American Association for Cancer Research
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Supplementary Figures 1-4, Tables 1-2 from Dual IGF-I/II–Neutralizing Antibody MEDI-573 Potently Inhibits IGF Signaling and Tumor Growth

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posted on 2023-03-30, 20:51 authored by Jin Gao, Jon W. Chesebrough, Susan A. Cartlidge, Sally-Ann Ricketts, Leonard Incognito, Margaret Veldman-Jones, David C. Blakey, Mohammad Tabrizi, Bahija Jallal, Pamela A. Trail, Steven Coats, Klaus Bosslet, Yong S. Chang
Supplementary Figures 1-4, Tables 1-2 from Dual IGF-I/II–Neutralizing Antibody MEDI-573 Potently Inhibits IGF Signaling and Tumor Growth

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ARTICLE ABSTRACT

Insulin-like growth factors (IGF), IGF-I and IGF-II, are small polypeptides involved in regulating cell proliferation, survival, differentiation, and transformation. IGF activities are mediated through binding and activation of IGF-1R or insulin receptor isoform A (IR-A). The role of the IGF-1R pathway in promoting tumor growth and survival is well documented. Overexpression of IGF-II and IR-A is reported in multiple types of cancer and is proposed as a potential mechanism for cancer cells to develop resistance to IGF-1R–targeting therapy. MEDI-573 is a fully human antibody that neutralizes both IGF-I and IGF-II and inhibits IGF signaling through both the IGF-1R and IR-A pathways. Here, we show that MEDI-573 blocks the binding of IGF-I and IGF-II to IGF-1R or IR-A, leading to the inhibition of IGF-induced signaling pathways and cell proliferation. MEDI-573 significantly inhibited the in vivo growth of IGF-I– or IGF-II–driven tumors. Pharmacodynamic analysis demonstrated inhibition of IGF-1R phosphorylation in tumors in mice dosed with MEDI-573, indicating that the antitumor activity is mediated via inhibition of IGF-1R signaling pathways. Finally, MEDI-573 significantly decreased 18F-fluorodeoxyglucose (18F-FDG) uptake in IGF-driven tumor models, highlighting the potential utility of 18F-FDG-PET as a noninvasive pharmacodynamic readout for evaluating the use of MEDI-573 in the clinic. Taken together, these results demonstrate that the inhibition of IGF-I and IGF-II ligands by MEDI-573 results in potent antitumor activity and offers an effective approach to selectively target both the IGF-1R and IR-A signaling pathways. Cancer Res; 71(3); 1029–40. ©2011 AACR.