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Updated: May 30, 2025

Phage-Mediated Genetic Manipulation of the Lyme Disease Spirochete Borrelia burgdorferi
Published on: September 28, 2022
Dose Evaluation and Optimization of Amoxicillin in Children Treated for Lyme Disease
Anne Ravix1, Verena Gotta2,3, Marc Pfister2,3
1Center for Research and Innovation in Clinical Pharmaceutical Sciences, Lausanne University Hospital and University of Lausanne, Lausanne, Switzerland.
Insights
Amoxicillin dosing for pediatric Lyme disease can be simplified. A twice-daily regimen (25 mg/kg/dose) offers comparable effectiveness to the standard three-times-daily schedule for certain Borrelia burgdorferi minimum inhibitory concentrations.
Area of Science:
- Pharmacology and Infectious Diseases
- Pediatric Therapeutics
- Antimicrobial Dosing Strategies
Background:
- Amoxicillin is a first-line treatment for early Lyme disease in children.
- Current dosing is 50 mg/kg/day divided into three doses (q8h).
- Optimizing dosing schedules can improve treatment adherence and outcomes.
Purpose of the Study:
- To evaluate if a twice-daily (q12h) amoxicillin regimen provides comparable drug exposure to the standard q8h schedule in pediatric patients.
- To determine the probability of target attainment (PTA) for different dosing regimens against varying Borrelia burgdorferi minimum inhibitory concentrations (MICs).
Main Methods:
- A pharmacokinetic model for pediatric populations (1 month to 18 years) was utilized.
- Simulations involved 15,000 virtual pediatric patients with amoxicillin doses of 16.67 mg/kg q8h and 25 mg/kg q12h.
- Therapeutic target was defined as % fT > MIC, with acceptable PTA >50% for MICs ranging from 0.06 to 4 mg/L.
Main Results:
- The 50 mg/kg/day divided q12h regimen showed similar drug exposure to the q8h schedule for MICs < 2 mg/L (PTA >50%).
- A higher dose (30 mg/kg/dose q12h) was needed to achieve PTA at a MIC of 2 mg/L.
- PTA was not met for a MIC of 4 mg/L, even with adjusted q12h dosing.
Conclusions:
- Twice-daily amoxicillin (25 mg/kg/dose) is therapeutically comparable to thrice-daily dosing for pediatric Lyme disease when MICs are between 0.06 and 1 mg/L.
- This simplified dosing schedule may enhance treatment adherence and implementation in children.
- Dosing adjustments may be necessary for higher MICs or specific patient populations.
Abstract:
Amoxicillin is commonly used to treat erythema migrans in the first stage of Lyme disease in children, with a recommended dose of 50 mg/kg/day, administered three times a day (q8h). This model-based simulation study aimed to determine whether splitting the same daily dose into two administrations (q12h) would provide comparable drug exposure. A pharmacokinetic model suitable for a pediatric population (age: 1 month to 18 years, weight: 4-80 kg) was selected through a literature review. Simulations were performed with 15,000 virtual patients receiving 16.67 mg/kg/dose q8h, 25 mg/kg/dose q12h, or other q12h dosing variations. The target therapeutic level was defined by the percentage of time that the unbound drug concentration remained above the minimum inhibitory concentration (% fT > MIC) specific to Borrelia burgdorferi, with MICs of 0.06, 0.25, 1, 2, and 4 mg/L, requiring at least 40% and 50% of time for effective treatment. Probability of target attainment (PTA) was considered acceptable if it exceeded 50%, allowing for comparison of dosing schedules. Results indicated that the 50 mg/kg/day divided q12h regimen provided similar drug exposure to the q8h regimen for MICs below 2 mg/L (PTAs >50%). For a MIC of 2 mg/L, PTA was achieved with a higher dose of 30 mg/kg/dose q12h. However, for a MIC of 4 mg/L, the PTA criterion was not met. These findings suggest that a twice-daily dosing of 25 mg/kg/dose provides comparable bactericidal activity to the thrice-daily regimen for MICs between 0.06 and 1 mg/L. This simplified regimen may improve adherence and treatment implementation in children.
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