4.6 Article

Gypenoside Inhibits Bovine Viral Diarrhea Virus Replication by Interfering with Viral Attachment and Internalization and Activating Apoptosis of Infected Cells

Journal

VIRUSES-BASEL
Volume 13, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/v13091810

Keywords

bovine viral diarrhea virus; gypenoside; antiviral agents; apoptosis; tight junction protein

Categories

Funding

  1. National Key R&D Program of China [2017YFD0502204]
  2. Program for the Beijing Dairy Industry Innovation Team (Beijing, China)

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Gypenoside exhibits high anti-BVDV activity by interfering with viral attachment and internalization, subsequently inducing apoptosis of infected cells, contributing to the development of novel prophylactic and therapeutic strategies against BVDV infection.
Bovine viral diarrhea virus (BVDV) causes a severe threat to the cattle industry due to ineffective control measures. Gypenoside is the primary component of Gynostemma pentaphyllum, which has potential medicinal value and has been widely applied as a food additive and herbal supplement. However, little is known about the antiviral effects of gypenoside. The present study aimed to explore the antiviral activities of gypenoside against BVDV infection. The inhibitory activity of gypenoside against BVDV was assessed by using virus titration and performing Western blotting, quantitative reverse transcription PCR (RT-qPCR), and immunofluorescence assays in MDBK cells. We found that gypenoside exhibited high anti-BVDV activity by interfering with the viral attachment to and internalization in cells. The study showed that BVDV infection inhibits apoptosis of infected cells from escaping the innate defense of host cells. Our data further demonstrated that gypenoside inhibited BVDV infection by electively activating the apoptosis of BVDV-infected cells for execution, as evidenced by the regulation of the expression of the apoptosis-related protein, promotion of caspase-3 activation, and display of positive TUNEL staining; no toxicity was observed in non-infected cells. Collectively, the data identified that gypenoside exerts an anti-BVDV-infection role by inhibiting viral attachment and internalization and selectively purging virally infected cells. Therefore, our study will contribute to the development of a novel prophylactic and therapeutic strategy against BVDV infection.

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