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The Citrobacter rodentium Mouse Model: Studying Pathogen and Host Contributions to Infectious Colitis
Published on: February 19, 2013
Long-term selenium deficiency increases the pathogenicity of a Citrobacter rodentium infection in mice
Allen D Smith1, Lumei Cheung, Sebastian Botero
1Agricultural Research Service, Beltsville Human Nutrition Research Center, Diet, Genomics, and Immunology Laboratory, United States Department of Agriculture, 10300 Baltimore Ave., B307C, Rm. 228, BARC-East, Beltsville, MD 20705, USA. allen.smith@ars.usda.gov
Abstract:
Citrobacter rodentium is a mouse pathogen that causes infectious colitis and shares characteristics with human enteropathogenic (EPEC) and enterohemorrhagic (EHEC) Escherichia coli, including the ability to cause attaching and effacing lesions in the colon and serves as a useful model to study the pathogenicity of these bacteria. In this study, mice were fed a selenium-deficient diet for 5 or 20 weeks and then infected with C. rodentium. Colonization of the colon by C. rodentium was similar in mice fed adequate or selenium-deficient diets, but total bacterial colonization of the spleen was elevated in mice fed selenium-deficient diet for 20 weeks. Infection-induced changes to the colon included inflammatory cell infiltration, gross changes in crypt architecture, and ulceration and denuding of the epithelial layer that were greatest in mice fed a selenium-deficient diet for 20 weeks. Expression of pro-inflammatory genes was significantly higher 12-days post-infection in mice fed the selenium-deficient diet for 20 weeks compared to mice fed a selenium-adequate diet or selenium-deficient diet for 5 weeks. Diarrhea was prevalent in mice fed the selenium-deficient diet for 20 weeks but not 5 weeks, and this was associated with decreased expression of solute carrier family 26a3 and carbonic anhydrase IV, genes involved in ion transport. These results indicated that selenium played an important role in resistance to the pathological effects of a C. rodentium infection, and therefore, selenium status may be important in the expression of human disease caused by common food-borne bacteria.
Insights
Selenium deficiency exacerbates infectious colitis in mice infected with Citrobacter rodentium, increasing inflammation and diarrhea. This highlights selenium
Area of Science:
- Microbiology
- Immunology
- Nutritional Science
Background:
- Citrobacter rodentium is a mouse pathogen modeling human enteropathogenic (EPEC) and enterohemorrhagic (EHEC) Escherichia coli.
- These bacteria cause attaching and effacing lesions in the colon, making C. rodentium a valuable model for studying pathogenicity.
Purpose of the Study:
- To investigate the role of selenium deficiency in the host's response to Citrobacter rodentium infection.
- To determine how prolonged selenium deficiency impacts the severity of infectious colitis and associated pathological changes.
Main Methods:
- Mice were fed either adequate or selenium-deficient diets for 5 or 20 weeks.
- Mice were subsequently infected with Citrobacter rodentium.
- Colonization levels, colonic pathology, gene expression (pro-inflammatory and ion transport genes), and clinical signs (diarrhea) were assessed.
Main Results:
- Selenium deficiency for 20 weeks, but not 5 weeks, significantly increased bacterial colonization in the spleen and exacerbated colonic inflammation, epithelial damage, and ulceration.
- Pro-inflammatory gene expression was significantly higher in mice fed a selenium-deficient diet for 20 weeks post-infection.
- Prolonged selenium deficiency led to diarrhea, associated with decreased expression of ion transport genes SLC26A3 and CA4.
Conclusions:
- Selenium plays a critical role in the host's resistance to the pathological effects of Citrobacter rodentium infection.
- Selenium status may influence the severity of human diseases caused by common food-borne bacteria like EPEC and EHEC.

