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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Oncolytic virotherapy with modified adenoviruses and novel therapeutic targets
Gunnel Halldén1, Giuseppe Portella
1Queen Mary University of London, Barts Cancer Institute, Centre for Molecular Oncology, London, UK.
Introduction:
Numerous oncolytic viral mutants derived from a variety of strains have antitumor efficacy with limited or no toxicity to normal tissue. While all modes of administration were determined to be safe in patients with solid cancers refractory to current standard of care, this therapeutic approach requires further improvements to achieve definite efficacy.
Areas Covered:
We review the most promising clinical developments with several oncolytic viruses. The focus is on preclinical and clinical findings with replication-selective adenoviral mutants including ONYX-015, H101 and Ad5ΔCR mutants that, to date, are the most studied oncolytic viruses. Cellular pathways reported to play a role in virus-induced cell killing are reviewed as potential targets for the development of more effective combinatorial therapies.
Expert Opinion:
The most promising clinical outcomes for metastatic cancers have been reported for oncolytic vaccinia and herpes virus mutants expressing the cytokine GMCSF. However, highly efficacious and selective adenoviral mutants have been developed that interact synergistically with cytotoxic drugs in model systems. We anticipate that by delineating the cellular targets for synergistic cancer cell killing in response to adenoviral mutants and drugs such as apoptosis and autophagy signaling, greatly improved anticancer therapies will result in the near future.
Insights
Oncolytic viruses show promise for cancer treatment, with ongoing research focusing on improving efficacy. Adenoviral mutants, in particular, demonstrate synergistic effects with cytotoxic drugs, paving the way for enhanced cancer therapies.
Area of Science:
- Oncolytic virotherapy
- Cancer genetics
- Molecular oncology
Background:
- Oncolytic viral mutants exhibit antitumor efficacy with minimal toxicity to normal tissues.
- Current oncolytic virus administration is safe for solid cancers but requires efficacy improvements.
Purpose of the Study:
- Review promising clinical developments in oncolytic virotherapy.
- Focus on replication-selective adenoviral mutants and their therapeutic potential.
- Identify cellular pathways for enhanced combinatorial cancer therapies.
Main Methods:
- Review of preclinical and clinical findings on oncolytic viruses.
- Analysis of replication-selective adenoviral mutants (e.g., ONYX-015, H101, Ad5ΔCR).
- Examination of cellular pathways involved in virus-induced cell killing.
Main Results:
- Oncolytic vaccinia and herpes virus mutants expressing GMCSF show promise for metastatic cancers.
- Efficacious and selective adenoviral mutants exhibit synergy with cytotoxic drugs in preclinical models.
- Understanding cellular targets like apoptosis and autophagy can enhance oncolytic virotherapy.
Conclusions:
- Adenoviral mutants hold potential for synergistic cancer cell killing.
- Further research into apoptosis and autophagy signaling can lead to improved anticancer therapies.
- Oncolytic virotherapy is an evolving field with significant therapeutic promise.
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