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Updated: Mar 29, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Oncolysis by paramyxoviruses: preclinical and clinical studies
Olga V Matveeva1, Zong S Guo2, Vyacheslav M Senin3
1Biopolymer Design LLC, Acton, Massachusetts, USA ; Engelhardt Institute of Molecular Biology, Moscow, Russia.
Abstract:
Preclinical studies demonstrate that a broad spectrum of human malignant cells can be killed by oncolytic paramyxoviruses, which include cells of ecto-, endo-, and mesodermal origin. In clinical trials, significant reduction in size or even complete elimination of primary tumors and established metastases are reported. Different routes of viral administration (intratumoral, intravenous, intradermal, intraperitoneal, or intrapleural), and single- versus multiple-dose administration schemes have been explored. The reported side effects are grade 1 and 2, with the most common among them being mild fever. Some advantages in using para-myxoviruses as oncolytic agents versus representatives of other viral families exist. The cytoplasmic replication results in a lack of host genome integration and recombination, which makes paramyxoviruses safer and more attractive candidates for widely used therapeutic oncolysis in comparison with retroviruses or some DNA viruses. The list of oncolytic paramyxovirus representatives includes attenuated measles virus (MV), mumps virus (MuV), low pathogenic Newcastle disease (NDV), and Sendai (SeV) viruses. Metastatic cancer cells frequently overexpress on their surface some molecules that can serve as receptors for MV, MuV, NDV, and SeV. This promotes specific viral attachment to the malignant cell, which is frequently followed by specific viral replication. The paramyxoviruses are capable of inducing efficient syncytium-mediated lyses of cancer cells and elicit strong immunomodulatory effects that dramatically enforce anticancer immune surveillance. In general, preclinical studies and phase 1-3 clinical trials yield very encouraging results and warrant continued research of oncolytic paramyxoviruses as a particularly valuable addition to the existing panel of cancer-fighting approaches.
Insights
Oncolytic paramyxoviruses effectively target and eliminate various human cancer cells, showing promise in clinical trials with manageable side effects. Their cytoplasmic replication offers a safety advantage for therapeutic cancer treatment.
Area of Science:
- Virology
- Oncology
- Immunotherapy
Background:
- Oncolytic viruses are engineered or naturally occurring viruses that selectively infect and kill cancer cells.
- Paramyxoviruses, a family of RNA viruses, are being investigated for their oncolytic potential due to their ability to target diverse cancer cell types.
Purpose of the Study:
- To evaluate the efficacy and safety of oncolytic paramyxoviruses in preclinical and clinical settings for cancer treatment.
- To highlight the advantages of paramyxoviruses over other oncolytic viral agents.
Main Methods:
- Preclinical studies assessing the oncolytic activity of paramyxoviruses against various human malignant cells.
- Clinical trials exploring different administration routes (intratumoral, intravenous, etc.) and dosing schedules.
- Analysis of viral replication mechanisms, safety profiles, and immunomodulatory effects.
Main Results:
- Paramyxoviruses demonstrated broad-spectrum activity against human cancer cells of ecto-, endo-, and mesodermal origin.
- Clinical trials reported significant tumor size reduction and complete elimination of primary tumors and metastases.
- Observed side effects were generally mild (Grade 1-2), primarily mild fever, with cytoplasmic replication preventing host genome integration.
Conclusions:
- Oncolytic paramyxoviruses, including measles virus (MV), mumps virus (MuV), Newcastle disease virus (NDV), and Sendai virus (SeV), are safe and effective cancer therapeutics.
- Their ability to induce syncytium-mediated cell lysis and potent immunomodulatory effects enhances their therapeutic value.
- Paramyxoviruses represent a promising addition to existing cancer treatment modalities, warranting further research.
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