Related Experiment Video
Updated: Jul 10, 2026

Reduced Itraconazole Concentration and Durations Are Successful in Treating Batrachochytrium dendrobatidis Infection in Amphibians
Published on: March 14, 2014
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.
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.
Background:
African children with severe malaria are at increased risk of non-typhoidal salmonellae co-infection. Broad-spectrum antibiotics are recommended by guidelines but the optimal class and dose have not been established. We investigated the optimal dose of oral dispersible azithromycin and whether simple clinical criteria and point-of-care biomarkers could target antibiotics to those at greatest risk of bacterial co-infection.
Methods:
We conducted a phase I/II trial in Ugandan children with severe malaria comparing a 5-day course of azithromycin: 10, 15 and 20 mg/kg of azithromycin (prescribed by weight bands) spanning the dose-range effective for other salmonellae infection. We generated relevant pharmacokinetic (PK) data by sparse sampling during dosing intervals and investigated associations between azithromycin exposure and potential mechanisms (PK-pharmacodynamics) using change in C-reactive protein (CRP), a putative marker of sepsis, at 72 h (continuous) and microbiological cure (7-day) (binary), alone and as a composite with 7-day and 90-day survival. To assess whether clinical or biomarkers could identify those at risk of sepsis, a non-severe malaria control was concurrently enrolled.
Results:
Between January 2020 and January 2022, 105 cases were randomised azithromycin doses: 35 to 10 mg/kg, 35 to 15 mg/kg and 35 to 20 mg/kg. Fifty non-severe malaria controls were concurrently enrolled. CRP reduced in all arms by 72 h with a mean reduction of 65.8 mg/L (95% CI 57.1, 74.5) in the 10 mg/kg arm, 64.8 mg/L (95% CI 56.5, 73.1; p = 0.87) in the 20 mg/kg arm and a smaller reduction 51.2 mg/L (95% CI 42.9, 59.5; p = 0.02) in the 15 mg/kg arm. Microbiological cure alone outcome was not analysed as only one pathogen was found among cases. Three events contributed to the composite outcome of 7-day survival and microbiological cure, with no events in the 15 mg/kg arm. The odds ratio comparing 20 vs 10 mg/kg was 0.50 (95% CI 0.04, 5.79); p = 0.58. Due to the low number of pathogens identified, it was not possible to identify better methods for targeting antibiotics including both the cases and controls.
Conclusions:
We found no evidence for an association between systemic azithromycin exposure and reduction in CRP. Further work is needed to better identify children at highest risk from bacterial co-infection.
Trial Registration:
ISRCTN49726849 (registered on 27th October 2017).
More Related Videos
Related Concept Videos
Pharmacokinetics in Pediatric Patients: Drug Excretion
Rocky Mountain Spotted Fever
Malaria
Antiprotozoal Agents

