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Dextran Enhances the Lentiviral Transduction Efficiency of Murine and Human Primary NK Cells
Published on: January 15, 2018
Dendritic cells and natural killer cells: The road to a successful oncolytic virotherapy
Matin Ghasemi1, Laleh Abbasi2, Leila Ghanbari Naeini3
1Faculty of Medicine, Tonekabon Branch, Islamic Azad University, Tonekabon, Iran.
Abstract:
Every type of cancer tissue is theoretically more vulnerable to viral infection. This natural proclivity has been harnessed as a new anti-cancer therapy by employing oncolytic viruses (OVs) to selectively infect and destroy cancer cells while providing little or no harm with no toxicity to the host. Whereas the primary oncolytic capabilities of OVs initially sparked the greatest concern, the predominant focus of research is on the association between OVs and the host immune system. Numerous OVs are potent causal agents of class I MHC pathway-related chemicals, enabling early tumor/viral immune recognition and cytokine-mediated response. The modified OVs have been studied for their ability to bind to dendritic cells (DCs) by expressing growth factors, chemokines, cytokines, and defensins inside the viral genome. OVs, like reovirus, can directly infect DCs, causing them to release chemokines and cytokines that attract and excite natural killer (NK) cells. In addition, OVs can directly alter cancer cells' sensitivity to NK by altering the expression levels of NK cell activators and inhibitors on cancerous cells. Therefore, NK cells and DCs in modulating the therapeutic response should be considered when developing and improving future OV-based therapeutics, whether modified to express transgenes or used in combination with other drugs/immunotherapies. Concerning the close relationship between NK cells and DCs in the potential of OVs to kill tumor cells, we explore how DCs and NK cells in tumor microenvironment affect oncolytic virotherapy and summarize additional information about the interaction mentioned above in detail in this work.
Insights
Oncolytic viruses (OVs) are engineered to infect and destroy cancer cells. Research highlights their crucial interaction with the immune system, particularly dendritic cells (DCs) and natural killer (NK) cells, for enhanced anti-cancer therapy.
Area of Science:
- Immunology
- Virology
- Oncology
Background:
- Cancer cells are theoretically more susceptible to viral infections.
- Oncolytic viruses (OVs) are developed to selectively target and eliminate cancer cells with minimal host toxicity.
- Research increasingly focuses on the interplay between OVs and the host immune system.
Purpose of the Study:
- To investigate the role of dendritic cells (DCs) and natural killer (NK) cells in oncolytic virotherapy.
- To explore how OVs modulate the tumor microenvironment and immune responses.
- To summarize the interactions between OVs, DCs, and NK cells for improved therapeutic strategies.
Main Methods:
- Review of existing literature on OV mechanisms and immune interactions.
- Analysis of how OVs influence MHC class I pathways and immune recognition.
- Examination of OV modifications to enhance DC binding and activation of NK cells.
Main Results:
- OVs can induce immune recognition through MHC class I pathway modulation and cytokine release.
- Modified OVs can enhance DC interactions and attract NK cells.
- OVs alter cancer cell sensitivity to NK cell-mediated lysis.
Conclusions:
- DCs and NK cells are critical components in the efficacy of OV-based cancer therapies.
- Understanding the OV-DC-NK cell axis is essential for optimizing OV therapeutics.
- Future OV therapies should consider immune modulation strategies involving DCs and NK cells.
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