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Peptide Microarrays

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Cover of 'Peptide Microarrays'

Table of Contents

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    Book Overview
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    Chapter 1 Peptide Arrays on Planar Supports.
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    Chapter 2 High-Throughput Microarray Incubations Using Multi-Well Chambers.
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    Chapter 3 Analysis of Protein Tyrosine Kinase Specificity Using Positional Scanning Peptide Microarrays.
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    Chapter 4 Secondary Structure Determination of Peptides and Proteins After Immobilization.
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    Chapter 5 Peptides and Anti-peptide Antibodies for Small and Medium Scale Peptide and Anti-peptide Affinity Microarrays: Antigenic Peptide Selection, Immobilization, and Processing.
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    Chapter 6 Low-Cost Peptide Microarrays for Mapping Continuous Antibody Epitopes
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    Chapter 7 The Peptide Microarray-Based Resonance Light Scattering Assay for Sensitively Detecting Intracellular Kinase Activity.
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    Chapter 8 Anomalous Reflection of Gold: A Novel Platform for Biochips.
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    Chapter 9 High-Throughput Peptide Screening on a Bimodal Imprinting Chip Through MS-SPRi Integration.
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    Chapter 10 Analyzing Peptide Microarray Data with the R pepStat Package.
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    Chapter 11 Chemoselective Strategies to Peptide and Protein Bioprobes Immobilization on Microarray Surfaces.
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    Chapter 12 Manufacturing of Peptide Microarrays Based on Catalyst-Free Click Chemistry.
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    Chapter 13 Clickable Polymeric Coating for Oriented Peptide Immobilization.
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    Chapter 14 Oriented Peptide Immobilization on Microspheres.
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    Chapter 15 A Cell Microarray Format: A Peptide Release System Using a Photo-Cleavable Linker for Cell Toxicity and Cell Uptake Analysis.
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    Chapter 16 Peptide Microarrays for Medical Applications in Autoimmunity, Infection, and Cancer.
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    Chapter 17 Synthetic Peptide-Based ELISA and ELISpot Assay for Identifying Autoantibody Epitopes.
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    Chapter 18 IgE and IgG4 Epitope Mapping of Food Allergens with a Peptide Microarray Immunoassay.
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    Chapter 19 IgE Epitope Mapping Using Peptide Microarray Immunoassay.
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    Chapter 20 Spot Synthesis: An Optimized Microarray to Detect IgE Epitopes.
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    Chapter 21 Mapping of Epitopes Occurring in Bovine αs1-Casein Variants by Peptide Microarray Immunoassay.
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    Chapter 22 Erratum To: Peptide Arrays on Planar Supports.
Attention for Chapter 13: Clickable Polymeric Coating for Oriented Peptide Immobilization.
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Chapter title
Clickable Polymeric Coating for Oriented Peptide Immobilization.
Chapter number 13
Book title
Peptide Microarrays
Published in
Methods in molecular biology, January 2016
DOI 10.1007/978-1-4939-3037-1_13
Pubmed ID
Book ISBNs
978-1-4939-3036-4, 978-1-4939-3037-1
Authors

Laura Sola, Alessandro Gori, Marina Cretich, Chiara Finetti, Caterina Zilio, Marcella Chiari

Editors

Marina Cretich, Marcella Chiari

Abstract

A new methodology for the fabrication of an high-performance peptide microarray is reported, combining the higher sensitivity of a layered Si-SiO2 substrate with the oriented immobilization of peptides using a N,N-dimethylacrylamide-based polymeric coating that contains alkyne monomers as functional groups. This clickable polymer allows the oriented attachment of azido-modified peptides via a copper-mediated azide/alkyne cycloaddition. A similar coating that does not contain the alkyne functionality has been used as comparison, to demonstrate the importance of a proper orientation for facilitating the probe recognition and interaction with the target antibody.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 6 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 6 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 3 50%
Unknown 3 50%
Readers by discipline Count As %
Chemistry 2 33%
Unknown 4 67%