Introduction
Inflammatory Bowel Diseases (IBD) are chronic immune-mediated disorders of the gastrointestinal tract. Fibrosis is a frequent manifestation in IBD driven by inflammatory cytokines. During fibrosis, extracellular matrix proteins accumulate in the tissue, causing the disruption of the epithelial barrier and stenosis, ultimately causing malabsorption and intestinal motility issues. This can eventually lead to further serious complications, strictures, fistulas, or ileus. No drugs are available targeting fibrosis, in these cases, only surgical intervention can be used. A defined primary in vitro cell culture model is not available for intestinal fibrosis modeling.
Aims & Methods
Therefore, we aimed to establish and characterize human primary fibroblast cell culture from intestinal biopsies of control and IBD patients.
Human primary fibroblast cell cultures were generated from colonic biopsy of patients with IBD (N=4) and control (N=4). All downstream analyses were applied in passage number 3. For the phenotype observation, immunofluorescent staining was used. Targeted proteins were COL1A1, TGF-ß1, PAI-1, α-SMA, and PHH3. Proteome Profiler Human Cytokine Array Kit was used for the secreted cytokine pattern observation. For the gene expression analysis, RNA was isolated, and the qRT-PCR technique was utilized for the following target genes: COL1A1, ACTA2, TGF-ß1, FN1, PAI-1, H3C4. Scratch assay was used to examine wound closure, we monitored the closing for 48 hours taking photographs throughout. We evaluated the collected data and performed statistical analysis.
Results
We can successfully generate and maintain human colon primary fibroblast cell cultures from colonic biopsies of healthy and Crohn’s disease (CD) origins. Morphological differences were observed between control and diseased patient samples. In the protein examinations, the fluorescent intensity of fibrotic markers (COL1A1, TGF-ß1, PAI-1) and the mitosis marker PHH3 were significantly higher in the CD samples, indicating that the cells maintained fibrotic phenotype and the diseased fibroblasts had a higher proliferation rate. The myofibroblast marker, α-SMA, didn’t show a significant difference. In the cytokine pattern analysis, 22 cytokines showed a twofold increase or decreased by half between the two groups. HGF and DPPIV showed higher quantities in the CD-originated fibroblast. These cytokines are connected to the induction of fibrosis. However, the ANG, BDNF, PTX-3, VEGF, and VCAM-1 were higher in the control samples. Interestingly, no significant differences were noted between the two groups in the targeted genes examined by qRT-PCR measurements. We observed the closure of the artificial wound was faster and more effective in the Crohn’s disease culture compared to the control.
Conclusion
In conclusion, we can generate primary human intestinal fibroblast cell cultures and maintain them to passage number 3, approximately a month long. Fibrotic markers, secreted cytokines and morphological differences distinguish the diseased cultures from the healthy subjects; therefore, it could be useful for in vitro fibrosis modeling in the future. On the other hand, the gene expression analysis doesn’t discriminate between the two groups at passage number 3. To continue with our work, we will observe the fibrotic properties in earlier passage numbers.