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Influenza viral vectors expressing the Brucella OMP16 or L7/L12 proteins as vaccines against B. abortus infection.
- Source :
-
Virology journal [Virol J] 2014 Apr 10; Vol. 11, pp. 69. Date of Electronic Publication: 2014 Apr 10. - Publication Year :
- 2014
-
Abstract
- Background: We generated novel, effective candidate vaccine against Brucella abortus based on recombinant influenza viruses expressing the Brucella ribosomal protein L7/L12 or outer membrane protein (Omp)-16 from the NS1 open reading frame. The main purpose of this work was to evaluate the safety, immunogenicity and protectiveness of vaccine candidate in laboratory animals.<br />Methods and Results: Four recombinant influenza A viral constructs of the subtypes Н5N1 or H1N1 expressing the Brucella proteins L7/L12 or Omp16 were obtained by a reverse genetics method: Flu-NS1-124-L7/L12-H5N1, Flu-NS1-124-Omp16-H5N1, Flu-NS1-124-L7/L12-H1N1 and Flu-NS1-124-Omp16-H1N1. Despite of substantial modification of NS1 gene, all constructs replicated well and were retain their Brucella inserts over five passages in embryonated chicken eggs (CE). Administration of the mono- or bivalent vaccine formulation via prime-boost intranasal (i.n.), conjunctival (c.) or subcutaneous (s.c.) immunization was safe in mice; no deaths, body weight loss or pathomorphological changes were observed over 56 days. Moreover, guinea pigs vaccinated i.n. with vaccine vectors did not shed the vaccine viruses through their upper respiratory tract after the prime and booster vaccination. These findings confirmed the replication-deficient phenotype of viral vectors. The highest antibody response to Brucella antigen was obtained with constructs expressing L7/L12 (ELISA, GMT 242.5-735.0); whereas the highest T-cell immune response- with construct expressing Omp16 (ELISPOT, 337 ± 52-651 ± 45 spots/4×105cells), which was comparable (P > 0.05) to the response induced by the commercial vaccine B. abortus 19. Interestingly, c. immunization appeared to be optimal for eliciting T-cell immune response. In guinea pigs, the highest protective efficacy after challenge with B. abortus 544 was achieved with Omp16 expressing constructs in both monovalent or bivalent vaccine formulations; protective efficacy was comparable to those induced by a commercial live B. abortus 19 vaccine.<br />Conclusion: Thus, influenza vectors expressing Brucella protective antigens can be developed as novel influenza vectored vaccine against B. abortus infection.
- Subjects :
- Animals
Antibodies, Bacterial blood
Antigens, Bacterial genetics
Bacterial Outer Membrane Proteins genetics
Bacterial Outer Membrane Proteins immunology
Brucella Vaccine administration & dosage
Brucella Vaccine genetics
Brucella abortus genetics
Brucellosis immunology
Disease Models, Animal
Genetic Vectors
Genomic Instability
Guinea Pigs
Mice
Ribosomal Proteins genetics
Ribosomal Proteins immunology
Survival Analysis
T-Lymphocytes immunology
Vaccination methods
Vaccines, Synthetic administration & dosage
Vaccines, Synthetic genetics
Vaccines, Synthetic immunology
Virus Replication
Antigens, Bacterial immunology
Brucella Vaccine immunology
Brucella abortus immunology
Brucellosis prevention & control
Drug Carriers
Influenza A Virus, H1N1 Subtype genetics
Influenza A Virus, H5N1 Subtype genetics
Subjects
Details
- Language :
- English
- ISSN :
- 1743-422X
- Volume :
- 11
- Database :
- MEDLINE
- Journal :
- Virology journal
- Publication Type :
- Academic Journal
- Accession number :
- 24716528
- Full Text :
- https://doi.org/10.1186/1743-422X-11-69