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Published on: September 22, 2019
Mycobacterium avium subspecies paratuberculosis triggers intestinal pathophysiologic changes in beige/scid mice
G K Mutwiri1, U Kosecka, M Benjamin
1Department of Pathobiology, University of Guelph, Ontario, Canada.
Abstract:
We investigated whether infection of beige/scid mice with Mycobacterium avium subspecies paratuberculosis can induce intestinal pathophysiologic changes. Six-week-old beige/scid mice were inoculated intraperitoneally with M. paratuberculosis, then were killed 32 weeks after inoculation when the small intestine was evaluated for physiologic and morphologic abnormalities. All infected mice developed clinical disease. The lamina propria of the intestine from infected mice was mildly infiltrated with mononuclear cells containing acid-fast bacteria, and had significantly increased villus width. In vitro physiologic studies in Ussing chambers indicated that M. paratuberculosis infection caused significant abnormalities in intestinal transport parameters. Baseline short circuit current and potential difference were abnormally high in tissues from infected, compared with control mice, indicative of increased ion secretion. Baseline conductance was significantly decreased in infected mice, suggesting that intestinal tissue from infected mice was less permeable to ions. The change in short circuit current following transmural electrical and glucose stimulation was significantly reduced in intestines from infected mice, suggesting that inflamed intestine had neural and/or epithelial cell damage. We conclude that infection of beige/scid mice with M. paratuberculosis triggers significant intestinal pathophysiologic changes consistent with chronic inflammation. These functional abnormalities may contribute to the pathogenesis of the wasting syndrome seen in bovids with paratuberculosis. This animal model provides evidence that T cell-independent mechanisms are sufficient to cause mucosal pathophysiologic changes and inflammation in response to a specific pathogen, and may be of relevance to inflammatory bowel disease in humans.
Insights
Infection with Mycobacterium avium subspecies paratuberculosis in mice caused intestinal inflammation and functional changes. This finding may explain wasting disease in cattle and offers insights into human inflammatory bowel disease.
Area of Science:
- Veterinary Medicine
- Immunology
- Gastroenterology
Background:
- Mycobacterium avium subspecies paratuberculosis (MAP) causes Johne's disease in ruminants.
- The pathogenesis of MAP infection, particularly intestinal changes, is not fully understood.
Purpose of the Study:
- To investigate the intestinal pathophysiologic changes induced by MAP infection in beige/scid mice.
- To establish an animal model for studying MAP-induced intestinal inflammation.
Main Methods:
- Beige/scid mice were inoculated with MAP and evaluated 32 weeks post-infection.
- Small intestines were assessed for morphologic and physiologic abnormalities using Ussing chambers.
Main Results:
- Infected mice exhibited clinical disease, mild intestinal mononuclear cell infiltration, and increased villus width.
- MAP infection led to abnormal intestinal ion transport, including increased secretion and decreased permeability.
- Reduced responses to electrical and glucose stimulation indicated neural and/or epithelial cell damage.
Conclusions:
- MAP infection in beige/scid mice induces significant intestinal pathophysiologic changes consistent with chronic inflammation.
- These functional abnormalities may contribute to the wasting syndrome in paratuberculosis.
- The study demonstrates T cell-independent mechanisms in MAP-induced mucosal inflammation, relevant to inflammatory bowel disease.
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