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Updated: Jun 18, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Interference of CD40L-mediated tumor immunotherapy by oncolytic vesicular stomatitis virus
Feorillo Galivo1, Rosa Maria Diaz, Uma Thanarajasingam
1Department of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USA.
Abstract:
Oncolytic virotherapy can be achieved in two ways: (1) by exploiting an innate ability of certain viruses to selectively replicate in tumor tissues, and (2) by using viruses to deliver toxic or immunostimulatory genes to tumors. Vesicular stomatitis virus (VSV) selectively replicates in tumors lacking adequate type I interferon response. The efficacy of oncolytic virotherapy using VSV against B16 melanomas in C57BL/6 mice is dependent on CD8(+) T and natural killer cells. Because immunotherapies that prime specific CD8(+) T cells against melanocyte/melanoma antigens can generate significant therapeutic responses, we hypothesized that engineering VSV to express the potent T cell costimulatory molecule CD40 ligand (VSV-CD40L) would enhance virotherapy with concomitant priming of melanoma-specific T cells. However, we observed no difference in antitumor efficacy between the parental VSV-GFP and VSV-CD40L. In contrast, intratumoral injection of a replication-defective adenovirus expressing CD40L (Ad-CD40L) consistently produced significantly greater therapy than either replication-competent VSV-GFP or VSV-CD40L. The Ad-CD40L-mediated tumor regressions were associated with specific T cell responses against tumor-associated antigens (TAAs), which took several days to develop, whereas VSV-CD40L rapidly induced high levels of T cell activation without specificity for TAAs. These data suggest that the high levels of VSV-associated immunogenicity distracted immune responses away from priming of tumor-specific T cells, even in the presence of potent costimulatory signals. In contrast, a replication-defective Ad-CD40L allowed significant priming of T cells directed against TAAs. These observations suggest that an efficiently primed antitumor T cell response can produce similar, if not better, therapy against an established melanoma compared with intratumoral injection of a replication-competent oncolytic virus.
Insights
Engineered vesicular stomatitis virus (VSV) expressing CD40 ligand did not improve oncolytic virotherapy. A replication-defective adenovirus expressing CD40L enhanced antitumor T cell responses and efficacy against melanoma.
Area of Science:
- Oncolytic virotherapy
- Immunotherapy
- Cancer research
Background:
- Oncolytic virotherapy uses viruses to selectively target and destroy tumor cells.
- Vesicular stomatitis virus (VSV) shows tumor selectivity, particularly in tumors with impaired interferon responses.
- CD8(+) T cells and natural killer cells are crucial for VSV-mediated oncolytic efficacy against melanoma.
Purpose of the Study:
- To investigate if engineering VSV to express CD40 ligand (VSV-CD40L) enhances oncolytic virotherapy and melanoma-specific T cell priming.
- To compare the efficacy of VSV-CD40L with parental VSV-GFP and a replication-defective adenovirus expressing CD40L (Ad-CD40L).
Main Methods:
- VSV engineered to express CD40L (VSV-CD40L) was tested against B16 melanomas in mice.
- Comparison of VSV-GFP, VSV-CD40L, and Ad-CD40L for antitumor efficacy.
- Analysis of T cell activation and specificity against tumor-associated antigens (TAAs).
Main Results:
- VSV-CD40L showed no improvement in antitumor efficacy compared to VSV-GFP.
- Intratumoral injection of Ad-CD40L resulted in significantly greater therapeutic effects than VSV-based therapies.
- Ad-CD40L induced specific T cell responses against TAAs, while VSV-CD40L caused rapid, non-specific T cell activation.
Conclusions:
- High immunogenicity of VSV may distract immune responses from developing tumor-specific T cells.
- Replication-defective Ad-CD40L facilitates effective priming of antitumor T cells.
- Efficiently primed T cell responses can be as effective as, or superior to, replication-competent oncolytic viruses for melanoma therapy.
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