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Updated: Jun 10, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Mantle cell lymphoma salvage regimen: synergy between a reprogrammed oncolytic virus and two chemotherapeutics
G Ungerechts1, M E Frenzke, K-C Yaiw
1Department of Molecular Medicine and Virology and Gene Therapy Track, Mayo Clinic College of Medicine, Rochester, MN 55905, USA.
Abstract:
Measles virus (MV)-PNP H(blind)antiCD20 is a CD20-targeted and prodrug convertase-armed MV that temporarily controls growth of lymphoma xenografts in severe combined immunodeficiency (SCID) mice in combination with fludarabine phosphate (fludarabine). Herein, we examine the replication of this targeted virus and of a vaccine-lineage MV in disease bulks and circulating cells from mantle cell lymphoma (MCL) patients, and show that only the targeted virus is specific for CD20-expressing cells. We then assessed the efficacy of different regimens of administration of this virus in combination with fludarabine and cyclophosphamide (CPA) in an MCL xenograft model. We show that CPA administration before the beginning of virus treatment enhances oncolytic efficacy, likely through temporary immunosuppression. An interval of 1 week between intravenous virus administration and fludarabine treatment further enhanced oncolysis, by synchronizing maximum prodrug convertase expression with fludarabine availability. Finally, three 23-day courses of triple sequential treatment with CPA, virus and fludarabine treatment resulted in complete regression of the xenografts. Secondary disease symptoms interfered with survival, but average survival times increased from 22 to 77 days. These studies document a reprogrammed oncolytic virus, consolidating the effects of two chemotherapeutics, a concept well suited for a phase I clinical trial for MCL patients for whom conventional therapies have failed.
Insights
A novel measles virus (MV) armed with prodrug convertase specifically targets CD20+ mantle cell lymphoma (MCL) cells. This reprogrammed oncolytic virus, combined with chemotherapy, achieved complete xenograft regression and improved survival in mice.
Area of Science:
- Oncolytic virotherapy
- Cancer immunology
- Mantle cell lymphoma research
Background:
- Measles virus (MV)-PNP H(blind)antiCD20 is a modified MV targeting CD20+ cells.
- Previous studies showed temporary control of lymphoma xenografts with MV and fludarabine.
Purpose of the Study:
- To examine MV replication in mantle cell lymphoma (MCL) patient cells.
- To assess the efficacy of MV combined with cyclophosphamide (CPA) and fludarabine in an MCL xenograft model.
- To optimize treatment regimens for enhanced oncolysis.
Main Methods:
- Assessed MV specificity for CD20+ cells in MCL patient samples.
- Evaluated different administration schedules of MV, CPA, and fludarabine in an MCL xenograft model.
- Monitored tumor regression and animal survival.
Main Results:
- The targeted MV specifically infected CD20+ cells, unlike vaccine-lineage MV.
- CPA administration before virus treatment enhanced oncolytic efficacy.
- A 1-week interval between virus and fludarabine administration improved oncolysis.
- Three courses of sequential CPA, MV, and fludarabine led to complete xenograft regression.
- Average survival increased from 22 to 77 days.
Conclusions:
- Reprogrammed oncolytic MV can consolidate chemotherapeutic effects for enhanced efficacy.
- Optimized sequential administration of CPA, MV, and fludarabine shows significant anti-lymphoma activity.
- This approach is promising for a Phase I clinical trial in refractory MCL patients.
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