Abstract

The porcine reproductive and respiratory syndrome virus (PRRSV), an RNA virus inducing abortion in sows and respiratory disease in young pigs, is a leading infectious cause of economic losses in the swine industry. Modified live vaccines (MLVs) help in controlling the disease, but their efficacy is often compromised by the high genetic diversity of circulating viruses, leading to vaccine escape variants in the field. In this study, we hypothesized that a DNA prime with naked plasmids encoding PRRSV antigens containing conserved T-cell epitopes may improve the protection of MLV against a heterologous challenge. Plasmids were delivered with surface electroporation or needle-free jet injection and European strain-derived PRRSV antigens were targeted or not to the dendritic cell receptor XCR1. Compared to MLV-alone, the DNA-MLV prime- boost regimen slightly improved the IFNγ T-cell response, and substantially increased the antibody response against envelope motives and the nucleoprotein N. The XCR1-targeting of N significantly improved the anti-N specific antibody response. Despite this immuno-potentiation, the DNA-MLV regimen did not further decrease the serum viral load or the nasal viral shedding of the challenge strain over MLV-alone. Finally, the heterologous protection, achieved in absence of detectable effective neutralizing antibodies, was not correlated to the measured antibody or to the IFNγ T-cell response. Therefore, immune correlates of protection remain to be identified and represent an important gap of knowledge in PRRSV vaccinology. This study importantly shows that a naked DNA prime immuno-potentiates an MLV, more on the B than on the IFNγ T-cell response side, and has to be further improved to reach cross-protection.

Highlights

  • The Porcine Reproductive and Respiratory syndrome virus (PRRSV), a positive single strandedRNA enveloped virus of the Arteriviridae family, is responsible for high economical losses in the swine industry

  • Neutralizing Antibodies (NAbs) were quantified in sera on MARC-145 cells against the FL13b vaccine strain according to the Virus Neutralization Titer (VNT) method described in a previous paper [19]

  • pressure jet injection (PJ) has amagnitude slight positive on the IFNγby breadth suggesting that the prime-boost strategy has an immuno-potentiation effect, especially on the B-cell and enhances the anti-N and envelope IgG response magnitude over the ones induced by MLVarm FL13b-only, of the response

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Summary

A DNA Prime Immuno-Potentiates a Modified Live

Vaccine against the Porcine Reproductive and Respiratory Syndrome Virus but Does Not Improve. Cindy Bernelin-Cottet 1 , Céline Urien 1 , Maxence Fretaud 1 , Christelle Langevin 1,2 , Ivan Trus 3 , Luc Jouneau 1 , Fany Blanc 4 , Jean-Jacques Leplat 4 , Céline Barc 5 , Olivier Boulesteix 5 , Mickaël Riou 5 , Marilyn Dysart 6 , Sophie Mahé 7 , Elisabeth Studsrub 8 , Hans Nauwynck 3 , Nicolas Bertho 1,† , Olivier Bourry 7 and Isabelle Schwartz-Cornil 1, *. VIM, EMERG’IN-Plateforme d’Infectiologie Expérimentale IERP, INRA, Domaine de Vilvert, 78352 Jouy-en-Josas, France. Current address: BIOEPAR, Oniris, INRA, 44307 Nantes, France

Introduction
Material and Methods
Viruses
DNA Vectors
In Vivo Gene Transfer
Detection of pLuc Expression
Detection of pmCherry Expression
Detection of Inflammatory Cytokines in Pig Transfected Skin
Immunization of Pigs and Infectious Challenge
2.10. Nasal Swab and Serum Collections
2.11. Overlapping Peptides
2.12. IFNγ Detection by ELISPOTS
2.13. Detection of Anti-N IgG and Anti-Envelope IgG
2.15. Viral Detection by Specific qRT-PCR
2.16. Statistical and Correlation Analyses
Results
Methods
Transfection of skin cells
Antibody
Anti-N andIgG
Findings
Discussion
Full Text
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