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Updated: Nov 18, 2025

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Targeted Delivery of IL-12 Adjuvants Immunotherapy by Oncolytic Viruses
Andrea Vannini1, Valerio Leoni1, Gabriella Campadelli-Fiume2
1Department of Experimental, Diagnostic and Specialty Medicine, University of Bologna, Bologna, Italy.
Abstract:
The great hopes raised by the discovery of the immunoregulatory cytokine interleukin 12 (IL-12) as an anticancer agent were marred during early clinical experimentation because of severe adverse effects, which prompted a search for alternative formulations and routes of administration. Onco-immunotherapeutic viruses (OIVs) are wild-type or genetically engineered viruses that exert antitumor activity by causing death of the tumor cells they infect and by overcoming a variety of immunosuppressive mechanisms put in place by the tumors. OIVs have renewed the interest in IL-12, as they offer the opportunity to encode the cytokine transgenically from the viral genome and to produce it at high concentrations in the tumor bed. A large body of evidence indicates that IL-12 serves as a potent adjuvant for the immunotherapeutic response elicited by OIVs in murine tumor models. The list of OIVs includes onco-immunotherapeutic herpes simplex, adeno, measles, Newcastle disease, and Maraba viruses, among others. The large increase in IL-12-mediated adjuvanticity was invariably observed for all the OIVs analyzed. Indirect evidence suggests that locally delivered IL-12 may also increase tumor antigenicity. Importantly, the OIV/IL-12 treatment was not accompanied by adverse effects and elicited a long-lasting immune response capable of halting the growth of distant tumors. Thus, OIVs provide an avenue for reducing the clinical toxicity associated with systemic IL-12 therapy, by concentrating the cytokine at the site of disease. The changes to the tumor microenvironment induced by the IL-12-armed OIVs primed the tumors to an improved response to the checkpoint blockade therapy, suggesting that the triple combination is worth pursuing in the future. The highly encouraging results in preclinical models have prompted translation to the clinic. How well the IL-12-OIV-checkpoint inhibitors' combination will perform in humans remains to be fully investigated.
Insights
Onco-immunotherapeutic viruses (OIVs) carrying interleukin 12 (IL-12) show promise for cancer treatment. This approach reduces severe side effects and enhances anti-tumor immune responses, paving the way for clinical trials.
Area of Science:
- Oncology
- Immunology
- Virology
Background:
- Interleukin 12 (IL-12) showed promise as an anticancer agent but caused severe side effects.
- Onco-immunotherapeutic viruses (OIVs) offer a novel approach to deliver therapeutic agents directly to tumors.
- OIVs can be engineered to produce IL-12 locally, overcoming systemic toxicity issues.
Purpose of the Study:
- To evaluate the efficacy and safety of OIVs engineered to express IL-12.
- To investigate the potential of OIV/IL-12 combination therapy in preclinical cancer models.
- To assess the impact of OIV/IL-12 on tumor microenvironment and immune response.
Main Methods:
- Utilized various OIVs (herpes simplex, adeno, measles, Newcastle disease, Maraba viruses) engineered to express IL-12.
- Administered OIV/IL-12 therapy in murine tumor models.
- Assessed antitumor activity, immune response, and adverse effects.
- Evaluated the combination of OIV/IL-12 with checkpoint blockade therapy.
Main Results:
- OIV/IL-12 therapy demonstrated potent antitumor activity and enhanced immunotherapeutic responses in preclinical models.
- Local IL-12 delivery via OIVs significantly reduced systemic toxicity compared to traditional IL-12 administration.
- OIV/IL-12 treatment elicited long-lasting immune responses and halted distant tumor growth.
- IL-12-armed OIVs improved tumor priming for enhanced response to checkpoint blockade therapy.
Conclusions:
- OIVs engineered to express IL-12 represent a promising strategy for cancer immunotherapy with reduced toxicity.
- The OIV/IL-12 platform offers a viable method for localized cytokine delivery to the tumor microenvironment.
- Further clinical investigation of OIV/IL-12 and combination therapies, including checkpoint inhibitors, is warranted.
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