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Updated: Apr 6, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Defining Effective Combinations of Immune Checkpoint Blockade and Oncolytic Virotherapy
Juan J Rojas1, Padma Sampath1, Weizhou Hou1
1Department of Surgery, University of Pittsburgh Cancer Institute, University of Pittsburgh, Pittsburgh, Pennsylvania.
Purpose:
Recent data from randomized clinical trials with oncolytic viral therapies and with cancer immunotherapies have finally recapitulated the promise these platforms demonstrated in preclinical models. Perhaps the greatest advance with oncolytic virotherapy has been the appreciation of the importance of activation of the immune response in therapeutic activity. Meanwhile, the understanding that blockade of immune checkpoints (with antibodies that block the binding of PD1 to PDL1 or CTLA4 to B7-2) is critical for an effective antitumor immune response has revitalized the field of immunotherapy. The combination of immune activation using an oncolytic virus and blockade of immune checkpoints is therefore a logical next step.
Experimental Design:
Here, we explore such combinations and demonstrate their potential to produce enhanced responses in mouse tumor models. Different combinations and regimens were explored in immunocompetent mouse models of renal and colorectal cancer. Bioluminescence imaging and immune assays were used to determine the mechanisms mediating synergistic or antagonistic combinations.
Results:
Interaction between immune checkpoint inhibitors and oncolytic virotherapy was found to be complex, with correct selection of viral strain, antibody, and timing of the combination being critical for synergistic effects. Indeed, some combinations produced antagonistic effects and loss of therapeutic activity. A period of oncolytic viral replication and directed targeting of the immune response against the tumor were required for the most beneficial effects, with CD8(+) and NK, but not CD4(+) cells mediating the effects.
Conclusions:
These considerations will be critical in the design of the inevitable clinical translation of these combination approaches. Clin Cancer Res; 21(24); 5543-51. ©2015 AACR.See related commentary by Slaney and Darcy, p. 5417.
Insights
Combining oncolytic viruses with immune checkpoint inhibitors shows promise for cancer treatment. Optimal results depend on careful selection of viral strain, antibody, and timing for synergistic immune response.
Area of Science:
- Oncology
- Immunology
- Virology
Background:
- Oncolytic viral therapies and cancer immunotherapies show promise in preclinical models.
- Immune response activation is crucial for oncolytic virotherapy efficacy.
- Immune checkpoint blockade (PD1/PDL1, CTLA4/B7-2) is vital for effective antitumor responses.
Purpose of the Study:
- To explore the combination of oncolytic viruses and immune checkpoint inhibitors.
- To demonstrate enhanced therapeutic potential in preclinical cancer models.
Main Methods:
- Utilized immunocompetent mouse models of renal and colorectal cancer.
- Investigated various combinations and treatment regimens.
- Employed bioluminescence imaging and immune assays to analyze mechanisms.
Main Results:
- Combination effects were complex, requiring specific viral strains, antibodies, and timing for synergy.
- Antagonistic effects and loss of therapeutic activity were observed with suboptimal combinations.
- Optimal outcomes required oncolytic viral replication and immune targeting, mediated by CD8(+) and NK cells.
Conclusions:
- Careful consideration of viral strain, antibody, and timing is critical for clinical translation.
- Optimizing these combinations is essential for successful therapeutic outcomes.
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