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Updated: Dec 25, 2025

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
In vivo antitumor activity by dual stromal and tumor-targeted oncolytic measles viruses
Yuqi Jing1, Valery Chavez1, Natasha Khatwani1,2
1Division of Medical Oncology, University of Miami Miller School of Medicine and Sylvester Comprehensive Cancer Center, Miami, FL, USA.
Abstract:
The tumor stroma acts as a barrier that limits the efficacy of systemically administered oncolytic viruses (OV). We previously demonstrated that stromal-selective, retargeted oncolytic measles viruses (MVs) delay in vivo tumor progression. To further characterize the contribution of stromal targeting to MV's overall in vivo efficacy in an experimental cancer model, a dual targeted oncolytic measles virus (MV-CD46-muPA) able to simultaneously infect murine stromal (via murine uPAR) and human cancer (via CD46) cells was developed. MV-CD46-muPA infected, replicated, and induced cytotoxicity in both murine and human cancer cells. Viral infection was successfully transferred from stromal to tumor cells in vitro, leading to tumor cell oncolysis. Systemic administration of MV-CD46-muPA led to improved antitumor effects in colon (HT-29) cancer xenografts compared to vehicle or CD46 only targeted MVs. These effects were associated with improved tumor viral deposition, increased apoptosis, and decreases in murine stromal endothelial cells and fibroblasts. MV-CD46-muPA modulated cell cycle, survival, proliferation, and metabolic pathways, as determined by functional proteomic analysis of treated tumors. The above findings further validate the concept that dual stromal and tumor cell viral targeting enhances the therapeutic effects of systemically administered OVs and support further preclinical and clinical development of stromal directed virotherapies.
Insights
Dual-targeted oncolytic measles viruses (MVs) overcome tumor stroma barriers. This enhanced virotherapy strategy improved antitumor effects and supports further development for cancer treatment.
Area of Science:
- Oncolytic virotherapy
- Cancer biology
- Tumor microenvironment
Background:
- Tumor stroma impedes systemic oncolytic virus (OV) efficacy.
- Previous work showed stromal-selective oncolytic measles viruses (MVs) delay tumor progression.
Purpose of the Study:
- To assess the in vivo efficacy of a dual-targeted OV.
- To investigate the contribution of stromal targeting to OV therapeutic effects.
Main Methods:
- Development of a dual-targeted MV (MV-CD46-muPA) infecting murine stromal (uPAR) and human cancer (CD46) cells.
- In vitro studies of viral infection, replication, and oncolysis.
- In vivo studies using colon cancer xenografts in mice.
Main Results:
- MV-CD46-muPA demonstrated infectivity and cytotoxicity in both cell types.
- Systemic administration improved antitumor effects in colon cancer xenografts.
- Enhanced viral deposition, apoptosis, and stromal cell reduction were observed.
Conclusions:
- Dual targeting of stromal and tumor cells enhances OV therapeutic effects.
- Stromal-directed virotherapies show promise for preclinical and clinical development.

