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Systemic IFN-β gene therapy results in long-term survival in mice with established colorectal liver metastases
Hiroomi Tada, David J. Maron, Eugene A. Choi, James Barsoum, Hanqin Lei, Qing Xie, Wenbiao Liu, Lee Ellis, A. David Moscioni, John Tazelaar, Stephen Fawell, Xiao Qin, Kathleen J. Propert, Alan Davis, Douglas L. Fraker, James M. Wilson, Francis R. Spitz
Hiroomi Tada, David J. Maron, Eugene A. Choi, James Barsoum, Hanqin Lei, Qing Xie, Wenbiao Liu, Lee Ellis, A. David Moscioni, John Tazelaar, Stephen Fawell, Xiao Qin, Kathleen J. Propert, Alan Davis, Douglas L. Fraker, James M. Wilson, Francis R. Spitz
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Article

Systemic IFN-β gene therapy results in long-term survival in mice with established colorectal liver metastases

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Abstract

Most patients succumbing to colorectal cancer fail with liver-predominant metastases. To make a clinical impact in this disease, a systemic or whole-liver therapy may be required, whereas most cancer gene therapy approaches are limited in their ability to treat beyond local disease. As a preclinical model for cancer gene therapy, recombinant adenovirus containing the human IFN-β (hIFN-β) cDNA was delivered systemically in nude mouse xenograft models of human colorectal cancer liver metastases. The vector targeted hepatocytes that produced high levels of hIFN-β in the liver, resulting in a profound apoptotic response in the tumors and significant tumor regression. hIFN-β gene therapy not only resulted in improved survival and long-term cure in a micrometastatic model, but provided similar benefits in a clinically relevant gross disease model. A similar recombinant adenovirus containing the murine IFN-β (mIFN-β) cDNA also resulted in a therapeutic response and improved survival in syngeneic mouse models of colorectal cancer liver metastases. Depletion studies demonstrate a contribution of natural killer cells to this therapeutic response. The toxicity of an adenoviral vector expressing murine IFN-β in a syngeneic model is also presented. These encouraging results warrant further investigation of the use of cancer gene therapy for targeting metastatic disease.

Authors

Hiroomi Tada, David J. Maron, Eugene A. Choi, James Barsoum, Hanqin Lei, Qing Xie, Wenbiao Liu, Lee Ellis, A. David Moscioni, John Tazelaar, Stephen Fawell, Xiao Qin, Kathleen J. Propert, Alan Davis, Douglas L. Fraker, James M. Wilson, Francis R. Spitz

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Figure 4

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IFN-β–induced apoptosis is associated with induction of the Jak-Stat pat...
IFN-β–induced apoptosis is associated with induction of the Jak-Stat pathway and the proapoptotic mediators Bak and TRAIL. (a) Upper left panel: Cell counts. Lower left panel: Cell death detection ELISA. Right panel: In situ TUNEL staining. (b) Western blot and Northern analyses of downstream mediators of IFN-β/receptor binding. Protein immunoblot analysis of signal transducers and activators of transcription (Stat) proteins, Stat1, Stat2, and ISGF3γ, in whole cell extracts from colorectal cell line KM12L4 48 hours after treatment with PBS, Adβ-gal, or AdhIFN-β (10 pfu). RNA analysis of Stat1, Stat2, ISGF3γ, and IRF1 in treated KM12L4 cells 48 hours after treatment. Equal loading of mRNA is demonstrated on Northern blot by GADPH. (c) Protein immunoblot analysis of Waf1, bcl-2, bcl-X, bak, and bax in whole cell extracts (50 mg) from colorectal cell line KM12L4 48 hours after treatment. Messenger RNA analysis of colorectal cell line KM12L4 48 hours after treatment for the bcl-2 family apoptosis-related genes using the multiprobe RNase Protection Assay (RPA) system. Gel band intensities were quantified with the UN-Scan-It program (Silk Scientific Corp., Orem, Utah, USA) and presented as ratio of AdhIFN-β/PBS band intensity after normalization with the housekeeping gene L32. (d) Messenger RNA analysis of the colorectal cell line KM12L4 48 hours after treatment for the death receptor family apoptosis-related genes using the multiprobe RPA system. Gel band intensities were quantified with the UN-Scan-It program and presented as ratio of AdhIFN-β/PBS band intensity after normalization with the housekeeping gene L32.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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