From genome to vaccine—new immunoinformatics tools for vaccine design
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In silico proteomic characterization of human epidermal growth factor receptor 2 (HER-2) for the mapping of high affinity antigenic determinants against breast cancerIn vitro and in vivo studies for assessing the immune response and protection-inducing ability conferred by Fasciola hepatica-derived synthetic peptides containing B- and T-cell epitopesExploring the immunome: A brave new world for human vaccine development.A conserved E7-derived cytotoxic T lymphocyte epitope expressed on human papillomavirus 16-transformed HLA-A2+ epithelial cancers.Immunogenicity to biologics: mechanisms, prediction and reduction.T-cell epitope prediction and immune complex simulation using molecular dynamics: state of the art and persisting challenges.Plasmodium immunomics.A consensus epitope prediction approach identifies the breadth of murine T(CD8+)-cell responses to vaccinia virus.Emerging vaccine informatics.Characterization of a branched lipopeptide candidate vaccine against influenza A/Puerto Rico 8/34 which is recognized by human B and T-cell immune responses.Time for T? Immunoinformatics addresses vaccine design for neglected tropical and emerging infectious diseasesAdvances in FIV vaccine technology.Role of T-cell epitope-based vaccine in prophylactic and therapeutic applications.Immunoinformatics and modeling perspective of T cell epitope-based cancer immunotherapy: a holistic picture.Innovative bioinformatic approaches for developing peptide-based vaccines against hypervariable viruses.Challenges and approaches for the development of safer immunomodulatory biologics.In silico-accelerated identification of conserved and immunogenic variola/vaccinia T-cell epitopes.Computational prediction of immunodominant antigenic regions & potential protective epitopes for dengue vaccination.Immunoinformatics and its relevance to understanding human immune disease.An integrated approach to epitope analysis II: A system for proteomic-scale prediction of immunological characteristics.TepiTool: A Pipeline for Computational Prediction of T Cell Epitope Candidates.Molecular determinants of major histocompatibility complex class I complex stability: shaping antigenic features through short and long range electrostatic interactions.Tools for Vaccine Design: Prediction and Validation of Highly Immunogenic and Conserved Class II Epitopes and Development of Epitope-Driven Vaccines
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From genome to vaccine—new immunoinformatics tools for vaccine design
description
im Dezember 2004 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в грудні 2004
@uk
name
From genome to vaccine—new immunoinformatics tools for vaccine design
@en
From genome to vaccine—new immunoinformatics tools for vaccine design
@nl
type
label
From genome to vaccine—new immunoinformatics tools for vaccine design
@en
From genome to vaccine—new immunoinformatics tools for vaccine design
@nl
prefLabel
From genome to vaccine—new immunoinformatics tools for vaccine design
@en
From genome to vaccine—new immunoinformatics tools for vaccine design
@nl
P1433
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From genome to vaccine—new immunoinformatics tools for vaccine design
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Jay A. Berzofsky
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P356
10.1016/J.YMETH.2004.06.004
P577
2004-12-01T00:00:00Z