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Published on: August 5, 2010
Intestinal microbiome as a risk factor for urinary tract infections in children
Niko Paalanne1,2, Aleksi Husso3, Jarmo Salo4,5
1Department of Pediatrics and Adolescence, Oulu University Hospital, Oulu, Finland. niko.paalanne@oulu.fi.
Insights
The gut microbiome composition differs between children with urinary tract infections (UTIs) and healthy children. Specific bacterial genera, like Enterobacter, were more prevalent in children with UTIs, suggesting a link between gut health and UTI risk.
Area of Science:
- Microbiology
- Pediatrics
- Gastroenterology
Background:
- Urinary tract infections (UTIs) are common in children, with pathogens often originating from the gut.
- The intestinal microbiome's role in modulating UTI susceptibility is not fully understood.
Purpose of the Study:
- To investigate the association between the intestinal microbiome and the risk of febrile urinary tract infections (UTIs) in children.
- To compare the gut microbial composition of children with and without UTIs.
Main Methods:
- A prospective case-control study involving 37 children with febrile UTI and 69 healthy controls.
- Sequencing of the bacterial 16S rRNA gene to analyze the intestinal microbiome.
- Quantitative PCR for Escherichia coli and measurement of fecal lactoferrin and iron.
Main Results:
- No significant differences in microbiome composition at the phylum level.
- Genus-level differences observed: Enterobacter more abundant in UTI patients, Peptostreptococcaceae more abundant in healthy children.
- Increased relative abundance of Escherichia coli in UTI patients (1.9%) compared to controls (0.5%).
Conclusions:
- Significant differences in intestinal microbiome composition at the family and genus levels exist between children with and without UTIs.
- These findings suggest a potential link between the gut environment and UTI risk in pediatric populations.
Abstract:
As urinary tract infection (UTI) pathogens originate from the gut, we hypothesized that the gut environment reflected by intestinal microbiome influences the risk of UTI. Our prospective case-control study compared the intestinal microbiomes of 37 children with a febrile UTI with those of 69 healthy children. We sequenced the regions of the bacterial 16S rRNA gene and used the LefSe algorithm to calculate the size of the linear discriminant analysis (LDA) effect. We measured fecal lactoferrin and iron concentrations and quantitative PCR for Escherichia coli. At the phylum level, there were no significant differences. At the genus level, Enterobacter was more abundant in UTI patients with an LDA score > 3 (log 10), while Peptostreptococcaceae were more abundant in healthy subjects with an LDA score > 3 (log 10). In total, 20 OTUs with significantly different abundances were observed. Previous use of antimicrobials did not associate with intestinal microbiome. The relative abundance of E. coli was 1.9% in UTI patients and 0.5% in controls (95% CI of the difference-0.8 to 3.6%). The mean concentration of E.coli in quantitative PCR was 0.14 ng/μl in the patients and 0.08 ng/μl in the controls (95% CI of the difference-0.04 to 0.16). Fecal iron and lactoferrin concentrations were similar between the groups. At the family and genus level, we noted several differences in the intestinal microbiome between children with UTI and healthy children, which may imply that the gut environment is linked with the risk of UTI in children.
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