Enhanced production of human influenza virus in PBS-12SF cells with a reduced interferon response

4Citations
Citations of this article
16Readers
Mendeley users who have this article in their library.

Abstract

Influenza is one of the most important infectious diseases in humans. The best way to prevent severe illness caused by influenza infection is vaccination. Cell culture-derived influenza vaccines are being considered in addition to the widely used egg-based system in order to support the increasing seasonal demand and to be prepared in case of a pandemic. Cell culture based systems offer increased safety, capacity, and flexibility with reduced downstream processing relative to embryonated eggs. We have previously reported a chick embryo cell line, termed PBS-12SF, that supports replication of human and avian influenza A viruses to high titers (>107 PFU/ml) without the need for exogenous proteases or serum proteins. Viral infections in cells are limited by the Interferon (IFN) response typified by production of type I IFNs that bind to the IFNa/b receptor and activate an antiviral state. In this study, we investigated how neutralizing the interferon (IFN) response in PBS-12SF cells, via shRNA-mediated knock-down of IFNAR1 mRNA expression, affects influenza virus production. We were successful in knocking down ~90% of IFNAR1 protein expression by this method, resulting in a significant decrease in the response to recombinant chIFNa stimulation in PBS-12SF cells as shown by a reduction in expression of interferon-responsive genes when compared to control cells. Additionally; IFNAR1-knock-down cells displayed enhanced viral HA production and released more virus into cell culture supernatants than parental PBS-12SF cells.

Cite

CITATION STYLE

APA

Carvajal-Yepes, M., Sporer, K. R. B., Carter, J. L., Colvin, C. J., & Coussens, P. M. (2015). Enhanced production of human influenza virus in PBS-12SF cells with a reduced interferon response. Human Vaccines and Immunotherapeutics, 11(9), 2296–2304. https://doi.org/10.1080/21645515.2015.1016677

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free