Related Experiment Video
Updated: Aug 22, 2026

The Citrobacter rodentium Mouse Model: Studying Pathogen and Host Contributions to Infectious Colitis
Published on: February 19, 2013
Bacterial overgrowth in the cystic fibrosis transmembrane conductance regulator null mouse small intestine
Oxana Norkina1, Tim G Burnett, Robert C De Lisle
1Anatomy and Cell Biology, University of Kansas School of Medicine, Kansas City, Kansas 66160, USA. rdelisle@kumc.edu
Abstract:
We recently reported the inflammation of the cystic fibrosis (CF) mouse small intestine, and we hypothesized bacterial overgrowth as a possible cause. Quantitative PCR of bacterial 16S genomic DNA in the CF mouse small intestine revealed an increase of greater than 40-fold compared to controls. Sequencing of 16S PCR products and Gram staining showed that the majority of bacteria in the CF mouse intestine were gram negative. Bacteria were observed to colonize the mucus that accumulates in the intestinal lumen of mice with CF. Impaired Paneth cell defenses were suggested by observation of partially dispersed Paneth granules in the mucus plugs of CF mouse intestinal crypts, and this mucus was strongly immunoreactive for Paneth cell bactericidal products. The role of bacterial overgrowth in intestinal inflammation in CF was tested by treating mice with oral antibiotics (ciprofloxacin and metronidazole) for 3 weeks, which reduced bacterial load in the CF mouse small intestine over 400-fold. Antibiotic treatment decreased the expression of the inflammation-related genes mast cell protease 2, leucine-rich alpha2 glycoprotein/leucine-rich high endothelial venule glycoprotein, suppressor of cytokine signaling 3, hematopoietic cell transcript 1, and resistin-like molecule beta/found in inflammatory zone 2, all of which were no longer expressed at levels significantly different from control levels. The reduction of intestinal bacteria also significantly improved the growth of CF mice but had no effect on the growth of wild-type mice. These data suggest that bacterial overgrowth in the CF mouse small intestine has a role in inflammation and contributes to the failure to thrive in this mouse model of CF.
Insights
Bacterial overgrowth in cystic fibrosis (CF) mouse intestines causes inflammation and poor growth. Antibiotic treatment reduced bacteria, decreasing inflammation and improving CF mouse growth.
Area of Science:
- Gastroenterology
- Microbiology
- Genetics
Background:
- Cystic Fibrosis (CF) is associated with intestinal inflammation.
- Bacterial overgrowth is a potential cause of this inflammation.
Purpose of the Study:
- To investigate the role of bacterial overgrowth in CF mouse small intestine inflammation.
- To determine if reducing bacterial load impacts CF mouse growth and inflammation.
Main Methods:
- Quantitative PCR and 16S sequencing to assess bacterial load and type.
- Gram staining and Paneth cell granule analysis for bacterial colonization and host defense.
- Antibiotic treatment (ciprofloxacin, metronidazole) to reduce bacterial load.
- Gene expression analysis of inflammation-related markers.
- Monitoring mouse growth rates.
Main Results:
- CF mouse small intestine showed a >40-fold increase in bacteria, predominantly gram-negative.
- Bacteria colonized mucus, and Paneth cell defenses appeared impaired.
- Antibiotic treatment reduced bacterial load by >400-fold.
- Inflammation-related gene expression significantly decreased post-antibiotic treatment.
- CF mice treated with antibiotics showed improved growth, unlike wild-type mice.
Conclusions:
- Bacterial overgrowth in the CF mouse small intestine contributes to intestinal inflammation.
- Reducing bacterial load via antibiotics alleviates inflammation and improves growth in this CF model.
- These findings highlight the gut microbiome's role in CF pathogenesis and 'failure to thrive'.
More Related Videos
07:04Forskolin-induced Swelling in Intestinal Organoids: An In Vitro Assay for Assessing Drug Response in Cystic Fibrosis Patients
Published on: February 11, 2017
08:00Generation of Human Nasal Epithelial Cell Spheroids for Individualized Cystic Fibrosis Transmembrane Conductance Regulator Study
Published on: April 11, 2018