Differential Immunogenicity of Various Heterologous Prime-Boost Vaccine Regimens Using DNA and Viral Vectors in Healthy Volunteers
- 1 January 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in The Journal of Immunology
- Vol. 174 (1) , 449-455
- https://doi.org/10.4049/jimmunol.174.1.449
Abstract
Heterologous prime-boost vaccination has been shown to be an efficient way of inducing T cell responses in animals and in humans. We have used three vaccine vectors, naked DNA, modified vaccinia virus Ankara (MVA), and attenuated fowlpox strain, FP9, for prime-boost vaccination approaches against Plasmodium falciparum malaria in humans. In this study, we characterize, using two types of ELISPOT assays and FACS analysis, cell-mediated immune responses induced by different prime-boost combinations where all vectors encode a multiepitope string fused to the pre-erythrocytic Ag thrombospondin-related adhesion protein. We show that these different vectors need to be used in a specific order for an optimal ex vivo IFN-γ response. From the different combinations, DNA priming followed by MVA boosting and FP9 priming followed by MVA boosting were most immunogenic and in both cases the IFN-γ response was of broad specificity and cross-reactive against two P. falciparum strains (3D7 and T9/96). Immunization with all three vectors showed no improvement over optimal two vector regimes. Strong ex vivo IFN-γ responses peaked 1 wk after the booster dose, but cultured ELISPOT assays revealed longer-lasting T cell memory responses for at least 6 mo. In the DNA-primed vaccinees the IFN-γ response was mainly due to CD4+ T cells, whereas in the FP9-primed vaccinees it was mainly due to CD4-dependent CD8+ T cells. This difference may be of importance for the protective efficacy of these vaccination approaches against various diseases.Keywords
This publication has 24 references indexed in Scilit:
- Comparison of the genome sequence of FP9, an attenuated, tissue culture-adapted European strain of Fowlpox virus, with those of virulent American and European virusesJournal of General Virology, 2004
- Poxviruses as vaccine vectorsComparative Immunology, Microbiology and Infectious Diseases, 2003
- Similarities and differences in CD4+ and CD8+ effector and memory T cell generationNature Immunology, 2003
- Safety of DNA and modified vaccinia virus Ankara vaccines against liver-stage P. falciparum malaria in non-immune volunteersVaccine, 2003
- A Role for CD40 Expression on CD8 + T Cells in the Generation of CD8 + T Cell MemoryScience, 2002
- Eventual AIDS vaccine failure in a rhesus monkey by viral escape from cytotoxic T lymphocytesNature, 2002
- Multistage Multiantigen Heterologous Prime Boost Vaccine forPlasmodium knowlesiMalaria Provides Partial Protection in Rhesus MacaquesInfection and Immunity, 2001
- Control of a Mucosal Challenge and Prevention of AIDS by a Multiprotein DNA/MVA VaccineScience, 2001
- The Complete Genomic Sequence of the Modified Vaccinia Ankara Strain: Comparison with Other OrthopoxvirusesVirology, 1998
- Heterologous Protection Against Influenza by Injection of DNA Encoding a Viral ProteinScience, 1993