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Updated: Sep 3, 2025

Quantitative Polymerase Chain Reaction-based Analyses of Murine Intestinal Microbiota After Oral Antibiotic Treatment
Published on: November 17, 2018
Gut Resistome after Antibiotics among Children with Uncomplicated Severe Acute Malnutrition: A Randomized Controlled
Catherine E Oldenburg1,2,3, Armin Hinterwirth1, Millogo Ourohiré4
1Francis I Proctor Foundation, University of California, San Francisco, California.
Insights
Azithromycin and amoxicillin showed no difference in antibiotic resistance in children with severe acute malnutrition. The gut resistome remained unchanged 8 weeks after treatment, suggesting potential normalization of resistance patterns.
Area of Science:
- Pediatrics
- Infectious Diseases
- Microbiology
Background:
- Severe acute malnutrition (SAM) management often includes broad-spectrum antibiotics like amoxicillin.
- Alternative antibiotics are explored for SAM to mitigate beta-lactam resistance.
- Understanding antibiotic impact on the gut resistome in SAM is crucial.
Purpose of the Study:
- To compare the gut resistome after single-dose azithromycin versus a 7-day course of amoxicillin in children with uncomplicated SAM.
- To assess the selection for antibiotic resistance determinants at the class level.
Main Methods:
- A 1:1 randomized controlled trial was conducted in Burkina Faso.
- Children aged 6-59 months with uncomplicated SAM received either azithromycin or amoxicillin.
- Rectal swabs analyzed via DNA-Seq at baseline and 8 weeks post-treatment to compare the resistome.
Main Results:
- No significant difference in the distribution of genetic antibiotic resistance determinants was observed between azithromycin and amoxicillin groups at 8 weeks.
- Prevalence of macrolide resistance determinants was 65% in both azithromycin and amoxicillin groups (OR 1.00).
- Prevalence of beta-lactam resistance determinants was 82% with azithromycin and 83% with amoxicillin (OR 0.94).
Conclusions:
- Single-dose azithromycin and a 7-day course of amoxicillin did not result in differential selection of gut antibiotic resistance determinants at 8 weeks post-treatment.
- Despite common resistance determinants, the gut resistome appears to normalize by 8 weeks, irrespective of the antibiotic used.
- Further research may be needed to investigate earlier effects on resistance selection.
Abstract:
A broad-spectrum antibiotic, typically amoxicillin, is included in many country guidelines as part of the management of uncomplicated severe acute malnutrition (SAM) in children without overt clinical symptoms of infection. Alternative antibiotics may be beneficial for children with SAM without increasing selection for beta-lactam resistance. We conducted a 1:1 randomized controlled trial of single dose azithromycin versus a 7-day course of amoxicillin for SAM. Children 6-59 months of age with uncomplicated SAM (mid-upper arm circumference < 11.5 cm and/or weight-for-height Z-score < -3) were enrolled in Boromo District, Burkina Faso, from June through October 2020. Rectal swabs were collected at baseline and 8 weeks after treatment and processed using DNA-Seq. We compared the resistome at the class level in children randomized to azithromycin compared with amoxicillin. We found no evidence of a difference in the distribution of genetic antibiotic resistance determinants to any antibiotic class 8 weeks after treatment. There was no difference in genetic macrolide resistance determinants (65% azithromycin, 65% placebo, odds ratio, OR, 1.00, 95% confidence interval, CI, 0.43-2.34) or beta-lactam resistance determinants (82% azithromycin, 83% amoxicillin, OR 0.94, 95% CI, 0.33-2.68) at 8 weeks. Although presence of genetic antibiotic resistance determinants to macrolides and beta-lactams was common, we found no evidence of a difference in the gut resistome 8 weeks after treatment. If there are earlier effects of antibiotics on selection for genetic antibiotic resistance determinants, the resistome may normalize by 8 weeks.
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