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Updated: Aug 12, 2025

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Immune response elicited in the tumor microenvironment upon rMV-SLAMblind cancer virotherapy
Kanako Moritoh1, Koichiro Shoji1, Yosuke Amagai1
1Laboratory Animal Research Center, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan.
Abstract:
Oncolytic virotherapy is a promising therapy for cancer. We previously established a recombinant measles virus (rMV-SLAMblind) that targets NECTIN4-expressing cancer cells and demonstrated its antitumor effects using a xenograft model in an immunodeficient mouse. In the current study, to investigate the immune response after rMV-SLAMblind therapy, we developed an immunocompetent cancer mouse model by introducing the NECTIN4 gene into mouse cancer cell lines. NECTIN4-expressing mouse cancer cells were successfully killed by rMV-SLAMblind in vitro. After transplantation of the NECTIN4-expressing tumor cells, rMV-SLAMblind significantly suppressed tumor growth in immunocompetent mice. Thus, this immunocompetent mouse cancer model could be a powerful tool in which to study the effect of rMV-SLAMblind therapy on the immune response. Using this model we found that rMV-SLAMblind elicited significant activation of natural killer cells, type 1 helper T cells and the tumor-specific CD8+ T-cell response in the tumor microenvironment. Immune cell depletion study revealed that CD8+ cells particularly played significant roles in the therapeutic efficacy of rMV-SLAMblind. Thus, rMV-SLAMblind exerts a therapeutic effect, not only directly by tumor cell killing, but also indirectly by efficient induction of antitumor immunity.
Insights
Recombinant measles virus (rMV-SLAMblind) effectively treats cancer by directly killing tumor cells and stimulating antitumor immunity. This therapy activates key immune cells, including CD8+ T cells, crucial for its therapeutic success.
Area of Science:
- Oncolytic virotherapy
- Cancer immunology
- Viral oncology
Background:
- Recombinant measles virus (rMV-SLAMblind) targets NECTIN4+ cancer cells.
- Previous studies showed antitumor effects in immunodeficient mice.
Purpose of the Study:
- Investigate the immune response to rMV-SLAMblind therapy.
- Develop an immunocompetent mouse model for studying oncolytic virotherapy.
Main Methods:
- Created immunocompetent mouse cancer models expressing NECTIN4.
- Evaluated rMV-SLAMblind efficacy and immune cell activation in vivo.
- Conducted immune cell depletion studies to determine key cellular players.
Main Results:
- rMV-SLAMblind demonstrated in vitro efficacy against NECTIN4+ cancer cells.
- Significant tumor growth suppression was observed in immunocompetent mice.
- Therapy induced activation of NK cells, Th1 cells, and CD8+ T cells.
- CD8+ T cells were critical for the therapeutic efficacy of rMV-SLAMblind.
Conclusions:
- The developed immunocompetent model is valuable for studying oncolytic virotherapy and immune responses.
- rMV-SLAMblind exhibits dual therapeutic action: direct tumor killing and induction of antitumor immunity.
- CD8+ T cell-mediated immunity significantly contributes to the efficacy of rMV-SLAMblind therapy.
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