Azithromycin in severe malaria bacterial co-infection in African children (TABS-PKPD): a phase II randomised

Roisin Connon1, Peter Olupot-Olupot2,3, Arthur M A Pistorius4

  • 1MRC Clinical Trials Unit at University College London, Aviation House, 125 Kingsway, London, WC28 6NH, UK.

BMC Medicine
|November 7, 2024
PubMed

Insights

This study explored optimal azithromycin dosing for severe malaria in African children to prevent bacterial co-infections. No clear association was found between azithromycin exposure and reduced C-reactive protein (CRP) levels.

Area of Science:

  • Tropical Medicine
  • Infectious Diseases
  • Pharmacology

Background:

  • African children with severe malaria face a high risk of non-typhoidal Salmonella co-infection.
  • Current guidelines recommend broad-spectrum antibiotics, but optimal drug class and dosage remain undetermined.
  • This study aimed to determine the best oral dispersible azithromycin dose and identify risk factors for bacterial co-infection.

Purpose of the Study:

  • To evaluate the optimal dose of oral dispersible azithromycin in Ugandan children with severe malaria.
  • To investigate if clinical criteria and point-of-care biomarkers can identify children at highest risk of bacterial co-infection.
  • To explore pharmacokinetic-pharmacodynamic relationships between azithromycin exposure and sepsis markers.

Main Methods:

  • A Phase I/II trial randomized 105 children with severe malaria to receive 5-day courses of azithromycin at 10, 15, or 20 mg/kg.
  • Pharmacokinetic data were collected via sparse sampling, and associations with C-reactive protein (CRP) reduction and microbiological cure were analyzed.
  • A control group of 50 children with non-severe malaria was enrolled to assess risk stratification methods.

Main Results:

  • CRP levels decreased across all azithromycin dose arms by 72 hours.
  • A statistically significant smaller CRP reduction was observed in the 15 mg/kg azithromycin arm compared to the 10 mg/kg arm (p=0.02).
  • Due to limited pathogen identification, methods for targeting antibiotics were not identified.

Conclusions:

  • No association was found between systemic azithromycin exposure and CRP reduction in children with severe malaria.
  • Further research is required to develop effective strategies for identifying children most vulnerable to bacterial co-infections.
  • The optimal azithromycin dose for severe malaria co-infection in this population requires further investigation.
Abstract

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