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Updated: Aug 8, 2026

Murine Endoscopy for In Vivo Multimodal Imaging of Carcinogenesis and Assessment of Intestinal Wound Healing and Inflammation
Published on: August 26, 2014
Quantification of mucosal leucocyte endothelial cell interaction by in vivo fluorescence microscopy in experimental
S Farkas1, H Herfarth, M Rössle
1Department of Surgery, Klinik und Poliklinik für Chirurgie, Klinikum der Universität Regensburg, Regensburg, Germany. stefan.farkas@klinik.uni-regensburg.de
Insights
This study introduces a new mouse model for intestinal inflammation, revealing increased leucocyte (white blood cell) interactions and migration in colitis. Blocking ICAM-1 significantly reduced these inflammatory cell movements.
Area of Science:
- Immunology
- Gastroenterology
- Microcirculation research
Background:
- Leucocyte recruitment is vital for intestinal inflammation.
- Understanding leucocyte-endothelial cell interactions in the colon is crucial for treating colitis.
- The role of ICAM-1 in intestinal inflammation requires further in vivo investigation.
Purpose of the Study:
- To establish and utilize a novel in vivo model of experimental colitis.
- To quantify leucocyte-endothelial cell interactions and extravasation in the inflamed colon.
- To investigate the pathophysiological role of ICAM-1 in intestinal microcirculation.
Main Methods:
- Developed a dextran sodium sulphate (DSS)-induced acute and chronic colitis model in mice.
- Employed in vivo microscopy in colonic submucosal venules to observe leucocyte dynamics.
- Blocked ICAM-1 expression using an anti-ICAM-1 antibody or gliotoxin to suppress NF-kappaB activation.
Main Results:
- Demonstrated significant increases in leucocyte adhesiveness (51-fold in postcapillary venules, 30-fold in collecting venules) and extravasation (6.5-fold) by day 2 of DSS-induced acute colitis.
- Observed parallel increases in histological damage and myeloperoxidase activity.
- Showed that blocking ICAM-1 significantly down-regulated leucocyte sticking and extravasation (>70% reduction).
Conclusions:
- The novel DSS-induced colitis model effectively quantifies leucocyte-endothelial interactions and extravasation in vivo.
- ICAM-1 plays a significant role in leucocyte recruitment during intestinal inflammation.
- This model system is valuable for assessing adhesion molecule function and evaluating therapeutic strategies for colitis.
Abstract:
Leucocyte recruitment to sites of intestinal inflammation is a crucial, multi-step process that leads ultimately to the accumulation of cells in the inflamed tissue. We established a new in vivo model system of experimental colitis to quantify leucocyte-endothelial cell interaction and leucocyte extravasation in the inflamed mucosa of the colon. Furthermore, we investigated the pathophysiological role of ICAM-1 in the intestinal microcirculation in vivo. Using the model of dextran sodium sulphate (DSS)-induced acute and chronic colitis in mice, in vivo microscopy was performed in the colonic submucosal postcapillary venules and the submucosal collecting venules in normal or inflamed murine colonic segments. ICAM-1 expression was blocked by an anti-ICAM-1 monoclonal antibody or by suppressing NF-kappaB activation by gliotoxin. Significant increases in leucocyte adhesiveness (51-fold in postcapillary venules, 30-fold in collecting venules, P < 0.01) and extravasation (6.5-fold) could be demonstrated as early as day 2 of DSS-application in acute colitis (P < 0.01). This was paralleled by increases in both the histological damage scores and myeloperoxidase activities. In chronic dextran sodium sulphate-induced colitis significant increases in leucocyte-endothelium interactions and leucocyte extravasation were observed. Blocking ICAM-1 expression with a monoclonal antibody or gliotoxin, leucocyte sticking and extravasation were significantly down-regulated in vivo compared to controls (> 70%; P < 0.01). This new model system offers the possibility to specifically assess the role of adhesion molecules in the colonic mucosa in vivo as well as to investigate and quantify the effectiveness of experimental therapeutic approaches in acute or chronic intestinal inflammation.
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