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Epitope Mapping Protocols : Second Edition / edited by Mike Schutkowski, Ulrich Reineke.

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Holman Biotech Commons QH506 .M45 v.1 (1984)-v.20 (1993),v.22 (1994),v.24 (1994)-v.53 (1996), v.42 (1995) and v.51 (1995) reported missing 3-13-2000 v.55 (1995),v.58 (1996)-v.63 (1997), v.65 (1996)-v.154 (2001), v.156 (2001)-190 (2002), v.192 (2002)-v.407 (2007) v.409 (2007)-v.416 (2008),v.418 (2008)-v.466 v.468-v.490,v.492,v.494,v.496-499 501-506,508,510-512,514,516-517,519-536 538,540-569,571 573-589,591-608,610-615,617,620-627,630-633,636,638,642
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Format:
Book
Contributor:
Schutkowski, Mike, editor.
Reineke, Ulrich, editor.
SpringerLink (Online service)
Series:
Methods in Molecular Biology™, Methods and Protocols, 1064-3745 ; 524.
Springer Protocols (Springer-12345)
Methods in Molecular Biology™, Methods and Protocols, 1064-3745 ; 524
Language:
English
Subjects (All):
Life sciences.
Immunology.
Immunoglobulins.
Biochemistry.
Life Sciences.
Biochemistry, general.
Antibodies.
Local Subjects:
Life Sciences.
Biochemistry, general.
Immunology.
Antibodies.
Physical Description:
1 online resource (XIV, 450 pages) : 85 illustrations, 19 illustrations in color.
Contained In:
Springer eBooks
Place of Publication:
Totowa, NJ : Humana Press, 2009.
System Details:
text file PDF
Summary:
Given the versatile utility of the determinination of epitopes, beneficial to a wide variety of scientists from immunologists to structural biologists to biotechnologists, the need for a thorough, state-of-the-art collection of experimental protocols is clear. In Epitope Mapping Protocols, Second Edition, expert contributors from a broad spectrum of scientific backgrounds update and expand the successful first edition with cutting-edge techniques and applications, including approaches to both antibody or B-cell epitope mapping and T-cell epitope mapping as well as a new section on the profiling of antibody signatures in biological fluids. Written in the popular Methods in Molecular Biology™ series format, chapters include brief introductions to the topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and Notes sections, which highlight tips on troubleshooting and avoiding known pitfalls. Comprehensive and up-to-date, Epitope Mapping Protocols, Second Edition is a reliable and valuable reference for all those who wish to understand and further investigate the diversifying field of epitope mapping.
Contents:
B-cell Epitope Mapping
What Is a B-Cell Epitope?
Whole Antigen Methods
Structural Basis of Antibody-Antigen Interactions
Epitope Mapping of Antibody-Antigen Complexes by Nuclear Magnetic Resonance Spectroscopy
A Solid-Phase Mutual Inhibition Assay with Labeled Antigen
Epitope Mapping by Surface Plasmon Resonance
Proteolytic Fragmentation for Epitope Mapping
Epitope Mapping by Proteolysis of Antigen-Antibody Complexes
Identifying Residues in Antigenic Determinants by Chemical Modification
Epitope Mapping by Differential Chemical Modification of Antigens
Peptide Library Approaches
Linear B-Cell Epitope Mapping Using Enzyme-Linked Immunosorbent Assay for Libraries of Overlapping Synthetic Peptides
Antibody Epitope Mapping Using SPOT™ Peptide Arrays
Peptide Microarrays for Profiling of Modification State-Specific Antibodies
Epitope Mapping Using Phage Display Peptide Libraries
Antibody Epitope Mapping Using De Novo Generated Synthetic Peptide Libraries
Antibody Specificity Profiling on Functional Protein Microarrays
Peptide Microarrays for Determination of Cross-Reactivity
Profiling of Antibody Signatures in Biological Fluids.
Epitope Mapping Using Randomly Generated Peptide Libraries
Probing the Epitope Signatures of IgG Antibodies in Human Serum from Patients with Autoimmune Disease
Microarrayed Allergen Molecules for Diagnostics of Allergy
Monitoring B Cell Response to Immunoselected Phage-Displayed Peptides by Microarrays
Antigen Expressed from Recombinant DNA
Epitope Mapping Using Homolog-Scanning Mutagenesis
Epitope Mapping by Region-Specified PCR-Mutagenesis
Epitope Mapping Using Phage-Display Random Fragment Libraries
B-Cell Epitope Prediction
Prediction of Linear B-cell Epitopes
T-Cell Epitope Mapping
Molecular Recognition of Diverse Ligands by T-Cell Receptors
Identification of Human MHC Class I Binding Peptides using the iTOPIA™? Epitope Discovery System
T-Cell Epitope Mapping in Mycobacterium tuberculosis Using PepMixes Created by Micro-Scale SPOT™? Synthesis
High-Throughput T-Cell Epitope Discovery Through MHC Peptide Exchange
T-Cell Epitope Processing (The Epitope Flanking Regions Matter)
Identification of MHC Class II Binding Peptides: Microarray and Soluble MHC Class II Molecules
Identification and Validation of T-Cell Epitopes Using the IFN-? EliSpot Assay.
Other Format:
Printed edition:
ISBN:
9781597454506
Access Restriction:
Restricted for use by site license.

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