Artificial Intelligence and Amikacin Exposures Predictive of Outcomes in Multidrug-Resistant Tuberculosis Patients

Chawangwa Modongo1, Jotam G Pasipanodya2, Beki T Magazi3

  • 1Division of Infectious Diseases, University of Pennsylvania, Philadelphia, Pennsylvania, USA Botswana-University of Pennsylvania Partnership, Gaborone, Botswana.

Insights

Amikacin dosing for multidrug-resistant tuberculosis (MDR-TB) is critical for treatment success. Achieving adequate amikacin peak concentrations (Cmax) and area under the curve (AUC0-24) significantly improves sputum culture conversion rates in MDR-TB patients.

Area of Science:

  • Pharmacology
  • Infectious Diseases
  • Clinical Medicine

Background:

  • Aminoglycosides, including amikacin, are essential for treating multidrug-resistant tuberculosis (MDR-TB).
  • Optimizing amikacin dosing is crucial for improving treatment outcomes in MDR-TB patients.

Purpose of the Study:

  • To determine the relationship between amikacin exposure (Cmax, AUC0-24) and sputum culture conversion in MDR-TB patients.
  • To identify predictors of amikacin treatment failure in MDR-TB.

Main Methods:

  • Measured amikacin concentrations (Cmax, AUC0-24, trough) in 28 MDR-TB patients in Botswana.
  • Utilized classification and regression tree (CART) analyses to identify predictors of treatment failure.
  • Monitored patients monthly for sputum culture conversion.

Main Results:

  • Only 39% of patients achieved sputum culture conversion.
  • Low amikacin Cmax (<67 mg/L) and AUC0-24 (<568.30 mg·h/L) were primary predictors of failure.
  • Patients with adequate amikacin exposure (Cmax ≥67 mg/L and AUC0-24 ≥568.30 mg·h/L) had higher conversion rates.

Conclusions:

  • Amikacin exposure thresholds (Cmax and AUC0-24) are critical for successful MDR-TB treatment.
  • Current dosing regimens may lead to sub-therapeutic amikacin exposure in some MDR-TB patients.
  • These findings align with previous hollow-fiber system model studies, suggesting similar exposure patterns.

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