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In Vivo Immunogenicity Screening of Tumor-Derived Extracellular Vesicles by Flow Cytometry of Splenic T Cells
Published on: September 23, 2021
Small extracellular vesicles carrying reovirus, tumor antigens, interferon-β, and damage-associated molecular
Naomi Shuwari1, Chieko Inoue1, Ikuho Ishigami1
1Laboratory of Biochemistry and Molecular Biology, Graduate School of Pharmaceutical Sciences, Osaka University, 1-6 Yamadaoka, Suita, Osaka 565-0871, Japan.
Abstract:
Small extracellular vesicles (SEV) have attracted much attention both as mediators of intercellular communication and as drug delivery systems. In addition, recent studies have shown that SEV containing virus components and virus particles are released from virus-infected cells. Oncolytic viruses, which efficiently kill tumor cells by tumor cell-specific replication, have been actively studied as novel anticancer agents in clinical and preclinical studies. However, it remains to be fully elucidated whether SEV released from oncolytic virus-infected cells are involved in the antitumor effects of oncolytic viruses. In this study, we examined the tumor cell killing efficiencies and innate immune responses following treatment with SEV released from oncolytic reovirus-infected tumor cells in vitro and in vivo. Reovirus-infected B16 cells secreted SEV associated with or containing reovirus particles (Reo-SEV) with a diameter of approximately 130 nm and a zeta potential of -17 mV, although death of reovirus-infected B16 cells was not observed. The secreted Reo-SEV also contained interferon (IFN)-β, tumor antigens, and damage-associated molecular patterns (DAMPs), including heat shock proteins (HSPs). Reo-SEV were secreted from the tumor tissues of reovirus-injected mice. Inhibition of the SEV secretion pathway using GW4869, which is a neutral sphingomyelinase inhibitor, resulted in significant reduction in the infectious titers of reovirus in the culture supernatants, suggesting that the cells released progeny virus via the SEV secretion pathway. Reo-SEV more efficiently killed mouse tumor cells and induced innate immune responses in mouse bone marrow-derived dendritic cells than reovirus. Reovirus and Reo-SEV mediated efficient and comparable levels of growth suppression of B16 subcutaneous tumors and induction of tumor infiltration of CD8+ T cells following intravenous administration. These results indicate that Reo-SEV are a promising oncolytic agent and that SEV are an effective delivery vehicle for oncolytic virus.
Insights
Small extracellular vesicles (SEVs) from reovirus-infected cells, termed Reo-SEV, show potent tumor cell killing and immune response induction. These SEVs represent a promising oncolytic agent and effective delivery vehicle for cancer therapy.
Area of Science:
- Oncology
- Virology
- Nanomedicine
Background:
- Small extracellular vesicles (SEVs) are key in intercellular communication and drug delivery.
- Oncolytic viruses show promise as anticancer agents.
- The role of SEVs from virus-infected cells in oncolysis is not fully understood.
Purpose of the Study:
- To investigate the antitumor potential of SEVs released from oncolytic reovirus-infected tumor cells.
- To evaluate the efficacy of these SEVs in triggering innate immune responses.
- To determine if SEVs serve as a delivery mechanism for oncolytic viruses.
Main Methods:
- Characterization of SEVs secreted from reovirus-infected B16 cells (Reo-SEV).
- Analysis of Reo-SEV contents, including viral particles, IFN-β, tumor antigens, and DAMPs.
- In vitro and in vivo assessment of Reo-SEV tumor cell killing efficiency and immune responses.
- Inhibition of SEV secretion pathway using GW4869 to study reovirus release.
Main Results:
- Reo-SEV were secreted from infected cells and tumor tissues, containing reovirus particles, IFN-β, tumor antigens, and DAMPs.
- Inhibition of SEV secretion reduced infectious reovirus titers, suggesting SEV involvement in virus release.
- Reo-SEV demonstrated enhanced tumor cell killing and induced stronger innate immune responses in dendritic cells compared to reovirus alone.
- Both reovirus and Reo-SEV effectively suppressed tumor growth and promoted CD8+ T cell infiltration in vivo.
Conclusions:
- SEVs released from oncolytic reovirus-infected cells (Reo-SEV) are potent mediators of antitumor effects.
- Reo-SEV exhibit enhanced oncolytic activity and immune-stimulating properties.
- SEVs are an effective delivery system for oncolytic viruses, highlighting their therapeutic potential in cancer treatment.
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