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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Flaviviruses in AntiTumor Therapy
Alina S Nazarenko1, Mikhail F Vorovitch1,2, Yulia K Biryukova1
1Laboratory of Tick-Borne Encephalitis and Other Viral Encephalitides, Chumakov Federal Scientific Center for Research and Development of Immune-and-Biological Products of Russian Academy of Sciences, Moscow 108819, Russia.
Abstract:
Oncolytic viruses offer a promising approach to tumor treatment. These viruses not only have a direct lytic effect on tumor cells but can also modify the tumor microenvironment and activate antitumor immunity. Due to their high pathogenicity, flaviviruses have often been overlooked as potential antitumor agents. However, with recent advancements in genetic engineering techniques, an extensive history with vaccine strains, and the development of new attenuated vaccine strains, there has been a renewed interest in the Flavivirus genus. Flaviviruses can be genetically modified to express transgenes at acceptable levels, and the stability of such constructs has been greatly improving over the years. The key advantages of flaviviruses include their reproduction cycle occurring entirely within the cytoplasm (avoiding genome integration) and their ability to cross the blood-brain barrier, facilitating the systemic delivery of oncolytics against brain tumors. So far, the direct lytic effects and immunomodulatory activities of many flaviviruses have been widely studied in experimental animal models across various types of tumors. In this review, we delve into the findings of these studies and contemplate the promising potential of flaviviruses in oncolytic therapies.
Insights
Flaviviruses, once overlooked due to pathogenicity, are now promising oncolytic viruses for cancer therapy. Genetic engineering advances enable their use in treating various tumors, including brain cancers.
Area of Science:
- Virology
- Oncology
- Immunology
Background:
- Oncolytic viruses are a promising cancer treatment modality.
- Flaviviruses, known for pathogenicity, were previously overlooked for antitumor applications.
- Recent genetic engineering advances and attenuated strains have renewed interest in flaviviruses.
Purpose of the Study:
- To review the potential of flaviviruses as oncolytic viruses.
- To explore their direct lytic effects and immunomodulatory activities.
- To discuss their application in treating various tumors, including brain tumors.
Main Methods:
- Review of experimental animal models studying flavivirus oncolytic activity.
- Analysis of genetic engineering techniques for flavivirus modification.
- Evaluation of flavivirus properties relevant to oncolytic therapy.
Main Results:
- Flaviviruses can be genetically engineered to express transgenes effectively.
- Their cytoplasmic replication avoids genome integration, and they can cross the blood-brain barrier.
- Studies show direct tumor lysis and immunomodulatory effects in preclinical models.
Conclusions:
- Flaviviruses show significant promise as oncolytic agents.
- Their unique properties facilitate systemic delivery and brain tumor targeting.
- Further research into flavivirus-based oncolytic therapies is warranted.
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