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Updated: Feb 9, 2026

Modeling Colitis-Associated Cancer with Azoxymethane AOM and Dextran Sulfate Sodium DSS
Published on: September 11, 2012
Dro1/Ccdc80 inactivation promotes AOM/DSS-induced colorectal carcinogenesis and aggravates colitis by DSS in mice
Jessica I Grill1,2, Jens Neumann3, Andrea Ofner1
1Department of Medicine II, University of Munich, Munich, Germany.
Abstract:
Colorectal carcinogenesis is a progressive multistep process involving the sequential accumulation of genetic alterations in tumor suppressor genes and oncogenes. Downregulated by oncogenes 1 (Dro1/Ccdc80) has been shown to be a potent tumor suppressor of colorectal carcinogenesis in the genetic ApcMin/+ mouse model. In ApcMin/+ mice, loss of DRO1 strongly increases colonic tumor multiplicity and leads to the regular formation of adenocarcinoma in the colon. To investigate DRO1's role in chemically induced as well as inflammation-associated colorectal carcinogenesis, the effect of Dro1 inactivation was studied in mice subjected to the carcinogen azoxymethane (AOM) and upon combined treatment with AOM and the proinflammatory agent dextran sodium sulfate (DSS), respectively. Loss of DRO1 increases multiplicity of preneoplastic aberrant crypt foci and colonic tumors upon administration of AOM. Combined treatment with AOM and DSS leads to increased colonic tumor number and promotes formation of adenocarcinoma in the colon. Moreover, Dro1 inactivation aggravates histological signs of acute and chronic DSS-induced colitis, strongly enlarges the size of ulcerative lesions in the intestinal lining, and exacerbates clinical signs and morbidity by DSS. Our results demonstrate DRO1 to be a strong tumor suppressor in the chemically induced colon carcinogenic mouse model. Additionally, we demonstrate DRO1 to inhibit colitis-associated colon cancer formation and uncover a novel putative role for DRO1 in inflammatory bowel disease.
Insights
The tumor suppressor Downregulated by oncogenes 1 (Dro1) inhibits colorectal cancer development. Loss of Dro1 accelerates tumor formation in chemically induced and inflammation-associated colon cancer models.
Area of Science:
- Oncology
- Gastroenterology
- Molecular Biology
Background:
- Colorectal cancer (CRC) develops through accumulated genetic alterations.
- Downregulated by oncogenes 1 (Dro1/Ccdc80) acts as a tumor suppressor in the ApcMin/+ mouse model of CRC.
- Loss of DRO1 increases tumor multiplicity and adenocarcinoma formation in ApcMin/+ mice.
Purpose of the Study:
- To investigate the role of DRO1 in chemically induced and inflammation-associated colorectal carcinogenesis.
- To determine the effect of Dro1 inactivation in mouse models of colon cancer.
- To explore DRO1's function in inflammatory bowel disease (IBD).
Main Methods:
- Utilized azoxymethane (AOM) to induce chemical carcinogenesis in mice.
- Administered AOM combined with dextran sodium sulfate (DSS) to model inflammation-associated CRC.
- Assessed tumor multiplicity, histological changes, and clinical signs of colitis.
Main Results:
- Dro1 inactivation increased aberrant crypt foci and colon tumors in AOM-treated mice.
- Combined AOM/DSS treatment led to higher tumor numbers and adenocarcinoma in Dro1-deficient mice.
- Dro1 deficiency exacerbated DSS-induced colitis, ulcerative lesions, and clinical morbidity.
Conclusions:
- DRO1 is a potent tumor suppressor in chemically induced colon cancer.
- DRO1 inhibits colitis-associated colon cancer.
- DRO1 may play a role in inflammatory bowel disease pathogenesis.
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