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Acquired resistance to reoviral oncolysis in Ras-transformed fibrosarcoma cells
1Department of Biochemistry and Molecular Biology, Faculty of Medicine, University of Calgary, Calgary, Alberta, Canada.
Abstract:
Reovirus shows considerable potential as an oncolytic agent for Ras-activated tumors and is currently in clinical trials. Here we ask whether such tumor cell lines can acquire resistance to reoviral oncolysis. We challenged human HT1080 fibrosarcoma cells that carry a Ras mutation by prolonged exposure to reovirus, thereby yielding highly virus-resistant HTR1 cells. These cells are persistently infected with reovirus, exhibit high Ras activity and retain the original Ras gene mutation, showing that resistance to reovirus can be displayed in cells with active Ras. The HTR1 cells also exhibit reduced cellular cathepsin B activity, which normally contributes to viral entry and activation. Persistently infected HTR1 cells were not tumorigenic in vivo, whereas immunologically cured virus-free HTR1 cells were highly tumorigenic. Thus, acquisition of resistance to reovirus may constrain therapeutic strategies. To determine whether reoviral resistance is associated with a general reduction in apoptotic potential, we challenged the HTR1 cells with apoptotic inducers and E1B-defective adenovirus, resulting in significant apoptosis and cell death following both approaches. Therefore, even if resistance to reoviral oncolysis should arise in tumor cells in vivo, other therapeutic strategies may nevertheless remain effective.
Insights
Tumor cells can develop resistance to reovirus therapy by becoming persistently infected, which may impact treatment strategies. However, these resistant cells remain susceptible to other cancer-fighting methods.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Reovirus is a promising oncolytic agent for Ras-activated tumors.
- Understanding potential resistance mechanisms is crucial for therapeutic development.
Purpose of the Study:
- To investigate if tumor cells can acquire resistance to reovirus-mediated oncolysis.
- To characterize the properties of reovirus-resistant tumor cells.
Main Methods:
- Human HT1080 fibrosarcoma cells with a Ras mutation were exposed to reovirus.
- Resistant cells (HTR1) were analyzed for viral persistence, Ras activity, and cathepsin B levels.
- Tumorigenicity and apoptosis susceptibility of HTR1 cells were assessed.
Main Results:
- Prolonged reovirus exposure yielded highly resistant HTR1 cells, persistently infected with reovirus.
- HTR1 cells maintained high Ras activity and reduced cathepsin B activity.
- Persistently infected HTR1 cells were non-tumorigenic, while cured cells were tumorigenic.
- HTR1 cells remained susceptible to apoptosis induced by other agents.
Conclusions:
- Acquisition of reovirus resistance in Ras-activated tumors is possible and may involve reduced cathepsin B activity.
- Reovirus resistance does not necessarily equate to resistance to all cancer therapies.
- Alternative therapeutic strategies remain viable even if reovirus resistance emerges.
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