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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Novel therapeutic strategies in human malignancy: combining immunotherapy and oncolytic virotherapy
Padma Sampath1, Steve H Thorne1
1Department of Surgery, University of Pittsburgh Cancer Institute, University of Pittsburgh, Pittsburgh, PA, USA.
Abstract:
Results from randomized clinical trials over the last several years have finally begun to demonstrate the potential of oncolytic viral therapies to treat a variety of cancers. One reason for these successes has been the realization that this platform is most effective when considered primarily as an immunotherapy. Cancer immunotherapy has also made dramatic strides recently with antibodies capable of blocking immune checkpoint inhibitors and adoptive T-cell therapies, notably CAR T-cells, leading a panel of novel and highly clinically effective therapies. It is clear therefore that an understanding of how and when these complementary approaches can most effectively be combined offers the real hope of moving beyond simply treating the disease and toward starting to talk about curative therapies. In this review we discuss approaches to combining these therapeutic platforms, both through engineering the viral vectors to more beneficially interact with the host immune response during therapy, as well as through the direct combinations of different therapeutics. This primarily, but not exclusively focuses on strains of oncolytic vaccinia virus. Some of the results reported to date, primarily in pre-clinical models but also in early clinical trials, are dramatic and hold great promise for the future development of similar therapies and their translation into cancer therapies.
Insights
Oncolytic viruses show promise as cancer immunotherapies. Combining them with other treatments like checkpoint inhibitors and CAR T-cells may lead to curative cancer therapies.
Area of Science:
- Oncology
- Immunology
- Virology
Background:
- Oncolytic viral therapies are emerging as effective cancer treatments, particularly when viewed as immunotherapies.
- Cancer immunotherapy has advanced significantly with checkpoint inhibitors and CAR T-cell therapies.
Purpose of the Study:
- To review strategies for combining oncolytic viruses with other immunotherapies.
- To explore engineering viral vectors for improved immune interaction and direct therapeutic combinations.
Main Methods:
- Focus on oncolytic vaccinia virus strains.
- Discussion of pre-clinical models and early clinical trial results.
- Review of engineered viral vectors and direct therapeutic combinations.
Main Results:
- Combining oncolytic viruses with other immunotherapies shows significant promise.
- Engineering viral vectors can enhance host immune response during therapy.
- Early clinical trials and pre-clinical models demonstrate dramatic results.
Conclusions:
- Combining oncolytic viruses with immunotherapies offers hope for curative cancer treatment.
- Further development and translation of these combined therapies are warranted.
- This approach holds great promise for future cancer treatment strategies.
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