Title | Immunoinformatics [electronic resource] / edited by Rajat K. De, Namrata Tomar |
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Imprint | New York, NY : Springer New York : Imprint: Humana Press, 2014 |
Edition | 2nd ed. 2014 |
Connect to | http://dx.doi.org/10.1007/978-1-4939-1115-8 |
Descript | XIX, 586 p. 140 illus., 114 illus. in color. online resource |
A Brief Outline of the Immune System -- Crosstalk Between the Metabolic and Immune Systems -- Immunoinformatics: A Brief Review -- Immunoinformatics of the V, C and G Domains: IMGT® Definitive System for IG, TR and IgSF, MH and MhSF -- IMGT/HLA and the Immuno Polymorphism Database -- Databases for T-Cell Epitopes -- Databases for B-Cell Epitopes -- Antigen-Antibody Interaction Database (AgAbDb): A Compendium of Antigen-Antibody Interactions -- Allergen Databases -- Prediction of Conformational B-Cell Epitopes -- Computational Prediction of B Cell Epitopes from Antigen Sequences -- Machine Learning Based Methods for Prediction of Linear B-Cell Epitopes -- Mimotope-Based Prediction of B-Cell Epitopes -- Hybrid Methods for B-Cell Epitope Prediction: Approaches to the Development and Utilization of Computational Tools for Practical Applications -- Building Hybrid Classifiers for B-Cell Epitopes Prediction -- Multiplex Peptide-Based B-Cell Epitope Mapping -- Classification of Human Leukocyte Antigen (HLA) Super types -- Customized Predictions of Peptide-MHC Binding and T-Cell Epitopes Using EPIMHC -- T-Cell Epitope Prediction Methods: An Overview -- Computational Antigenic Epitope Prediction by Calculating Electrostatic Desolvation Penalties of Protein Surfaces -- In Silico Prediction of Allergenic Proteins -- Prediction of Virulence Factors Using Bioinformatics Approaches -- A Systems Biology Approach to Study Systemic Inflammation -- Procedures for Mucosal Immunization and Analyses of Cellular Immune Response to Candidate HIV Vaccines in Murine and Nonhuman Primate Models -- Immunoinformatics and Systems Biology in Personalized Medicine -- The Role of Small RNAs in Vaccination -- Structure-Based Clustering of Major Histocompatibility Complex (MHC) Proteins for Broad-Based T-Cell Vaccine Design -- Immunoinformatics, Molecular Modeling and Cancer Vaccines -- Investigating Host Pathogen Behavior and Their Interaction Using Genome-Scale Metabolic Network Models -- Mathematical Models of HIV Replication and Pathogenesis