Construction of eGFP-Tagged Senecavirus A for Facilitating Virus Neutralization Test and Antiviral Assay

Senecavirus A (SVA), also known as Seneca Valley virus, is an emerging virus that causes vesicular disease in pigs. This virus belongs to the genus <i>Senecavirus</i> in the family <i>Picornaviridae</i>. The SVA CH-LX-01-2016 was isolated from Guangdong Province of China in 2...

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Bibliographic Details
Main Authors: Fuxiao Liu, Yilan Huang, Qianqian Wang, Hu Shan
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Viruses
Subjects:
Online Access:https://www.mdpi.com/1999-4915/12/3/283
Description
Summary:Senecavirus A (SVA), also known as Seneca Valley virus, is an emerging virus that causes vesicular disease in pigs. This virus belongs to the genus <i>Senecavirus</i> in the family <i>Picornaviridae</i>. The SVA CH-LX-01-2016 was isolated from Guangdong Province of China in 2016. In this study, a recombinant SVA CH-LX-01-2016 was constructed using reverse genetics, and proven to be able to express efficiently an enhanced green fluorescent protein (eGFP) in vitro. This eGFP-tagged recombinant SVA (rSVA-eGFP) exhibited a high capacity for viral replication. Its fluorescence-tracked characteristics greatly facilitated both virus neutralization test (VNT) and antiviral assay. The rSVA-eGFP-based VNT was used to detect eight porcine serum samples, out of which four were determined to be neutralization titer-positive. Subsequently, two antiviral drugs, ribavirin and apigenin, were assayed for evaluating both effects against the rSVA-eGFP in vitro. The result showed that only the ribavirin exhibited an anti-SVA activity.
ISSN:1999-4915