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A Protocol for Analyzing Hepatitis C Virus Replication
Published on: June 26, 2014
Testing a vaccine candidate against Hepatitis C virus designed by combinatorial optimization
Iker Malaina1,2, Luis Martinez3,4,5, David Salcines-Cuevas6
1Department of Mathematics, University of the Basque Country (UPV/EHU), 48080, Bilbao, Spain. iker.malaina@ehu.eus.
Abstract:
This paper presents a new procedure for vaccine design against highly variable viruses such as Hepatitis C. The procedure uses an optimization algorithm to design vaccines that maximize the coverage of epitopes across different virus variants. Weighted epitopes based on the success ratio of immunological assays are used to prioritize the selection of epitopes for vaccine design. The procedure was successfully applied to design DC vaccines loaded with two HCV peptides, STG and DYP, which were shown to be safe, immunogenic, and able to induce significant levels of anti-viral cytokines, peptide-specific cellular immune responses and IgG antibodies. The procedure could potentially be applied to other highly variable viruses that currently lack effective vaccines.
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