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Clinical Cancer Research 14, 2253-2262, April 15, 2008. doi: 10.1158/1078-0432.CCR-07-4926
© 2008 American Association for Cancer Research

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Human Cancer Biology

Epidermal Growth Factor Receptor Controls Flat Dysplastic Aberrant Crypt Foci Development and Colon Cancer Progression in the Rat Azoxymethane Model

Urszula Dougherty1, Amikar Sehdev1, Sonia Cerda1, Reba Mustafi1, Nathaniel Little1, Weihua Yuan1, Sujatha Jagadeeswaran1, Anusara Chumsangsri1, Jorge Delgado1, Maria Tretiakova3, Loren Joseph3, John Hart3, Ezra E.W. Cohen1, Lata Aluri1, Alessandro Fichera2 and Marc Bissonnette1

Authors' Affiliations: Departments of 1 Medicine, 2 Surgery, and 3 Pathology, University of Chicago, Chicago, Illinois

Requests for reprints: Marc Bissonnette, Department of Medicine, MC 4076, University of Chicago Hospitals and Clinics, 5841 South Maryland Avenue, Chicago, IL 60637. Phone: 773-702-8597; Fax: 773-702-2182; E-mail: mbissonn{at}medicine.bsd.uchicago.edu.

Purpose: Colonic carcinogenesis deranges growth-regulating epidermal growth factor receptors (EGFR). We previously showed that EGFR signals were up-regulated in human aberrant crypt foci (ACF), putative colon cancer precursors. The azoxymethane model of colon cancer recapitulates many aspects of human colonic tumors. Recent studies indicate that flat dysplastic ACF with increased β-catenin are tumor precursors in this model. We asked, therefore, if EGFR signals are required for flat dysplastic ACF development and cancer progression.

Experimental Design: Rats received azoxymethane or saline, and standard chow or chow supplemented with gefitinib, an EGFR inhibitor, for 44 weeks. EGFR signals were quantified in normal colon, flat ACF, and tumors by computerized analysis of immunostains and Western blots. K-ras mutations were assessed by PCR and mRNA for egfr ligands by quantitative real-time PCR.

Results: EGFR inhibition with gefitinib decreased the incidence of flat dysplastic ACF from 66% to 36% and tumors from 71% to 22% (P < 0.05). This inhibitor also reduced the overexpressions of cyclin D1 and Cox-2 in flat ACF. Furthermore, in flat ACF, EGFR blockade decreased the up-regulation of c-Jun, FosB, phosphorylated active signal transducers and activators of transcription 3, and CCAAT/enhancer binding protein-β, potential regulators of cyclin D1 and Cox-2. In colonic tumors, EGFR blockade significantly decreased angiogenesis, proliferation, and progression while also increasing apoptosis (P < 0.05). Gefitinib also inhibited the activations of extracellular signal–regulated kinase, Src, and AKT pathways in tumors.

Conclusions: We have shown for the first time that EGFR promotes the development of flat dysplastic ACF and the progression of malignant colonic tumors. Furthermore, we have mechanistically identified several transcription factors and their targets as EGFR effectors in colonic carcinogenesis.




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Cancer Epidemiology Biomarkers & Prevention Molecular Cancer Therapeutics
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Copyright © 2008 by the American Association for Cancer Research.