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Updated: Feb 17, 2026

In Vitro and In Vivo Approaches to Determine Intestinal Epithelial Cell Permeability
Published on: October 19, 2018
Pyrin Inflammasome Regulates Tight Junction Integrity to Restrict Colitis and Tumorigenesis
Deepika Sharma1, Ankit Malik1, Clifford S Guy1
1Department of Immunology, St. Jude Children's Research Hospital, Memphis, Tennessee.
Background & Aims:
Inflammatory bowel diseases (IBD) increase risk for colorectal cancer. Mutations in the Mediterranean fever gene (MEFV or pyrin) are associated with hereditary autoinflammatory disease and severe IBD. Expression of MEFV, a sensor protein that the initiates assembly of the inflammasome complex, is increased in colon biopsies from patients with IBD. We investigated the role of pyrin in intestinal homeostasis in mice.
Methods:
Mefv-/- mice and C57/BL6 mice (controls) were given azoxymethane followed by multiple rounds of dextran sodium sulfate (DSS) to induce colitis and tumorigenesis. In some experiments, Mefv-/- mice were given injections of recombinant interleukin 18 (rIL18) or saline (control) during DSS administration. Colon tissues were collected at different time points during colitis development and analyzed by histology, immunohistochemistry, immunoblots, or ELISAs (to measure cytokines). Spleen and mesenteric lymph node were collected, processed, and analyzed by flow cytometry. Colon epithelial permeability was measured in mice with colitis by gavage of fluorescent dextran and quantification of serum levels.
Results:
MEFV was expressed in colons of control mice and expression increased during chronic and acute inflammation; high levels were detected in colon tumor and adjacent non-tumor tissues. Mefv-/- mice developed more severe colitis than control mice, with a greater extent of epithelial hyperplasia and a larger tumor burden. Levels of inflammatory cytokines (IL6) and chemokines were significantly higher in colons of Mefv-/- mice than control mice following colitis induction, whereas the level IL18, which depends on the inflammasome for maturation and release, was significantly lower in colons of Mefv-/- mice. Mefv-/- mice had increased epithelial permeability following administration of DSS than control mice, and loss of the tight junction proteins occludin and claudin-2 from intercellular junctions. STAT3 was activated (phosphorylated) in inflamed colon tissues from Mefv-/-, which also had increased expression of stem cell markers (OLFM4, BMI1, and MSI1) compared with colons from control mice. Administration of rIL18 to Mefv-/- mice reduced epithelial permeability, intestinal inflammation, the severity of colitis, and colon tumorigenesis.
Conclusions:
In studies with DSS-induced colitis, we found that pyrin (MEFV) is required for inflammasome activation and IL18 maturation, which promote intestinal barrier integrity and prevent colon inflammation and tumorigenesis. Strategies to increase activity of MEFV or IL18 might be developed for the treatment of IBD and prevention of colitis-associated tumorigenesis.
Insights
Pyrin (MEFV) deficiency worsens colitis and colon cancer in mice by impairing inflammasome activation and IL18 maturation. Restoring IL18 levels protected against intestinal inflammation and tumorigenesis.
Area of Science:
- Gastroenterology
- Immunology
- Oncology
Background:
- Inflammatory bowel diseases (IBD) elevate colorectal cancer risk.
- Mediterranean fever gene (MEFV) mutations are linked to autoinflammatory diseases and severe IBD.
- MEFV (pyrin) is an inflammasome sensor upregulated in IBD colons.
Purpose of the Study:
- Investigate the role of pyrin (MEFV) in maintaining intestinal homeostasis.
- Determine pyrin's function in colitis and colitis-associated tumorigenesis.
Main Methods:
- Induced colitis and tumorigenesis in Mefv-/- and control mice using azoxymethane and dextran sodium sulfate (DSS).
- Administered recombinant IL18 (rIL18) to Mefv-/- mice.
- Analyzed colon tissues for histology, protein expression, cytokines, and epithelial permeability.
Main Results:
- Mefv-/- mice exhibited more severe colitis, increased epithelial hyperplasia, and higher tumor burden.
- Pyrin deficiency led to lower IL18 levels, increased epithelial permeability, and loss of tight junction proteins.
- rIL18 administration reduced intestinal inflammation, epithelial permeability, and colon tumorigenesis in Mefv-/- mice.
Conclusions:
- Pyrin (MEFV) is crucial for inflammasome activation and IL18 maturation, maintaining intestinal barrier integrity.
- Targeting MEFV or IL18 may offer therapeutic strategies for IBD and colitis-associated cancer prevention.
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