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Updated: Jun 11, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Cytokine-modified VSV is attenuated for neural pathology, but is both highly immunogenic and oncolytic
James Miller1, Sarah M Bidula, Troels M Jensen
1Department of Biology, New York University, New York, NY, USA.
Abstract:
Vesicular stomatitis virus (VSV), an enveloped, nonsegmented, negative-stranded RNA virus, is being tested by several laboratories as an antitumor agent. Unfortunately, viral infection of the central nervous system (CNS) has been observed by many groups following administration to tumor-bearing animals. In rodents, VSV encephalitis is characterized by weight-loss, paralysis, and high mortality. In order to provide protection from VSV infection of the CNS after therapeutic administration, we have attenuated VSV by the introduction of the gene encoding the proinflammatory cytokine interleukin (IL)-23, and designated the new virus VSV23. We hypothesize that while VSV23 is replicating within tumors, resulting in tumor destruction, the expression of IL-23 will enhance host antitumor and antiviral immune responses. In the event that the virus escapes from the tumor, the host's immune system will be activated and the virus will be rapidly cleared from healthy tissue. Experimental VSV23 infection of the CNS is characterized by decreased viral replication, morbidity, and mortality. VSV23 is capable of stimulating the enhanced production of nitric oxide in the CNS, which is critical for elimination of VSV from infected neurons. Intraperitoneal administration of VSV23 stimulates both nonspecific natural killer cell, virus-specific cytolytic T lymphocyte and memory virus-specific proliferative T cell responses against wild-type VSV in splenocytes. Furthermore, VSV23 is able to replicate in, and induce apoptosis of tumor cells in vitro. These data indicate that VSV23 is immunogenic, attenuated and suitable for testing as an efficacious and safe oncolytic agent.
Insights
This study developed an oncolytic virus, VSV23, by adding IL-23 to VSV to fight tumors. VSV23 shows reduced neurotoxicity and enhanced immune responses, making it a promising cancer therapy candidate.
Area of Science:
- Virology
- Immunology
- Oncology
Background:
- Vesicular stomatitis virus (VSV) shows potential as an antitumor agent.
- However, VSV infection of the central nervous system (CNS) leads to severe neurological disease in rodents.
- Attenuating VSV is crucial for safe therapeutic use.
Purpose of the Study:
- To develop an attenuated VSV strain, VSV23, expressing interleukin-23 (IL-23).
- To evaluate VSV23's efficacy as an oncolytic agent.
- To assess VSV23's safety profile, particularly regarding CNS toxicity.
Main Methods:
- VSV was genetically modified to express IL-23, creating VSV23.
- VSV23's replication, immunogenicity, and safety were tested in vitro and in vivo models.
- Immune responses, including nitric oxide production and T cell activation, were analyzed.
Main Results:
- VSV23 demonstrated reduced viral replication, morbidity, and mortality in the CNS compared to wild-type VSV.
- VSV23 enhanced host immune responses, including natural killer cell and T lymphocyte activity.
- VSV23 effectively replicated in and induced apoptosis of tumor cells in vitro.
Conclusions:
- VSV23 is an immunogenic and attenuated oncolytic virus.
- The IL-23 expression enhances antitumor and antiviral immune responses.
- VSV23 shows potential as an efficacious and safe oncolytic agent for cancer therapy.
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