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Updated: Feb 4, 2026

4D Multimodality Imaging of Citrobacter rodentium Infections in Mice
Published on: August 13, 2013
Colonic levels of vasoactive intestinal peptide decrease during infection and exogenous VIP protects epithelial
Arpan K Maiti1, Sinan Sharba1, Nazanin Navabi1
1Department of Medical Biochemistry and Cell Biology, Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.
Abstract:
Citrobacter rodentium infection is a model for infection with attaching and effacing pathogens, such as enteropathogenic Escherichia coli. The vasoactive intestinal peptide (VIP) has emerged as an anti-inflammatory agent, documented to inhibit Th1 immune responses and successfully treat animal models of inflammation. VIP is also a mucus secretagogue. Here, we found that colonic levels of VIP decrease during murine C. rodentium infection with a similar time dependency as measurements reflecting mitochondrial function and epithelial integrity. The decrease in VIP appears mainly driven by changes in the cytokine environment, as no changes in VIP levels were detected in infected mice lacking interferon gamma (IFNγ). VIP supplementation alleviated the reduction of activity and levels of mitochondrial respiratory complexes I and IV, mitochondrial phosphorylation capacity, transmembrane potential and ATP generation caused by IFNγ, TNFα and C. rodentium infection, in an in vitro mucosal surface. Similarly, VIP treatment regimens that included the day 5-10 post infection period alleviated decreases in enzyme complexes I and IV, phosphorylation capacity, mitochondrial transmembrane potential and ATP generation as well as increased apoptosis levels during murine infection with C. rodentium. However, VIP treatment failed to alleviate colitis, although there was a tendency to decreased pathogen density in contact with the epithelium and in the spleen. Both in vivo and in vitro, NO generation increased during C. rodentium infection, which was alleviated by VIP. Thus, therapeutic VIP administration to restore the decreased levels during infection had beneficial effects on epithelial cells and their mitochondria, but not on the overall infection outcome.
Insights
Vasoactive intestinal peptide (VIP) levels decrease during Citrobacter rodentium infection, impacting mitochondrial function. VIP supplementation improved epithelial cell mitochondria but did not resolve the overall infection or colitis.
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- Citrobacter rodentium infection models attaching and effacing pathogens like E. coli.
- Vasoactive intestinal peptide (VIP) exhibits anti-inflammatory properties and stimulates mucus secretion.
Purpose of the Study:
- To investigate the role of VIP in Citrobacter rodentium infection.
- To determine the effect of VIP supplementation on epithelial integrity and mitochondrial function during infection.
Main Methods:
- Murine model of Citrobacter rodentium infection.
- In vitro mucosal infection model.
- Measurement of VIP levels, mitochondrial function (respiratory complexes, phosphorylation, ATP generation), apoptosis, and nitric oxide (NO) generation.
- Assessment of pathogen load and colitis severity.
Main Results:
- Colonic VIP levels decreased during C. rodentium infection, correlating with impaired mitochondrial function and epithelial integrity.
- IFNγ influenced VIP reduction; VIP supplementation protected mitochondria from infection-induced damage in vitro and in vivo.
- VIP treatment improved mitochondrial function and reduced apoptosis in infected mice but did not resolve colitis or significantly reduce pathogen burden.
Conclusions:
- Therapeutic VIP administration benefits epithelial cell mitochondria during C. rodentium infection.
- VIP's anti-inflammatory and mitochondrial protective effects do not translate to improved overall infection outcome or colitis resolution.
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