A Laboratory Guide to the Tight Junction
Autor Jianghui Houen Limba Engleză Paperback – 27 apr 2020
Chapter 1 provides the foundations of cell biology of tight junction. Chapter 2 covers the Biochemical approaches for paracellular channels and is followed by chapter 3 providing the Biophysical approaches. Chapter 4 describes and discusses Histological approaches for tissue fixation and preparation. Chapter 5 discusses Light microscopy, while chapter 6 presents Electron microscopic approaches. Chapter 7 covers Transgenic manipulation in cell cultures, including DNA and siRNA, Mutagenesis, and viral infection. Chapter 8 covers transgenic manipulation in mice, including: Knockout, Knockin, siRNA knockdown, GFP/LacZ reporter, and overexpression. The final chapter discusses the future developments of new approaches for tight junction research.
Researchers and advanced students in bioscience working on topics of cell junction, ion channel and membrane protein will benefit from the described methods. Clinicians and pathologists interested in tissue barrier diseases will also benefit from the biochemical and biophysical characterization of tight junctions in organ systems, and their connection to human diseases.
- Provides consistent and detailed research methods
- Covers various cell, tissue and animal models
- Includes step-by-step guidance from beginner to sophisticated levels
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Specificații
ISBN-13: 9780128186473
ISBN-10: 012818647X
Pagini: 420
Ilustrații: 180 illustrations (100 in full color)
Dimensiuni: 152 x 229 x 22 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 012818647X
Pagini: 420
Ilustrații: 180 illustrations (100 in full color)
Dimensiuni: 152 x 229 x 22 mm
Editura: ELSEVIER SCIENCE
Public țintă
Researchers and advanced students in biomedical sciences, cell biology, physiology, pathology and pharmacology. Clinicians and pathologists interested in tissue barrier diseasesCuprins
1. Introduction2. Biochemical approaches for tight junction3. Biophysical approaches for tight junction4. Histological approaches for tight junction5. Light microscopy for tight junction6. Electron microscopy for tight junction7. Cell models of tight junction biology8. Mouse models of tight junction physiology9. Perspective