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Peptide Antibodies

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Cover of 'Peptide Antibodies'

Table of Contents

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    Book Overview
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    Chapter 1 Peptide Antibodies: Past, Present, and Future
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    Chapter 2 The Structure of Natural and Recombinant Antibodies
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    Chapter 3 Prediction of Antigenic B and T Cell Epitopes via Energy Decomposition Analysis: Description of the Web-Based Prediction Tool BEPPE
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    Chapter 4 Prediction of Antibody Epitopes
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    Chapter 5 Fmoc Solid-Phase Peptide Synthesis
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    Chapter 6 Peptide-Carrier Conjugation
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    Chapter 7 Solid-Phase Peptide-Carrier Conjugation
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    Chapter 8 Analysis of Peptides and Conjugates by Amino Acid Analysis.
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    Chapter 9 Characterization of Synthetic Peptides by Mass Spectrometry.
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    Chapter 10 Interpretation of Tandem Mass Spectrometry (MSMS) Spectra for Peptide Analysis
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    Chapter 11 Polyclonal Peptide Antisera
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    Chapter 12 Production and Screening of Monoclonal Peptide Antibodies
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    Chapter 13 Production of Epitope-Specific Antibodies by Immunization with Synthetic Epitope Peptide Formulated with CpG-DNA-Liposome Complex Without Carriers
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    Chapter 14 Thioredoxin-Displayed Multipeptide Immunogens
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    Chapter 15 The Purification of Natural and Recombinant Peptide Antibodies by Affinity Chromatographic Strategies
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    Chapter 16 Isolation of Camelid Single-Domain Antibodies Against Native Proteins Using Recombinant Multivalent Peptide Ligands.
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    Chapter 17 Generation of TCR-Like Antibodies Using Phage Display
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    Chapter 18 Structural Characterization of Peptide Antibodies
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    Chapter 19 Automated High-Throughput Mapping of Linear B-Cell Epitopes Using a Statistical Analysis of High-Density Peptide Microarray Data
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    Chapter 20 Characterization of Peptide Antibodies by Epitope Mapping Using Resin-Bound and Soluble Peptides
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    Chapter 21 Screening and Characterization of Linear B-Cell Epitopes by Biotinylated Peptide Libraries
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    Chapter 22 Bead-Based Peptide Arrays for Profiling the Specificity of Modification State-Specific Antibodies
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    Chapter 23 Surface Plasmon Resonance Method to Evaluate Anti-citrullinated Protein/Peptide Antibody Affinity to Citrullinated Peptides
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    Chapter 24 Specificity Analysis of Histone Modification-Specific Antibodies or Reading Domains on Histone Peptide Arrays.
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    Chapter 25 Prion-Specific Antibodies Produced in Wild-Type Mice.
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    Chapter 26 Immunoblotting with Peptide Antibodies: Differential Immunoreactivities Caused by Certain Amino Acid Substitutions in a Short Peptide and Possible Effects of Differential Refolding of the Peptide on a Nitrocellulose or PVDF Membrane
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    Chapter 27 Immunocytochemical and Immunohistochemical Staining with Peptide Antibodies
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    Chapter 28 Designing B-Cell Epitopes for Immunotherapy and Subunit Vaccines
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    Chapter 29 Enterovirus-Specific Anti-peptide Antibodies
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    Chapter 30 Therapeutic HIV Peptide Vaccine
Attention for Chapter 29: Enterovirus-Specific Anti-peptide Antibodies
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Chapter title
Enterovirus-Specific Anti-peptide Antibodies
Chapter number 29
Book title
Peptide Antibodies
Published in
Methods in molecular biology, January 2015
DOI 10.1007/978-1-4939-2999-3_29
Pubmed ID
Book ISBNs
978-1-4939-2998-6, 978-1-4939-2999-3
Authors

Chit Laa Poh, Katherine Kirk, Hui Na Chua, Lara Grollo, Poh, Chit Laa, Kirk, Katherine, Chua, Hui Na, Grollo, Lara

Abstract

Enterovirus 71 (EV-71) is the main causative agent of hand, foot, and mouth disease (HFMD) which is generally regarded as a mild childhood disease. In recent years, EV71 has emerged as a significant pathogen capable of causing high mortalities and severe neurological complications in large outbreaks in Asia. A formalin-inactivated EV71 whole virus vaccine has completed phase III trial in China but is currently unavailable clinically. The high cost of manufacturing and supply problems may limit practical implementations in developing countries. Synthetic peptides representing the native primary structure of the viral immunogen which is able to elicit neutralizing antibodies can be made readily and is cost effective. However, it is necessary to conjugate short synthetic peptides to carrier proteins to enhance their immunogenicity. This review describes the production of cross-neutralizing anti-peptide antibodies in response to immunization with synthetic peptides selected from in silico analysis, generation of B-cell epitopes of EV71 conjugated to a promiscuous T-cell epitope from Poliovirus, and evaluation of the neutralizing activities of the anti-peptide antibodies. Besides neutralizing EV71 in vitro, the neutralizing antibodies were cross-reactive against several Enteroviruses including CVA16, CVB4, CVB6, and ECHO13.

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Mendeley readers

The data shown below were compiled from readership statistics for 10 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 10 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 2 20%
Student > Postgraduate 1 10%
Student > Doctoral Student 1 10%
Student > Master 1 10%
Unknown 5 50%
Readers by discipline Count As %
Nursing and Health Professions 1 10%
Agricultural and Biological Sciences 1 10%
Economics, Econometrics and Finance 1 10%
Immunology and Microbiology 1 10%
Unknown 6 60%