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Updated: May 31, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Vesicular stomatitis virus has extensive oncolytic activity against human sarcomas: rare resistance is overcome by
Justin C Paglino1, Anthony N van den Pol
1Department of Neurosurgery, Yale University School of Medicine, 333 Cedar St., New Haven, CT 06520, USA.
Abstract:
Oncolytic viruses have been tested against many carcinomas of ectodermal and endodermal origin; however, sarcomas, arising from mesoderm, have received relatively little attention. Using 13 human sarcomas representing seven tumor types, we assessed the efficiency of infection, cytolysis, and replication of green fluorescent protein (GFP)-expressing vesicular stomatitis virus (VSV) and its oncolytically enhanced mutant VSV-rp30a. Both viruses efficiently infected and killed 12 of 13 sarcomas. VSV-rp30a showed a faster rate of infection and replication. In vitro and in vivo, VSV was selective for sarcomas compared with normal mesoderm. A single intravenous injection of VSV-rp30a selectively infected all subcutaneous human sarcomas tested in mice and arrested the growth of tumors that otherwise grew 11-fold. In contrast to other sarcomas, synovial sarcoma SW982 demonstrated remarkable resistance, even to high titers of virus (multiplicity of infection [MOI] of 100). We found no dysfunction in VSV binding or internalization. SW982 also resisted infection by human cytomegalovirus and Sindbis virus, suggesting a virus resistance mechanism based on an altered antiviral state. Quantitative reverse transcriptase (qRT)-PCR analysis revealed a heightened basal expression of interferon-stimulated genes (ISGs). Pretreatment, but not cotreatment, with interferon attenuators valproate, Jak1 inhibitor, or vaccinia virus B18R protein rendered SW982 highly susceptible, and this correlated with downregulation of ISG expression. Jak1 inhibitor pretreatment also enhanced susceptibility in moderately VSV-resistant liposarcoma and bladder carcinoma. Overall, we find that the potential efficacy of VSV as an oncolytic agent extends to nonhematologic mesodermal tumors and that unusually strong resistance to VSV oncolysis can be overcome with interferon attenuators.
Insights
Vesicular stomatitis virus (VSV) effectively targets and destroys most human sarcomas, including those of mesodermal origin. Resistance in some tumors can be overcome by using interferon attenuators.
Area of Science:
- Oncolytic virotherapy
- Cancer research
- Virology
Background:
- Sarcomas, cancers of mesodermal origin, are understudied in oncolytic virus therapy.
- Vesicular stomatitis virus (VSV) is a potential oncolytic agent.
Purpose of the Study:
- To evaluate the efficacy of VSV and its mutant VSV-rp30a against human sarcomas.
- To investigate mechanisms of VSV resistance and potential therapeutic strategies.
Main Methods:
- Infection, cytolysis, and replication assays of VSV and VSV-rp30a in 13 human sarcomas.
- In vivo studies using subcutaneous human sarcoma xenografts in mice.
- Analysis of viral resistance mechanisms, including interferon-stimulated genes (ISGs) and antiviral states.
- Testing of interferon attenuators to overcome tumor resistance.
Main Results:
- VSV and VSV-rp30a efficiently infected and killed 12 of 13 tested sarcomas.
- VSV demonstrated selectivity for sarcomas over normal mesodermal tissues.
- VSV-rp30a treatment arrested tumor growth in vivo.
- Synovial sarcoma SW982 exhibited resistance due to an enhanced antiviral state with high ISG expression.
- Interferon attenuators (valproate, Jak1 inhibitor, B18R) restored susceptibility in resistant SW982 and enhanced it in moderately resistant tumors.
Conclusions:
- VSV is a promising oncolytic agent for nonhematologic mesodermal tumors.
- Interferon pathway modulation is a viable strategy to overcome VSV resistance in sarcomas and other cancers.
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