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Published on: November 28, 2015
Immune Suppression during Oncolytic Virotherapy for High-Grade Glioma; Yes or No?
Carolien A E Koks1, Steven De Vleeschouwer2, Norbert Graf3
11. Pediatric Immunology, Department of Microbiology and Immunology, KU Leuven, Belgium.
Abstract:
Oncolytic viruses have been seriously considered for glioma therapy over the last 20 years. The oncolytic activity of several oncolytic strains has been demonstrated against human glioma cell lines and in in vivo xenotransplant models. So far, four of these stains have additionally completed the first phase I/II trials in relapsed glioma patients. Though safety and feasibility have been demonstrated, therapeutic efficacy in these initial trials, when described, was only minor. The role of the immune system in oncolytic virotherapy for glioma remained much less studied until recent years. When investigated, the immune system, adept at controlling viral infections, is often hypothesized to be a strong hurdle to successful oncolytic virotherapy. Several preclinical studies have therefore aimed to improve oncolytic virotherapy efficacy by combining it with immune suppression or evasion strategies. More recently however, a new paradigm has developed in the oncolytic virotherapy field stating that oncolytic virus-mediated tumor cell death can be accompanied by elicitation of potent activation of innate and adaptive anti-tumor immunity that greatly improves the efficacy of certain oncolytic strains. Therefore, it seems the three-way interaction between oncolytic virus, tumor and immune system is critical to the outcome of antitumor therapy. In this review we discuss the studies which have investigated how the immune system and oncolytic viruses interact in models of glioma. The novel insights generated here hold important implications for future research and should be incorporated into the design of novel clinical trials.
Insights
Oncolytic viruses show promise for glioma treatment, but their efficacy is complex. Emerging research highlights the critical interplay between the virus, tumor, and immune system for successful oncolytic virotherapy outcomes.
Area of Science:
- Neuro-oncology
- Immunology
- Virology
Background:
- Oncolytic viruses have been explored for glioma therapy for two decades, with demonstrated activity in cell lines and animal models.
- Initial clinical trials in glioma patients showed safety and feasibility but limited efficacy.
- The immune system's role in oncolytic virotherapy for glioma was historically underestimated.
Purpose of the Study:
- To review the interactions between the immune system and oncolytic viruses in glioma models.
- To explore the evolving understanding of oncolytic virotherapy beyond direct viral effects.
- To highlight the critical three-way interaction between virus, tumor, and host immunity.
Main Methods:
- Review of preclinical studies investigating oncolytic virus-glioma-immune system interactions.
- Analysis of research on immune suppression versus immune activation strategies in oncolytic virotherapy.
- Synthesis of findings on the role of innate and adaptive anti-tumor immunity.
Main Results:
- Early research often viewed the immune system as a barrier to oncolytic virotherapy.
- Recent studies reveal that oncolytic viruses can stimulate potent anti-tumor immune responses.
- The immune system's response significantly influences the therapeutic efficacy of oncolytic viruses in glioma.
Conclusions:
- The interaction between oncolytic viruses, glioma cells, and the immune system is crucial for treatment success.
- Understanding this complex interplay is vital for optimizing oncolytic virotherapy strategies.
- Future clinical trials should incorporate these insights for improved glioma treatment outcomes.
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