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Selectivity of a replication-competent adenovirus for human breast carcinoma cells expressing the MUC1 antigen
Toshikazu Kurihara, … , Imre Kovesdi, Donald W. Kufe
Toshikazu Kurihara, … , Imre Kovesdi, Donald W. Kufe
Published September 15, 2000
Citation Information: J Clin Invest. 2000;106(6):763-771. https://doi.org/10.1172/JCI9180.
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Article

Selectivity of a replication-competent adenovirus for human breast carcinoma cells expressing the MUC1 antigen

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Abstract

The DF3/MUC1 gene is aberrantly overexpressed in human breast and other carcinomas. Previous studies have demonstrated that the DF3/MUC1 promoter/enhancer confers selective expression of diverse transgenes in MUC1-positive breast cancer cells. In this study, we show that an adenoviral vector (Ad.DF3-E1) in which the DF3/MUC1 promoter drives expression of E1A selectively replicates in MUC1-positive breast cancer cells. We also show that Ad.DF3-E1 infection of human breast tumor xenografts in nude mice is associated with inhibition of tumor growth. In contrast to a replication-incompetent adenoviral vector that infects along the injection track, Ad.DF3-E1 infection was detectable throughout the tumor xenografts. To generate an Ad.DF3-E1 vector with the capacity for incorporating therapeutic products, we inserted the cytomegalovirus (CMV) promoter upstream of the TNF cDNA. Infection with Ad.DF3-E1/CMV-TNF was associated with selective replication and production of TNF in cells that express MUC1. Moreover, treatment of MUC1-positive, but not MUC1-negative, xenografts with a single injection of Ad.DF3-E1/CMV-TNF was effective in inducing stable tumor regression. These findings demonstrate that the DF3/MUC1 promoter confers competence for selective replication of Ad.DF3-E1 in MUC1-positive breast tumor cells, and that the antitumor activity of this vector is potentiated by integration of the TNF cDNA.

Authors

Toshikazu Kurihara, Douglas E. Brough, Imre Kovesdi, Donald W. Kufe

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TNF production in MCF-7 and PA-1 cells

TNF production in MCF-7 and PA-1 cells


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ISSN: 0021-9738 (print), 1558-8238 (online)

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