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B Cell Receptor Signaling

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Cover of 'B Cell Receptor Signaling'

Table of Contents

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    Book Overview
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    Chapter 1 Activation-Induced Cytidine Deaminase Aided In Vitro Antibody Evolution
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    Chapter 2 Analyzing Mouse B Cell Responses Specific to LCMV Infection
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    Chapter 3 Expression of Exogenous Genes in Murine Primary B Cells and B Cell Lines Using Retroviral Vectors
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    Chapter 4 Biophysical Techniques to Study B Cell Activation: Single-Molecule Imaging and Force Measurements
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    Chapter 5 DNA-Based Probes for Measuring Mechanical Forces in Cell-Cell Contacts: Application to B Cell Antigen Extraction from Immune Synapses
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    Chapter 6 Deriving Quantitative Cell Biological Information from Dye-Dilution Lymphocyte Proliferation Experiments
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    Chapter 7 Flow Cytometry Analysis of mTOR Signaling in Antigen-Specific B Cells
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    Chapter 8 Ex Vivo Culture Assay to Measure Human Follicular Helper T (Tfh) Cell-Mediated Human B Cell Proliferation and Differentiation
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    Chapter 9 B Cell Receptor Signaling and Compartmentalization by Confocal Microscopy
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    Chapter 10 Imaging the Interactions Between B Cells and Antigen-Presenting Cells
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    Chapter 11 In Vivo Tracking of Particulate Antigen Localization and Recognition by B Lymphocytes at Lymph Nodes
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    Chapter 12 Study B Cell Antigen Receptor Nano-Scale Organization by In Situ Fab Proximity Ligation Assay
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    Chapter 13 Single-Particle Tracking of Cell Surface Proteins
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    Chapter 14 The Use of Intravital Two-Photon and Thick Section Confocal Imaging to Analyze B Lymphocyte Trafficking in Lymph Nodes and Spleen
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    Chapter 15 Time-Lapse Förster Resonance Energy Transfer Imaging by Confocal Laser Scanning Microscopy for Analyzing Dynamic Molecular Interactions in the Plasma Membrane of B Cells
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    Chapter 16 Understanding of B Cell Receptor Signaling Through a Photo-Activatable Antigen Presentation System
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    Chapter 17 Use of Streptolysin O-Induced Membrane Damage as a Method of Studying the Function of Lipid Rafts During B Cell Activation
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    Chapter 18 Visualization and Quantitative Analysis of the Actin Cytoskeleton Upon B Cell Activation
Attention for Chapter 14: The Use of Intravital Two-Photon and Thick Section Confocal Imaging to Analyze B Lymphocyte Trafficking in Lymph Nodes and Spleen
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Chapter title
The Use of Intravital Two-Photon and Thick Section Confocal Imaging to Analyze B Lymphocyte Trafficking in Lymph Nodes and Spleen
Chapter number 14
Book title
B Cell Receptor Signaling
Published in
Methods in molecular biology, January 2018
DOI 10.1007/978-1-4939-7474-0_14
Pubmed ID
Book ISBNs
978-1-4939-7473-3, 978-1-4939-7474-0
Authors

Chung Park, Il-Young Hwang, John H. Kehrl

Abstract

Intravital two-photon laser scanning microscopy (TP-LSM) has allowed the direct observation of immune cells in intact organs of living animals. In the B cell biology field TP-LSM has detailed the movement of B cells in high endothelial venules and during their transmigration into lymph organs; described the movement and positioning of B cells within lymphoid organs; outlined the mechanisms by which antigen is delivered to B cells; observed B cell interacting with T cells, other cell types, and even with pathogens; and delineated the egress of B cells from the lymph node (LN) parenchyma into the efferent lymphatics. As the quality of TP-LSM improves and as new fluorescent probes become available additional insights into B cell behavior and function await new investigations. Yet intravital TP-LSM has some disadvantages including a lower resolution than standard confocal microscopy, a narrow imaging window, and a shallow depth of imaging. We have found that supplementing intravital TP-LSM with conventional confocal microscopy using thick LN sections helps to overcome some of these shortcomings. Here, we describe procedures for visualizing the behavior and trafficking of fluorescently labeled, adoptively transferred antigen-activated B cells within the inguinal LN of live mice using two-photon microscopy. Also, we introduce procedures for fixed thick section imaging using standard confocal microscopy, which allows imaging of fluorescently labeled cells deep in the LN cortex and in the spleen with high resolution.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 9 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 9 100%

Demographic breakdown

Readers by professional status Count As %
Student > Postgraduate 2 22%
Professor > Associate Professor 2 22%
Student > Ph. D. Student 1 11%
Student > Doctoral Student 1 11%
Student > Master 1 11%
Other 0 0%
Unknown 2 22%
Readers by discipline Count As %
Immunology and Microbiology 4 44%
Biochemistry, Genetics and Molecular Biology 2 22%
Social Sciences 1 11%
Unknown 2 22%