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Updated: Sep 11, 2025

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
[Antitumor immuno-virotherapy with attenuated strains of measles virus]
Jean-François Fonteneau1, Nicolas Boisgerault1, Frédéric Tangy2
1Nantes Université, Inserm UMR 1307, CNRS UMR 6075, Université d'Angers, CRCI2NA, F-44000 Nantes, France, LabEx IGO, Nantes Université, F-44000 Nantes, France.
Abstract:
Antitumor immuno-virotherapy involves the use of replicating oncolytic viruses capable of selectively infecting and killing tumor cells, with the aim of stimulating an antitumor immune response. Attenuated strains of measles virus (MeV) used as measles vaccines are good candidates. Attenuated MeVs use the CD46 molecule as a tumor cell entry receptor, but also CD150/SLAM and Nectin-4. The CD46 molecule blocks complement-mediated lysis and is frequently overexpressed by many cancer cell types, enabling the attenuated MeV to infect these cells. In addition, MeVs take advantage of defects in the antiviral type I interferon (IFN I) response in tumor cells to replicate, while this antiviral response blocks its replication in healthy cells. Attenuated MeVs display oncolytic properties against numerous cancers in vitro and in mouse models. They induce immunogenic cell death with infiltration of tumors by immune cells, notably T lymphocytes, thus activating the anti-tumor immune response. Several phase I and II clinical trials using different MeVs have been carried out, with encouraging results. Here, we provide an update on this therapeutic approach.
Insights
Antitumor immuno-virotherapy uses oncolytic viruses like measles virus (MeV) to target and destroy cancer cells. This approach stimulates the immune system to fight tumors, showing promise in clinical trials.
Area of Science:
- Oncolytic virotherapy
- Immunotherapy
- Virology
Context:
- Attenuated measles virus (MeV) strains, utilized in vaccines, are explored for cancer treatment.
- MeV utilizes tumor cell receptors like CD46, CD150/SLAM, and Nectin-4 for entry.
- Tumor cells often overexpress CD46, facilitating MeV infection and evading complement-mediated lysis.
- MeV exploits defective type I interferon (IFN-I) responses in tumor cells for replication, while healthy cells are protected.
Purpose:
- To provide an update on antitumor immuno-virotherapy using attenuated measles virus (MeV).
- To highlight the mechanisms of MeV oncolytic activity and immune stimulation.
- To review the progress and results of clinical trials involving MeV-based therapies.
Summary:
- Attenuated MeV selectively infects and replicates in tumor cells, leveraging specific entry receptors and exploiting tumor-specific defects in antiviral responses.
- MeV induces immunogenic cell death, leading to the infiltration of immune cells, particularly T lymphocytes, into the tumor microenvironment.
- In vitro and in vivo studies demonstrate the oncolytic potential of attenuated MeV against various cancers.
Impact:
- Attenuated MeV-based immuno-virotherapy demonstrates significant potential as a novel cancer treatment strategy.
- Clinical trials indicate encouraging outcomes, suggesting the therapeutic efficacy of this approach.
- This research contributes to the advancement of virotherapy and cancer immunotherapy.
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