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Published on: June 29, 2016
Expression of functional ICAM-1 and VCAM-1 adhesion molecules by an immortalized epithelial cell clone derived from
X C Li1, A M Jevnikar, D R Grant
1Department of Surgery, University of Western Ontario, Canada.
Insights
Small intestinal epithelial cells express adhesion molecules ICAM-1 and VCAM-1, crucial for regulating inflammatory cell adhesion in gut inflammation. This study utilized a novel cell line to investigate these interactions.
Area of Science:
- Gastroenterology
- Immunology
- Cell Biology
Background:
- The role of small bowel epithelial cells in gut inflammation is unclear due to in vitro culture challenges.
- A novel cloned epithelial cell line (IEC-4.1) from mouse small intestine was developed.
Purpose of the Study:
- To investigate the expression of adhesion molecules ICAM-1 and VCAM-1 in IEC-4.1 cells.
- To elucidate the molecular mechanisms of macrophage adhesion to these epithelial cells.
Main Methods:
- Northern blot analysis for mRNA expression.
- Immunofluorescence staining and FACS analysis for cell surface protein expression.
- Macrophage adhesion assays with blocking antibodies.
Main Results:
- IEC-4.1 cells constitutively expressed low levels of ICAM-1 and VCAM-1 mRNA.
- LPS and TNF-alpha stimulation significantly upregulated ICAM-1 and VCAM-1 gene and protein expression.
- Upregulated adhesion molecules correlated with increased macrophage binding, mediated by LFA-1/ICAM-1 and VLA-4/VCAM-1 pathways.
Conclusions:
- Small bowel-derived epithelial cells can express functional adhesion molecules during mucosal inflammation.
- IEC-4.1 cells provide a valuable model for studying epithelial cell-inflammatory cell interactions in the gut.
Abstract:
The role of small bowel-derived epithelial cells in regulating the accumulation of inflammatory cells within the inflamed gut epithelium is poorly understood because of the difficulties in culturing the epithelial cells in vitro. We have recently developed a cloned epithelial cell line (IEC-4.1) derived from the small intestine of BALB/c mice. In the present study, we examined whether IEC-4.1 cells could express adhesion molecules ICAM-1 and VCAM-1 and the molecular basis of macrophage adhesion to the epithelial cells. Northern blot analysis demonstrated that IEC-4.1 cells constitutively expressed ICAM-1 and VCAM-1 mRNA at low levels. Stimulation with LPS (12 microg/ml) or TNF-alpha (2.5 ng/ml) markedly upregulated ICAM-1 and VCAM-1 gene expression in IEC-4.1 cells. ICAM-1 mRNA started to increase 2 hr after LPS stimulation, peaked at 4 hr, and then decreased rapidly to the basal level at 8 hr. VCAM-1 mRNA had the similar pattern of upregulation but the increased VCAM-1 mRNA sustained over a longer period of time and did not return to the basal level until 24 hr after the stimulation. IEC-4.1 cells expressed very low basal levels of ICAM-1 and VCAM-1 on the cell surface as demonstrated by immunofluorescence staining and FACS analysis. Stimulation of IEC-4.1 cells with LPS or TNF-alpha markedly increased the surface expression of both ICAM-1 and VCAM-1, which correlated with the increased binding of macrophages to the stimulated IEC-4.1 cells. Adherence of macrophages to the IEC-4.1 cells was mediated by both LFA-1/ICAM-1 and VLA-4/VCAM-1 since blocking both adhesion pathways inhibited macrophage adhesion by about 90%. These findings suggest that small bowel-derived epithelial cells may be capable of expressing a defined set of functional adhesion molecules during mucosal inflammation.
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