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Article

Extracellular Vesicles Released by Enterovirus-Infected EndoC-βH1 Cells Mediate Non-Lytic Viral Spread

by
Eitan Netanyah
1,
Matteo Calafatti
1,
Jeanette Arvastsson
1,
Eduardo Cabrera-Rode
2,
Corrado M. Cilio
1,* and
Luis Sarmiento
1,*
1
Immunovirology Unit, Department of Clinical Sciences, Skåne University Hospital, Lund University, 221 85 Lund, Sweden
2
Department of Immunology, National Institute of Endocrinology, Vedado 10400, Havana, Cuba
*
Authors to whom correspondence should be addressed.
Microorganisms 2020, 8(11), 1753; https://doi.org/10.3390/microorganisms8111753
Submission received: 9 October 2020 / Revised: 31 October 2020 / Accepted: 6 November 2020 / Published: 8 November 2020
(This article belongs to the Special Issue Enterovirus and Type 1 Diabetes)

Abstract

While human enteroviruses are generally regarded as a lytic virus, and persistent non-cytolytic enterovirus infection in pancreatic beta cells has been suspected of playing a role in type 1 diabetes pathogenesis. However, it is still unclear how enteroviruses could exit the pancreatic beta cell in a non-lytic manner. This study aimed to investigate the role of beta cell-derived extracellular vesicles (EVs) in the non-lytic enteroviral spread and infection. Size-exclusion chromatography and antibody-based immunoaffinity purification were used to isolate EVs from echovirus 16-infected human beta EndoC-βH1 cells. EVs were then characterized using transmission electron microscopy and Multiplex Bead-Based Flow Cytometry Assay. Virus production and release were quantified by 50% cell culture infectious dose (CCID50) assay and qRT-PCR. Our results showed that EVs from echovirus 16-infected EndoC-βH1 cells harbor infectious viruses and promote their spread during the pre-lytic phase of infection. Furthermore, the EVs-mediated infection was not inhibited by virus-specific neutralizing antibodies. In summary, this study demonstrated that enteroviruses could exit beta cells non-lytically within infectious EVs, thereby thwarting the access of neutralizing antibodies to viral particles. These data suggest that enterovirus transmission through EVs may contribute to viral dissemination and immune evasion in persistently infected beta cells.
Keywords: enterovirus; extracellular vesicles; exosomes; beta cells; type 1 diabetes; virus spread enterovirus; extracellular vesicles; exosomes; beta cells; type 1 diabetes; virus spread

Share and Cite

MDPI and ACS Style

Netanyah, E.; Calafatti, M.; Arvastsson, J.; Cabrera-Rode, E.; Cilio, C.M.; Sarmiento, L. Extracellular Vesicles Released by Enterovirus-Infected EndoC-βH1 Cells Mediate Non-Lytic Viral Spread. Microorganisms 2020, 8, 1753. https://doi.org/10.3390/microorganisms8111753

AMA Style

Netanyah E, Calafatti M, Arvastsson J, Cabrera-Rode E, Cilio CM, Sarmiento L. Extracellular Vesicles Released by Enterovirus-Infected EndoC-βH1 Cells Mediate Non-Lytic Viral Spread. Microorganisms. 2020; 8(11):1753. https://doi.org/10.3390/microorganisms8111753

Chicago/Turabian Style

Netanyah, Eitan, Matteo Calafatti, Jeanette Arvastsson, Eduardo Cabrera-Rode, Corrado M. Cilio, and Luis Sarmiento. 2020. "Extracellular Vesicles Released by Enterovirus-Infected EndoC-βH1 Cells Mediate Non-Lytic Viral Spread" Microorganisms 8, no. 11: 1753. https://doi.org/10.3390/microorganisms8111753

APA Style

Netanyah, E., Calafatti, M., Arvastsson, J., Cabrera-Rode, E., Cilio, C. M., & Sarmiento, L. (2020). Extracellular Vesicles Released by Enterovirus-Infected EndoC-βH1 Cells Mediate Non-Lytic Viral Spread. Microorganisms, 8(11), 1753. https://doi.org/10.3390/microorganisms8111753

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