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Journal article

Modulation of vaccine-induced immune responses to hepatitis C virus in rhesus macaques by altering priming before adenovirus boosting.

Abstract:
BACKGROUND: Preventive and therapeutic vaccine strategies aimed at controlling hepatitis C virus (HCV) infection should mimic the immune responses observed in patients who control or clear HCV, specifically T helper (Th) type 1 and CD8+ cell responses to multiple antigens, including nonstructural protein (NS) 3. Given the experience with human immunodeficiency virus, the best candidates for this are based on DNA prime, pox, or adenovirus boost regimens. METHODS: In rhesus macaques, we compared NS3-expressing DNA prime and adenovirus boost strategy with 2 alternative priming approaches aimed at modifying Th1 and CD8+ responses: DNA adjuvanted with interleukin (IL)-2- and -12-encoding plasmids or Semliki Forest virus (SFV). RESULTS: All prime-boost regimens elicited NS3-specific B and T cell responses in rhesus macaques, including CD8+ responses. SFV priming induced higher lymphoproliferation and longer Th1 memory responses. The use of IL-2- and IL-12-expressing vectors resulted in reduced Th2 and antibody responses, which led to increased Th1 skewing but not to an increase in the magnitude of the IFN- gamma and CD8+ responses. CONCLUSIONS: All strategies induced Th1 cellular responses to HCV NS3, with fine modulations depending on the different priming approaches. When they are developed for more HCV antigens, these strategies could be beneficial in therapeutic vaccine approaches.
Publication status:
Published

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Publisher copy:
10.1086/432517

Authors


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Institution:
University of Oxford
Division:
MSD
Department:
NDM
Role:
Author


Journal:
Journal of infectious diseases More from this journal
Volume:
192
Issue:
5
Pages:
920-929
Publication date:
2005-09-01
DOI:
EISSN:
1537-6613
ISSN:
0022-1899


Language:
English
Keywords:
Pubs id:
pubs:111600
UUID:
uuid:580e671b-bb49-4780-aa6c-f229b22da426
Local pid:
pubs:111600
Source identifiers:
111600
Deposit date:
2012-12-19

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