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Published on: November 22, 2017
MeV-Stealth: A CD46-specific oncolytic measles virus resistant to neutralization by measles-immune human serum
Miguel Ángel Muñoz-Alía1, Rebecca A Nace1, Alexander Tischer2
1Department of Molecular Medicine, Mayo Clinic, Rochester, Minnesota, United States of America.
Abstract:
The frequent overexpression of CD46 in malignant tumors has provided a basis to use vaccine-lineage measles virus (MeV) as an oncolytic virotherapy platform. However, widespread measles seropositivity limits the systemic deployment of oncolytic MeV for the treatment of metastatic neoplasia. Here, we report the development of MeV-Stealth, a modified vaccine MeV strain that exhibits oncolytic properties and escapes antimeasles antibodies in vivo. We engineered this virus using homologous envelope glycoproteins from the closely-related but serologically non-cross reactive canine distemper virus (CDV). By fusing a high-affinity CD46 specific single-chain antibody fragment (scFv) to the CDV-Hemagglutinin (H), ablating its tropism for human nectin-4 and modifying the CDV-Fusion (F) signal peptide we achieved efficient retargeting to CD46. A receptor binding affinity of ~20 nM was required to trigger CD46-dependent intercellular fusion at levels comparable to the original MeV H/F complex and to achieve similar antitumor efficacy in myeloma and ovarian tumor-bearing mice models. In mice passively immunized with measles-immune serum, treatment of ovarian tumors with MeV-Stealth significantly increased overall survival compared with treatment with vaccine-lineage MeV. Our results show that MeV-Stealth effectively targets and lyses CD46-expressing cancer cells in mouse models of ovarian cancer and myeloma, and evades inhibition by human measles-immune serum. MeV-Stealth could therefore represent a strong alternative to current oncolytic MeV strains for treatment of measles-immune cancer patients.
Insights
A novel measles virus (MeV) strain, MeV-Stealth, effectively targets CD46-expressing tumors and evades measles antibodies. This engineered virus offers a promising oncolytic virotherapy alternative for cancer patients with pre-existing immunity to measles.
Area of Science:
- Oncolytic virotherapy
- Virology
- Cancer immunology
Background:
- Overexpression of CD46 in tumors supports measles virus (MeV) oncolytic virotherapy.
- Widespread measles immunity limits systemic MeV treatment for metastatic cancers.
Purpose of the Study:
- To develop an MeV-based oncolytic virus, MeV-Stealth, that bypasses pre-existing measles antibodies.
- To engineer MeV to specifically target CD46-expressing cancer cells.
Main Methods:
- Engineered MeV using canine distemper virus (CDV) envelope glycoproteins.
- Retargeted virus to CD46 by fusing a CD46-specific single-chain antibody fragment (scFv) to CDV-Hemagglutinin (H).
- Modified CDV-Fusion (F) signal peptide and ablated nectin-4 tropism.
Main Results:
- Achieved CD46-dependent cell fusion and antitumor efficacy comparable to wild-type MeV in mouse models.
- MeV-Stealth demonstrated significant survival benefits in mice with ovarian tumors, even when passively immunized against measles.
- The engineered virus effectively targeted and lysed CD46+ cancer cells while evading antibody neutralization.
Conclusions:
- MeV-Stealth successfully targets CD46+ cancers and evades measles immunity in preclinical models.
- This modified MeV strain represents a viable alternative for oncolytic virotherapy in measles-immune cancer patients.

