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Updated: Dec 16, 2025

Quantitative Polymerase Chain Reaction-based Analyses of Murine Intestinal Microbiota After Oral Antibiotic Treatment
Published on: November 17, 2018
Impact of Long-Term Low Dose Antibiotic Prophylaxis on Gut Microbiota in Children
Yuko Akagawa1, Takahisa Kimata1, Shohei Akagawa1
1Department of Pediatrics, Kansai Medical University, Hirakata, Osaka, Japan.
Insights
Long-term low-dose antibiotic prophylaxis in children with febrile urinary tract infections did not significantly alter gut microbiota diversity. However, it may reduce the abundance of Enterobacteriales, common UTI-causing bacteria.
Area of Science:
- Microbiology
- Pediatric Medicine
- Gastroenterology
Background:
- Febrile urinary tract infections (UTIs) are common in young children.
- Antibiotic treatment can impact the gut microbiota.
- The long-term effects of antibiotic prophylaxis on pediatric gut microbiota are not fully understood.
Purpose of the Study:
- To evaluate the impact of long-term, low-dose antibiotic prophylaxis on the gut microbiota of children.
- To assess the effect of trimethoprim-sulfamethoxazole prophylaxis on gut microbiota diversity and composition in children with recurrent UTIs.
Main Methods:
- 16S ribosomal RNA gene sequencing of stool samples from 35 children under 3 years old.
- Samples collected at 5 time points: before, during, and 1-6 months after febrile UTI treatment.
- Comparison between 23 children receiving continuous antibiotic prophylaxis and 12 controls.
Main Results:
- Gut microbiota diversity decreased during acute UTI treatment but recovered within 1-2 months in both groups.
- Microbiota diversity remained stable throughout the study period in both prophylaxis and control groups (p=0.43).
- The antibiotic prophylaxis group showed a significantly lower proportion of Enterobacteriales (p=0.002).
Conclusions:
- Long-term low-dose antibiotic prophylaxis with trimethoprim-sulfamethoxazole had an insignificant effect on overall gut microbiota diversity in children.
- Prophylaxis may selectively suppress Enterobacteriales, potentially reducing the recurrence of UTIs caused by these bacteria.
Purpose:
We evaluated the effect of long-term low dose antibiotic prophylaxis on children's gut microbiota.
Materials And Methods:
We conducted 16S ribosomal RNA gene sequencing using stool samples from 35 patients younger than 3 years old (median age 5.2 months; male-to-female ratio 17:18) who underwent antibiotic treatment during the acute phase of febrile urinary tract infection. Samples were collected at 5 time points, ie before, during and at 1 to 2, 3 to 4, and 5 to 6 months after febrile urinary tract infection onset and antibiotic treatment. Continuous antibiotic prophylaxis using trimethoprim-sulfamethoxazole was initiated in 23 patients with grade III or higher vesicoureteral reflux and was not administered in 12 patients without reflux.
Results:
Within 2 weeks after initiation of treatment for febrile urinary tract infection almost all enteric bacteria belonged to the order Lactobacillales, and gut microbiota diversity decreased compared to the pretreatment level (average Shannon index 2.9 before treatment, 1.4 during treatment). The diversity recovered within 1 to 2 months after febrile urinary tract infection onset in both groups. Diversity was maintained during the study period in both groups (p=0.43). A smaller proportion of gut microbiota component belonged to the order Enterobacteriales (p=0.002) in the antibiotic prophylaxis group.
Conclusions:
Our results revealed that patients receiving continuous antibiotic prophylaxis had normal gut microbiota diversity, indicating that the effect of trimethoprim-sulfamethoxazole on gut microbiota was insignificant. Furthermore, prophylaxis with trimethoprim-sulfamethoxazole might selectively suppress the growth of bacteria belonging to the order Enterobacteriales, such as Escherichia coli and Klebsiella species, which are the main causative bacteria of febrile urinary tract infections.
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