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Shaping viral immunotherapy towards cancer-targeted immunological cell death

Title: Shaping viral immunotherapy towards cancer-targeted immunological cell death
Authors: Isaeva, Anastasia S.; Trujillo Yeriomenko, Adriana D.; Idota, Esther; Volodina, Sofya I.; Porozova, Natalia O.; Bezsonov, Evgeny E.; Malogolovkin, Alexander S.
Source: Frontiers in Oncology ; volume 15 ; ISSN 2234-943X
Publisher Information: Frontiers Media SA
Publication Year: 2025
Collection: Frontiers (Publisher - via CrossRef)
Description: Background Oncolytic viruses (OVs) have the ability to efficiently enter, replicate within, and destroy cancer cells. This capacity to selectively target cancer cells while inducing long-term anti-tumor immune responses, makes OVs a promising tool for next-generation cancer therapy. Immunogenic cell death (ICD) induced by OVs initiates the cancer-immunity cycle (CIC) and plays a critical role in activating and reshaping anti-cancer immunity. Genetic engineering, including arming OVs with cancer cell-specific binders and immunostimulatory molecules, further enhances immune responses at various stages of the CIC, improving the specificity and safety of virotherapy. The aim of this study is to update current knowledge in immunotherapy using OVs and to highlight the remarkable plasticity of viruses in shaping the tumor immune microenvironment, which may facilitate anti-cancer treatment through various approaches. Methodology Research articles, meta-analyses, and systematic reviews were retrieved from PubMed, using the search terms (‘Oncolytics’ OR ‘Immunotherapy’ OR ‘Virotherapy’ OR ‘Viral vector’) AND ‘gene therapy’, without language restrictions. Results In this review, we discuss current strategies aimed at increasing the tumor specificity of OVs and improving their safety. We summarize and functionally categorize different biochemical approaches, with a focus on virus engineering and advancements in immunotherapy. Transduction targeting methods (e.g., xenotype switching, pseudotyping, cell receptor targeting) and non-transduction modifications (e.g., miRNA, optogenetics, transcriptional targeting) are critically reviewed. We also examine the mechanisms of ICD and viral modifications that contribute to efficient cancer cell death and modulation of cancer-specific immunity. Finally, we provide an outlook on promising future oncolytics and approaches with potential therapeutic benefit for the next generation of cancer immunotherapy. Conclusion Immunogenic cell death induced by oncolytic viruses is a key mediator of ...
Document Type: article in journal/newspaper
Language: unknown
DOI: 10.3389/fonc.2025.1540397
DOI: 10.3389/fonc.2025.1540397/full
Availability: https://doi.org/10.3389/fonc.2025.1540397; https://www.frontiersin.org/articles/10.3389/fonc.2025.1540397/full
Rights: https://creativecommons.org/licenses/by/4.0/
Accession Number: edsbas.90B9D744
Database: BASE