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Murine Colitis Modeling using Dextran Sulfate Sodium (DSS)
Published on: January 19, 2010
Biochemical and histological changes in the small intestine of mice with dextran sulfate sodium colitis
Roger Yazbeck1, Gordon S Howarth, Ross N Butler
1School of Biological Sciences, Flinders University, Adelaide, South Australia, Australia. roger.yazbek@unisa.edu.au
Abstract:
The dextran sulfate sodium (DSS) model of colitis has been commonly utilized in mice to assess novel treatments for ulcerative colitis. Recent studies have indicated that morphological and biochemical changes extend to the small intestine (SI). This study aimed to characterize histological and biochemical changes in the SI during DSS colitis in wild-type (WT) and DPIV knock-out (DPIV(-/-) ) mice treated with saline or the DPIV inhibitors, Ile-Pyrr-(2-CN)*TFA or Ile-Thia. Groups (n = 10) of DPIV(-/-) and WT mice were orally gavaged twice daily with saline, Ile-Pyrr-(2-CN)*TFA or Ile-Thia. Mice consumed 2% DSS in drinking water for 6 days to induce colitis. Small intestinal tissue was assessed for histological changes, sucrase, and DPIV activity and neutrophil infiltration. Jejunal villus length was increased in all groups after 6 days DSS consumption (P < 0.05). Jejunal DPIV activity was significantly lower by 35% in WT mice receiving Ile-Pyrr-(2-CN)*TFA compared to saline controls. Jejunal MPO activity was significantly increased in the WT + saline and DPIV(-/-) + saline groups following DSS consumption, compared to WT and DPIV(-/-) controls at day 0. Increased sucrase activity was apparent at day 0 in DPIV(-/-) compared to WT mice (P < 0.05). We conclude that DSS-induced damage is not restricted to the colon, but also extends to the small intestine. Furthermore, reduced or absent DPIV activity resulted in functional adaptations to brush border enzyme activity. DPIV inhibitors are now a recognized therapy for type-II diabetes. The work presented here highlights the need to delineate any long-term effects of DPIV inhibitors on SI function, to further validate their safety and tolerability.
Insights
Dextran sulfate sodium (DSS) causes small intestine damage in mice, affecting villus length and enzyme activity. Dipeptidyl peptidase IV (DPIV) inhibitors may alter these small intestine changes, warranting further safety studies.
Area of Science:
- Gastroenterology
- Pharmacology
- Immunology
Background:
- The dextran sulfate sodium (DSS) model is widely used to study ulcerative colitis treatments.
- Emerging evidence suggests DSS-induced colitis impacts the small intestine (SI) beyond the colon.
- Dipeptidyl peptidase IV (DPIV) inhibitors are used for type-II diabetes, but their SI effects are less understood.
Purpose of the Study:
- To investigate histological and biochemical changes in the SI during DSS-induced colitis.
- To compare these changes in wild-type (WT) and DPIV knock-out (DPIV(-/-)) mice.
- To assess the impact of DPIV inhibitors (Ile-Pyrr-(2-CN)*TFA, Ile-Thia) on DSS colitis in the SI.
Main Methods:
- Induction of colitis in WT and DPIV(-/-) mice using 2% DSS in drinking water for 6 days.
- Administration of saline, Ile-Pyrr-(2-CN)*TFA, or Ile-Thia via oral gavage.
- Assessment of SI tissue for histology, sucrase activity, DPIV activity, and neutrophil infiltration (MPO activity).
Main Results:
- DSS consumption increased jejunal villus length in all groups.
- WT mice treated with Ile-Pyrr-(2-CN)*TFA showed a 35% reduction in jejunal DPIV activity.
- Neutrophil infiltration (MPO activity) increased in WT and DPIV(-/-) mice receiving saline post-DSS.
- DPIV(-/-) mice exhibited higher sucrase activity compared to WT mice at baseline.
Conclusions:
- DSS-induced damage extends to the small intestine, not just the colon.
- Reduced or absent DPIV activity leads to functional adaptations in small intestinal brush border enzymes.
- Further research is needed to evaluate the long-term effects and safety of DPIV inhibitors on SI function.
