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Updated: Mar 20, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Oncolytic viruses as immunotherapy: progress and remaining challenges
1Department of Pharmacology, University of Maryland School of Medicine, Baltimore, MD, USA.
Abstract:
Oncolytic viruses (OVs) comprise an emerging cancer therapeutic modality whose activity involves both direct tumor cell lysis and the induction of immunogenic cell death (ICD). Cellular proteins released from the OV-lysed tumor cells, known as damage-associated molecular patterns and tumor-associated antigens, activate dendritic cells and elicit adaptive antitumor immunity. Interaction with the innate immune system and the development of long-lasting immune memory also contribute to OV-induced cell death. The degree to which the ICD component contributes to the clinical efficacy of OV therapy is still unclear. Modulation of a range of immune interactions may be beneficial or detrimental in nature and the interactions depend on the specific tumor, the site and extent of the disease, the immunosuppressive tumor microenvironment, the OV platform, the dose, time, and delivery conditions, as well as individual patient responses. To enhance the contribution of ICD, OVs have been engineered to express immunostimulatory genes and strategies have been developed to combine OV therapy with chemo- and immune-based therapeutic regimens. However, these approaches carry the risk that they may also be tolerogenic depending on their levels and the presence of other cytokines, their direct antiviral effects, and the timing and conditions of their expression. The contribution of autophagy to adaptive immunity, the ability of the OVs to kill cancer stem cells, and the patient's baseline immune status are additional considerations. This review focuses on the complex and as yet poorly understood balancing act that dictates the outcome of OV therapy. We summarize current understanding of the OVs' function in eliciting antitumor immunity and its relationship to therapeutic efficacy. Also discussed are the criteria involved in restraining antiviral immune responses and minimizing pathology while promoting antitumor immunity to override immune tolerance.
Insights
Oncolytic viruses (OVs) are a promising cancer therapy that kill tumors and trigger immune responses. Understanding their complex immune interactions is key to maximizing their effectiveness against cancer.
Area of Science:
- Oncolytic virotherapy
- Cancer immunology
- Immunogenic cell death
Background:
- Oncolytic viruses (OVs) offer a dual mechanism for cancer treatment: direct tumor cell lysis and induction of immunogenic cell death (ICD).
- Released cellular components from OV-lysed tumors, including damage-associated molecular patterns and tumor-associated antigens, activate immune cells, promoting adaptive antitumor immunity.
- The precise contribution of ICD to OV therapy's clinical success remains an area of active investigation.
Purpose of the Study:
- To review the multifaceted immune interactions governing oncolytic virus (OV) therapy outcomes.
- To summarize the current understanding of how OVs elicit antitumor immunity and its link to therapeutic efficacy.
- To discuss strategies for optimizing OV therapy by modulating immune responses.
Main Methods:
- Literature review of oncolytic virus mechanisms and immunomodulation.
- Analysis of factors influencing OV efficacy, including tumor characteristics and patient-specific responses.
- Examination of engineered OV platforms and combination therapy strategies.
Main Results:
- OV efficacy is influenced by a complex interplay of innate and adaptive immunity, tumor microenvironment, and OV delivery parameters.
- Engineered OVs and combination therapies aim to enhance ICD and antitumor immunity but carry risks of tolerogenicity.
- Factors like autophagy, cancer stem cell targeting, and baseline immune status significantly impact treatment outcomes.
Conclusions:
- The clinical success of oncolytic virus therapy hinges on a delicate balance of immune stimulation and suppression.
- Further research is needed to refine OV strategies, minimize adverse immune responses, and overcome immune tolerance for improved cancer treatment.
- Tailoring OV therapy based on individual patient and tumor factors is crucial for maximizing therapeutic benefit.
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