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Published on: November 24, 2014
Comparison of molecular strategies for breast cancer virotherapy using oncolytic adenovirus
M Bazan-Peregrino1, R C Carlisle, R Hernandez-Alcoceba
1Department of Clinical Pharmacology, University of Oxford, Old Road Campus Research Building, Oxford, OX3 7DQ, United Kingdom.
Abstract:
Oncolytic viruses are regulated by the tumor phenotype to replicate and lyse cancer cells selectively. To identify optimal strategies for breast cancer we compared five adenoviruses with distinct regulatory mechanisms: Ad-dl922-947 (targets G1-S checkpoint); Ad-Onyx-015 and Ad-Onyx-017 (target p53/mRNA export); Ad-vKH1 (targets Wnt pathway), and AdEHE2F (targets estrogen receptor/G1-S checkpoint/hypoxic signaling). The quantity of virus required to kill 50% of breast cancer cells after 6 days (EC(50), plaque-forming units per cell) was measured. The most potent virus was Ad-dl922-947 (EC(50), 0.01-5.4 in SkBr3, MDA-231, MDA-468, MCF7, and ZR75.1 cells), followed by wild-type (Ad-WT; EC(50), 0.3-5.5) and AdEHE2F (EC(50), 1.4-3.9). Ad-vKH1 (EC(50), 7.2-72.1), Ad-Onyx-017 (EC(50), 8.4-167), and Ad-Onyx-015 (EC(50), 17.7-377) showed less activity. Most viruses showed limited cytotoxicity in normal human cells, including breast epithelium MCF10A (EC(50), >722) and fibroblasts (EC(50), >192) and only moderate cytotoxicity in normal microvascular endothelial cells (HMVECs; EC(50), 42.8-149), except Ad-dl922-947, which was active in HMVECs (EC(50), 1.6). After injection into MDA-231 xenografts, Ad-WT, AdEHE2F, and Ad-dl922-947 showed replication, assessed by hexon staining and quantitative polymerase chain reaction measurement of viral DNA, and significantly inhibited tumor growth, leading to extended survival. After intravenous injection Ad-dl922-947 showed DNA replication (233% of the injected dose was measured in liver after 3 days) whereas AdEHE2F did not. Overall, AdEHE2F showed the best combination of low toxicity in normal cells and high activity in breast cancer in vitro and in vivo, suggesting that molecular targeting using estrogen response elements, hypoxia response elements, and a dysregulated G1-S checkpoint is a promising strategy for virotherapy of breast cancer.
Insights
Researchers compared five adenoviruses for breast cancer virotherapy. AdEHE2F demonstrated the best balance of low toxicity in normal cells and high efficacy against breast cancer cells, indicating a promising therapeutic strategy.
Area of Science:
- Oncolytic virotherapy
- Cancer biology
- Molecular targeting
Background:
- Oncolytic viruses selectively replicate in and lyse cancer cells, regulated by tumor phenotype.
- Identifying optimal adenoviruses for breast cancer treatment requires comparing distinct regulatory mechanisms.
Purpose of the Study:
- To compare the efficacy and safety of five adenoviruses with different regulatory mechanisms for breast cancer treatment.
- To identify the most promising adenovirus strategy for breast cancer virotherapy.
Main Methods:
- Five adenoviruses (Ad-dl922-947, Ad-Onyx-015, Ad-Onyx-017, Ad-vKH1, AdEHE2F) were tested against breast cancer cell lines and normal human cells.
- Cytotoxicity was measured by EC50 values (plaque-forming units per cell).
- In vivo efficacy was assessed in MDA-231 xenografts, evaluating viral replication, tumor growth inhibition, and survival.
Main Results:
- Ad-dl922-947 was the most potent in vitro, followed by Ad-WT and AdEHE2F.
- Most viruses showed limited toxicity in normal cells, with Ad-dl922-947 showing activity in normal microvascular endothelial cells.
- In vivo, Ad-WT, AdEHE2F, and Ad-dl922-947 inhibited tumor growth and extended survival; AdEHE2F demonstrated the best overall profile of efficacy and safety.
Conclusions:
- AdEHE2F, targeting estrogen receptor, G1-S checkpoint, and hypoxic signaling, offers a promising strategy for breast cancer virotherapy.
- Molecular targeting strategies combining multiple pathways enhance the potential of oncolytic adenoviruses for breast cancer treatment.
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