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Vaccines targeting self-antigens: mechanisms and efficacy-determining parameters.

Authors :
Saupe, Falk
Huijbers, Elisabeth J. M.
Hein, Tobias
Femel, Julia
Cedervall, Jessica
Olsson, Anna-Karin
Hellman, Lars
Source :
FASEB Journal; Aug2015, Vol. 29 Issue 8, p3253-3262, 10p
Publication Year :
2015

Abstract

We recently showed that it is possible to compromise tumor vessel function and, as a consequence, suppress growth of aggressive preclinical tumors by immunizing against the tumor vascular markers extra domain-A (ED-A) or -B (ED-B) of fibronectin, using a fusion protein consisting of the ED-A or ED-B peptide fused to bacterial thioredoxin. To address the mechanism behind fusion protein-induced immunization and the specific contribution of the different vaccine constituents to elicit an anti-self-antibody response, we immunized mice with modified or unmodified self-antigens, combined with different adjuvant components, and analyzed antibody responses by ELISA in sera. Several essential requirements to circumvent tolerance were identified: (1) a potent pattern recognition receptor agonist like an oligonucleotide containing unmethylated cytosine and guanine dinucleo-tides (CpG); (2) a depot adjuvant to keep the CpG at the site of injection; and (3) the presence of foreign sequences in the vaccine protein. Lack of either of these factors abolished the anti-self-response (P= 0.008). In mice genetically deficient for type IIFN signaling, there was a 60% reduction in the anti-self-response compared with wild-type (P= 0.011), demonstrating a key role of this pathway in CpG-induced circumvention of self-tolerance. Identification of these mechanistic requirements to generate a potent anti-self-immune response should significantly aid the design of efficient, specific, and safe therapeutic cancer vaccines. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
08926638
Volume :
29
Issue :
8
Database :
Complementary Index
Journal :
FASEB Journal
Publication Type :
Academic Journal
Accession number :
108765935
Full Text :
https://doi.org/10.1096/fj.15-271502