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Experimental Melanoma Immunotherapy Model Using Tumor Vaccination with a Hematopoietic Cytokine
Published on: February 24, 2023
A Novel Chimeric Oncolytic Virus Mediates a Multifaceted Cellular Immune Response in a Syngeneic B16 Melanoma Model
Sonja Glauß1, Victoria Neumeyer1, Lorenz Hanesch1
1Department of Internal Medicine II, Rechts der Isar Hospital, Technical University of Munich, 81675 Munich, Germany.
Background/Objectives:
Oncolytic virotherapy is a promising approach in cancer immunotherapy. We have previously described a recombinant hybrid oncolytic virus (OV), VSV-NDV, which has a favorable safety profile and therapeutic immunogenicity, leading to direct oncolysis, abscopal effects, and prolonged survival in syngeneic in vivo tumor models. While OVs are known to mediate systemic anti-tumor immune responses, the detailed characterization of local and systemic immune responses to fusogenic oncolytic virotherapy remains unexplored.
Methods And Results:
We analyzed immune cell compartments in the spleen, blood, tumor-draining lymph nodes (TDLNs), and tumors over the course of VSV-NDV therapy in a bilateral syngeneic melanoma mouse model. Our results revealed significant local infiltration and activation of T lymphocytes in tumors and globally in the blood and spleen. Notably, in vivo CD8+ T cell depletion led to complete abrogation of the tumor response, highlighting the crucial role of T cells in promoting the therapeutic effects of oncolytic VSV-NDV. In vitro co-culture experiments enabled the interrogation of human immune cell responses to VSV-NDV-mediated oncolysis. Human peripheral blood mononuclear cells (PBMCs) were efficiently stimulated by exposure to VSV-NDV-infected cancer cells, which recapitulates the in vivo murine findings.
Conclusions:
Taken together, these data characterize a broad anti-tumor immune cell response to oncolytic VSV-NDV therapy and suggest that CD8+ T cells play a decisive role in therapeutic outcome, which supports the further development of this chimeric vector as a multimechanistic immunotherapy for solid cancers.
Insights
Oncolytic VSV-NDV therapy activates T cells, crucial for anti-tumor immunity. This study details immune responses, confirming CD8+ T cells are key to successful cancer virotherapy.
Area of Science:
- Immunology
- Oncology
- Virology
Background:
- Oncolytic virotherapy is a promising cancer immunotherapy.
- Recombinant hybrid oncolytic virus (OV), VSV-NDV, shows safety and immunogenicity.
- Detailed immune responses to fusogenic oncolytic virotherapy are unexplored.
Purpose of the Study:
- Characterize local and systemic immune responses to VSV-NDV therapy.
- Investigate the role of T cells in VSV-NDV-mediated anti-tumor effects.
- Explore human immune cell responses to VSV-NDV-infected cancer cells.
Main Methods:
- Analyzed immune cell compartments in spleen, blood, lymph nodes, and tumors in a melanoma mouse model.
- Performed in vivo CD8+ T cell depletion experiments.
- Conducted in vitro co-culture of human PBMCs with VSV-NDV-infected cancer cells.
Main Results:
- VSV-NDV therapy induced significant T lymphocyte infiltration and activation in tumors, blood, and spleen.
- CD8+ T cell depletion abrogated the anti-tumor response, confirming their critical role.
- Human PBMCs showed efficient stimulation upon exposure to VSV-NDV-infected cancer cells.
Conclusions:
- VSV-NDV therapy elicits a broad anti-tumor immune response.
- CD8+ T cells are decisive for the therapeutic outcome of VSV-NDV.
- VSV-NDV is a promising multimechanistic immunotherapy for solid cancers.
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