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Updated: Mar 15, 2026

Induction of Murine Intestinal Inflammation by Adoptive Transfer of Effector CD4+CD45RBhigh T Cells into Immunodeficient Mice
Published on: April 21, 2015
Protective Role for TWEAK/Fn14 in Regulating Acute Intestinal Inflammation and Colitis-Associated Tumorigenesis
Luca Di Martino1,2, Maneesh Dave1,2, Paola Menghini1,1
1Case Digestive Health Research Institute, Case Western University School of Medicine, Cleveland, Ohio.
Abstract:
Inflammatory bowel disease causes chronic, relapsing intestinal inflammation that can lead to the development of colorectal cancer. Members of the TNF superfamily are key regulators of intestinal inflammation. In particular, TNF-like weak inducer of apoptosis (TWEAK) and its receptor, Fn14, are involved in normal and pathologic intestinal tissue remodeling. In this study, we show that the TWEAK/Fn14 signaling complex plays a protective role during the acute stage of intestinal inflammation and contributes to the prevention of colitis-associated cancer during chronic inflammation through its proapoptotic effects. Colitis was induced in Fn14-/- and Fn14+/+ wild-type littermates by administering 3% dextran sodium sulfate (DSS) for 7 days followed by 2-week recovery; azoxymethane (AOM) administration followed by two cycles of DSS/recovery was used to induce tumors. Reciprocal bone marrow chimeric mice were generated to compare hematopoietic and nonhematopoietic-specific effector tissues. Fn14-/- mice had enhanced susceptibility to colitis compared with Fn14+/+ controls as assessed by endoscopic and histologic inflammatory scores, daily weight loss, and mortality rates during recovery after DSS administration. Bone marrow transfer experiments showed that both hematopoietic and nonhematopoietic components are involved in protection against colitis. Tumor lesions were found in the colons of most Fn14-/- mice, but not Fn14+/+ controls. AOM/DSS administration enhanced susceptibility to tumorigenesis in Fn14-/- mice. Overall, these findings show that Fn14 plays a protective role during the acute stages of intestinal inflammation, and its absence promotes the development of colitis-associated cancer. Cancer Res; 76(22); 6533-42. ©2016 AACR.
Insights
The TWEAK/Fn14 signaling pathway protects against acute intestinal inflammation and colitis-associated cancer. Its absence increases susceptibility to colitis and promotes tumor development, highlighting its protective role in inflammatory bowel disease.
Area of Science:
- Immunology and Inflammation
- Gastroenterology
- Cancer Biology
Background:
- Inflammatory bowel disease (IBD) involves chronic intestinal inflammation, increasing colorectal cancer risk.
- Tumor Necrosis Factor (TNF) superfamily members regulate intestinal inflammation.
- TNF-like weak inducer of apoptosis (TWEAK) and its receptor Fn14 are implicated in intestinal tissue remodeling.
Purpose of the Study:
- To investigate the role of the TWEAK/Fn14 signaling complex in acute intestinal inflammation and colitis-associated cancer.
- To determine the protective mechanisms of TWEAK/Fn14 signaling in the context of inflammatory bowel disease.
Main Methods:
- Induction of colitis using dextran sodium sulfate (DSS) in Fn14 knockout (Fn14-/-) and wild-type (Fn14+/+) mice.
- Induction of colitis-associated cancer using azoxymethane (AOM) followed by DSS cycles.
- Generation of reciprocal bone marrow chimeric mice to assess hematopoietic and nonhematopoietic contributions.
Main Results:
- Fn14-/- mice exhibited increased susceptibility to colitis, evidenced by higher inflammatory scores, weight loss, and mortality.
- Both hematopoietic and nonhematopoietic components were found to be crucial for protection against colitis.
- Fn14-/- mice showed a significantly higher incidence of tumor lesions in the colon compared to controls.
Conclusions:
- The TWEAK/Fn14 signaling pathway plays a critical protective role during the acute phase of intestinal inflammation.
- Loss of Fn14 function exacerbates colitis and promotes the development of colitis-associated cancer.
- Targeting the TWEAK/Fn14 pathway may offer therapeutic strategies for inflammatory bowel disease and associated cancers.
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