The antibody response induced FMDV vaccines in sheep correlates with early transcriptomic responses in blood

Author:

Jouneau LucORCID,Lefebvre David J.,Costa Fleur,Romey Aurore,Blaise-Boisseau Sandra,Relmy Anthony,Jaszczyszyn Yan,Dard-Dascot CloeliaORCID,Déjean Sébastien,Versillé Nicolas,Guitton Edouard,Hudelet Pascal,Curet Marianne,De Clercq KrisORCID,Bakkali-Kassimi Labib,Zientara Stéphan,Klonjkowski Bernard,Schwartz-Cornil IsabelleORCID

Abstract

AbstractFoot and mouth disease (FMD) is a highly contagious viral disease with high economic impact, representing a major threat for cloven-hooved mammals worldwide. Vaccines based on adjuvanted inactivated virus (iFMDV) induce effective protective immunity implicating antibody (Ab) responses. To reduce the biosafety constraints of the manufacturing process, a non-replicative human adenovirus type 5 vector encoding FMDV antigens (Ad5-FMDV) has been developed. Here we compared the immunogenicity of iFMDV and Ad5-FMDV with and without the ISA206VG emulsion-type adjuvant in sheep. Contrasted Ab responses were obtained: iFMDV induced the highest Ab levels, Ad5-FMDV the lowest ones, and ISA206VG increased the Ad5-FMDV-induced Ab responses to protective levels. Each vaccine generated heterogeneous Ab responses, with high and low responders, the latter being considered as obstacles to vaccine effectiveness. A transcriptomic study on total blood responses at 24 h post-vaccination revealed several blood gene module activities correlating with long-term Ab responses. Downmodulation of T cell modules’ activities correlated with high responses to iFMDV and to Ad5-FMDV+ISA206VG vaccines as also found in other systems vaccinology studies in humans and sheep. The impact of cell cycle activity depended on the vaccine types, as it positively correlated with higher responses to iFMDV but negatively to non-adjuvanted Ad5-FMDV. Finally an elevated B cell activity at 24 h correlated with high Ab responses to the Ad5-FMDV+ISA206VG vaccine. This study provides insights into the early mechanisms driving the Ab response induced by different vaccine regimens including Ad5 vectors and points to T cell modules as early biomarker candidates of different vaccine-type efficacy across species.

Funder

Agence Nationale de la Recherche

Belgian Federal Public Service for Health, Food Chain Safety and Environment under contract number RI14/2-26

Publisher

Springer Science and Business Media LLC

Subject

Pharmacology (medical),Infectious Diseases,Pharmacology,Immunology

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