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In vivo antigen stability affects DNA vaccine immunogenicity.

Adriaan D Bins ,
Monika C Wolkers ,
Marly D van den Boom ,
John B A G Haanen ,
Ton N M Schumacher

Abstract

The factors that determine the immunogenicity of Ags encoded by viral vaccines or DNA vaccines in vivo are largely unknown. Depending on whether T cell induction occurs via direct presentation of vaccine-encoded epitopes or via one of the different proposed pathways for Ag cross-presentation, the effect of intracellular Ag stability on immunogenicity may possibly vary. However, the influence of Ag stability on CD8(+) T cell induction has not been addressed in clinically relevant vaccine models, nor has the accumulation of vaccine-encoded Ags been monitored in vivo. In this study, we describe the relationship between in vivo Ag stability and immunogenicity of DNA vaccine-encoded Ags. We show that in vivo accumulation of DNA vaccine-encoded Ags is required for the efficient induction of CD8(+) T cell responses. These data suggest that many of the currently used transgene designs in DNA vaccination trials may be suboptimal, and that one should either use pathogen-derived or tumor-associated Ags that are intrinsically stable, or should increase the stability of vaccine-encoded Ags by genetic engineering.

More about this publication

Journal of immunology (Baltimore, Md. : 1950)

Volume 179
Issue nr. 4
Pages 2126-33
Publication date 15-08-2007

Full text links

Publisher website (DOI) 10.4049/jimmunol.179.4.2126
Europe PubMed Central 17675471
Pubmed 17675471

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