Scientific Reports (Nov 2020)

A novel Schmallenberg virus subunit vaccine candidate protects IFNAR-/- mice against virulent SBV challenge

  • Hani Boshra,
  • Gema Lorenzo,
  • Diego Charro,
  • Sandra Moreno,
  • Gabriel Soares Guerra,
  • Isbene Sanchez,
  • Joseba M. Garrido,
  • Marivi Geijo,
  • Alejandro Brun,
  • Nicola G. A. Abrescia

DOI
https://doi.org/10.1038/s41598-020-73424-2
Journal volume & issue
Vol. 10, no. 1
pp. 1 – 9

Abstract

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Abstract Schmallenberg virus (SBV), an arthropod-transmitted pathogenic bunyavirus, continues to be a threat to the European livestock industry, causing morbidity and mortality among young ruminant livestock. Here, we describe a novel SBV subunit vaccine, based on bacterially expressed SBV nucleoprotein (SBV-N) administered with a veterinary-grade Saponin adjuvant. When assayed in an IFNAR-/- mouse model, SBV-N with Saponin induced strong non-neutralizing broadly virus-reactive antibodies, decreased clinical signs, as well as significantly reduced viremia. Vaccination assays also suggest that this level of immune protection is cell mediated, as evidenced by the lack of neutralizing antibodies, as well as interferon-γ secretion observed in vitro. Therefore, based on these results, bacterially expressed SBV-N, co-administered with veterinary-grade Saponin adjuvant may serve as a promising economical alternative to current SBV vaccines, and warrant further evaluation in large ruminant animal models. Moreover, we propose that this strategy may be applicable to other bunyaviruses.