were compared between the two groups and multiple dosing regimens were simulated using MATLAB to achieve the PD target in ≥90% of patients with burn injuries. The pharmacokinetic analysis included 282 amikacin concentrations from 70 pediatric patients with burn injuries and 99 concentrations from 32 pediatric patients without burns. A one-compartment model with first-order elimination described amikacin pharmacokinetics well for both groups. Clearance (CL) was significantly higher in patients with burn injuries than in patients without (7.22 vs 5.36 L/h, P < .001). The volume of distribution (V) was also significantly increased in patients with burn injuries (22.7 vs 18.7 L, P < .01). Weight significantly influenced amikacin CL (P < .001) and V (P < .001) for both groups. Model-based simulations showed that a higher amikacin dose (≥25 mg/kg) achieved a Cmax/MIC ≥8 in ≥90% of patients with assumed infections of organisms with an MIC = 8 mg/L. Amikacin pharmacokinetics are altered in patients with burn injuries, including a significant increase in CL and V. In simulations, increased doses (≥25 mg/kg) led to improved PD target attainment rates. Further clinical evaluation of this proposed dosing regimen is warranted to assess clinical and microbiological outcomes in pediatric patients with burn wound sepsis.
Insights
Higher amikacin doses (≥25 mg/kg) are recommended for pediatric burn patients with Gram-negative bacterial sepsis to achieve optimal therapeutic targets. This ensures effective treatment by reaching desired peak drug concentrations relative to bacterial minimum inhibitory concentrations.
Area of Science:
- Pharmacokinetics and Pharmacodynamics
- Pediatric Infectious Diseases
- Burn Injury Management
Background:
- Gram-negative bacterial sepsis is a critical concern in pediatric burn patients.
- Amikacin is frequently used for empirical treatment, but optimal dosing is unclear.
- A key pharmacodynamic target (Cmax/MIC ≥ 8) predicts bactericidal activity and clinical success.
Purpose of the Study:
- To develop optimal amikacin dosing regimens for pediatric burn patients with Gram-negative sepsis.
- To achieve a pharmacodynamic target (Cmax/MIC ≥ 8) in at least 90% of patients.
- To compare amikacin pharmacokinetics between pediatric patients with and without burn injuries.
Main Methods:
- Population pharmacokinetic modeling using NONMEM 7.2.
- Analysis of 282 amikacin concentrations from 70 pediatric burn patients and 99 from 32 non-burn patients.
- Simulation of dosing regimens using MATLAB to achieve the target Cmax/MIC ratio.
Main Results:
- Amikacin pharmacokinetics were well described by a one-compartment model with first-order elimination.
- Significantly higher amikacin clearance (CL) and volume of distribution (V) were observed in burn patients.
- Simulations indicated that amikacin doses ≥25 mg/kg achieved the Cmax/MIC ≥8 target in ≥90% of patients for MIC = 8 mg/L.
Conclusions:
- Amikacin pharmacokinetics are significantly altered in pediatric patients with burn injuries.
- Increased amikacin doses (≥25 mg/kg) are necessary to improve target attainment rates.
- Further clinical studies are warranted to validate the proposed dosing regimen for burn wound sepsis.
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