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Updated: Feb 5, 2026

Flexible Colonoscopy in Mice to Evaluate the Severity of Colitis and Colorectal Tumors Using a Validated Endoscopic Scoring System
Published on: October 16, 2013
Enterobacteriaceae are essential for the modulation of colitis severity by fungi
Bruno Sovran1, Julien Planchais1, Sarah Jegou2,3
1Micalis Institute, INRA, AgroParisTech, Université Paris-Saclay, Domaine de Vilvert, Jouy-en-Josas, France.
Background:
Host-microbe balance maintains intestinal homeostasis and strongly influences inflammatory conditions such as inflammatory bowel diseases (IBD). Here we focused on bacteria-fungi interactions and their implications on intestinal inflammation, a poorly understood area.
Methods:
Dextran sodium sulfate (DSS)-induced colitis was assessed in mice treated with vancomycin (targeting gram-positive bacteria) or colistin (targeting Enterobacteriaceae) and supplemented with either Saccharomyces boulardii CNCM I-745 or Candida albicans. Inflammation severity as well as bacterial and fungal microbiota compositions was monitored.
Results:
While S. boulardii improved DSS-induced colitis and C. albicans worsened it in untreated settings, antibiotic treatment strongly modified DSS susceptibility and effects of fungi on colitis. Vancomycin-treated mice were fully protected from colitis, while colistin-treated mice retained colitis phenotype but were not affected anymore by administration of fungi. Antibacterial treatments not only influenced bacterial populations but also had indirect effects on fungal microbiota. Correlations between bacterial and fungal relative abundance were dramatically decreased in colistin-treated mice compared to vancomycin-treated and control mice, suggesting that colistin-sensitive bacteria are involved in interactions with fungi. Restoration of the Enterobacteriaceae population by administrating colistin-resistant Escherichia coli reestablished both beneficial effects of S. boulardii and pathogenic effects of C. albicans on colitis severity. This effect was at least partly mediated by an improved gut colonization by fungi.
Conclusions:
Fungal colonization of the gut is affected by the Enterobacteriaceae population, indirectly modifying effects of mycobiome on the host. This finding provides new insights into the role of inter-kingdom functional interactions in intestinal physiopathology and potentially in IBD.
Insights
Gut bacteria, specifically Enterobacteriaceae, influence how fungi impact intestinal inflammation. Restoring these bacteria normalized the effects of beneficial and harmful fungi in colitis models, offering new insights into inflammatory bowel diseases (IBD).
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- Host-microbe balance is crucial for intestinal homeostasis and influences inflammatory conditions like inflammatory bowel diseases (IBD).
- Interactions between bacteria and fungi in the gut, and their role in intestinal inflammation, remain poorly understood.
Purpose of the Study:
- To investigate the role of bacteria-fungi interactions in intestinal inflammation.
- To determine how specific bacterial populations (gram-positive bacteria and Enterobacteriaceae) and fungal species (Saccharomyces boulardii and Candida albicans) influence dextran sodium sulfate (DSS)-induced colitis in mice.
Main Methods:
- Dextran sodium sulfate (DSS)-induced colitis model in mice.
- Treatment with vancomycin (targeting gram-positive bacteria) or colistin (targeting Enterobacteriaceae).
- Supplementation with Saccharomyces boulardii or Candida albicans.
- Monitoring of inflammation severity, bacterial, and fungal microbiota composition.
Main Results:
- Saccharomyces boulardii improved colitis, while Candida albicans worsened it in untreated mice.
- Vancomycin fully protected mice from colitis; colistin treatment altered susceptibility and fungal effects.
- Enterobacteriaceae were implicated in interactions with fungi, as their restoration reestablished fungal effects on colitis severity.
- Antibacterial treatments indirectly affected fungal microbiota composition and colonization.
Conclusions:
- The Enterobacteriaceae population influences fungal gut colonization, thereby modulating the mycobiome's impact on host health.
- These findings highlight the significance of inter-kingdom interactions in intestinal physiopathology and offer potential therapeutic targets for IBD.
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