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Updated: Jul 18, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Reovirus - possible therapy of cancer
K Figova1, J Hrabeta, T Eckschlager
1Department of Pediatric Hematology and Oncology, 2nd Medical School, Charles University, University Hospital Motol, Prague, Czech Republic.
Abstract:
Oncolytic viruses infect, replicate in, and eventually lyse tumor cells but spare normal ones. In addition to direct lysis, a result of viral replicative cycle, viruses also mediate tumor cell destruction by inducing nonspecific and specific antitumor immunity. Some viruses express proteins that are cytotoxic to tumor cells. Viruses recognized as oncolytic agents can therefore be divided into three categories: 1/ naturally occurring viruses (e.g. Newcastle disease virus, vesicular stomatitis virus, autonomous parvoviruses, some measles virus strains, reovirus) that selectively replicate in tumor cells, in some instances owing to their relative resistance to interferon action; 2/ virus mutants in which some genes essential for replication in normal cells but evitable in cancer cells have been deleted (e.g.adenovirus ONYX 015 that replicates only in cells with defected p53 or herpes virus G207 which exacts the presence of ribonucleotide reductase); 3/ virus mutants modified by the introduction of tissue-specific transcriptional elements that drive viral genes (e.g.adenovirus CV706 that has PSA restricted expression of E1A and E1B and adenovirus adMycTK that binds selectively on myc protein). Reovirus is prevalent in the human population but not associated with any known human disease. Studies have shown that reovirus multiplicate preferentially in tumor cells with activated gene of ras family or ras-signaling pathway while sparing normal cells. Activated ras or its pathway could be found in as many as 60-80% of human malignancies. In our studies we used cell lines that demonstrably express activated ras. We showed the cytopathic effect of reovirus (serotype 3 strain Dearing) on medulloblastoma cell lines and compared it with its acting on normal human fibroblasts. Oncolytics Biotech Inc. is currently guiding three Phase I or Phase I/II Reolysin studies, and has completed two clinical studies and concluded enrolment in a third one.
Insights
Reovirus selectively infects and destroys tumor cells, particularly those with activated ras pathways, sparing normal cells. This oncolytic virus shows promise for cancer therapy, with ongoing clinical trials.
Area of Science:
- Virology
- Oncology
- Gene Therapy
Background:
- Oncolytic viruses selectively target and lyse tumor cells while sparing normal cells.
- They can induce both non-specific and specific anti-tumor immune responses.
- Viruses are categorized into naturally occurring, deleted-gene mutants, and transcriptionally-modified mutants.
Purpose of the Study:
- To investigate the oncolytic potential of reovirus, specifically serotype 3 strain Dearing.
- To evaluate reovirus's preferential replication and cytopathic effects in tumor cells with activated ras signaling pathways.
- To compare reovirus's efficacy on medulloblastoma cell lines versus normal human fibroblasts.
Main Methods:
- Utilized cell lines with demonstrably activated ras signaling pathways.
- Assessed the cytopathic effect of reovirus (serotype 3 strain Dearing) on medulloblastoma cell lines.
- Compared reovirus's effects on tumor cells with its effects on normal human fibroblasts.
Main Results:
- Reovirus demonstrated preferential replication and cytopathic effects in tumor cells with activated ras or ras-signaling pathways.
- Normal human fibroblasts showed resistance to reovirus-induced lysis.
- Activated ras pathways are present in a significant percentage (60-80%) of human malignancies.
Conclusions:
- Reovirus exhibits selective oncolytic activity against tumor cells with activated ras signaling.
- This selectivity suggests reovirus as a promising candidate for oncolytic virotherapy in cancers with ras pathway activation.
- Ongoing clinical trials (Phase I/II) are evaluating Reolysin (reovirus) for cancer treatment.
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