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A DNA vaccine candidate provides protection against Rift Valley Fever virus in sheep under natural field conditions

Frontiers in cellular and infection microbiology. 2023-06; 
Moufid Mhamadi; George (Giorgi) Babuadze; Aminata Badji; Marie-Edith Nepveu-Traversy; El Hadji Ndiaye; Alioune Gaye; Mignane Ndiaye; Moundhir Mhamadi; Frank William Mendy; Cheikh Talibouya Tour ; Idrissa Dieng; Moussa Dia; Ndeye Sakha Bob; Marc-Antoine de La Vega; Ousmane Faye; Amadou Alpha Sall; Mawlouth Diallo; Gary Kobinger; Oumar Faye; Hugues Fausther-Bovendo
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摘要

Rift Valley Fever virus (RVFV) is a mosquito-borne zoonotic pathogen, that causes significant morbidity and mortality in livestock, including high abortion rates in pregnant animals and elevated case fatality in neonates, representing a major threat to both animal and human health. Vaccination is the most effective countermeasure to reduce RVFV s impact. In this study, we designed a veterinary DNA vaccine encoding a consensus RVFV glycoprotein precursor (GPC), optimized for expression in sheep. The construct was evaluated for immunogenicity in mice and sheep and for protective efficacy in sheep raised under natural field conditions in Senegal, West Africa. The vaccine induced robust humoral responses characteri... More

关键词

RVFV, DNA vaccine, electroporation (EP), sheep, field study, neutralizing antibodies (NAbs), glycoprotein precursor, veterinary vaccine