Molecular Imaging: FRET Microscopy and Spectroscopy

Periasamy, Ammasi; Day, Richard

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Table of contents
  • Cover
  • Contentsxi
  • Contributorsxiii
  • Chapter 1. Proteins and the Flow of Information in Cellular Function1
  • Chapter 2. Basics of Fluorescence and FRET21
  • Chapter 3. An Introduction to Filters and Mirrors for FRET57
  • Chapter 4. FRET Imaging in the Wide-Field Microscope72
  • Chapter 5. Confocal FRET Microscopy: Study of Clustered Distribution of Receptor-Ligand Complexes in95
  • Chapter 6. Multiphoton FRET Microscopy for Protein Localization in Tissue112
  • Chapter 7. FRET Data Analysis: The Algorithm126
  • Chapter 8. Photobleaching FRET Microscopy146
  • Chapter 9. Single-Molecule FRET165
  • Chapter 10. FRET Measurements Using Multispectral Imaging180
  • Chapter 11. Real-Time Fluorescence Lifetime Imaging and FRET Using Fast-Gated Image Intensifiers193
  • Chapter 12. Streak Fluorescence Lifetime Imaging Microscopy: A Novel Technology for Quantitative FRE227
  • Chapter 13. Time-Correlated Single Photon Counting Fluorescence Lifetime Imaging- FRET Microscopy fo239
  • Chapter 14. Bioluminescence Resonance Energy Transfer: Techniques and Potential260
  • Chapter 15. Quantifying Molecular Interactions with Fluorescence Correlation Spectroscopy272
  • Chapter 16. Mapping Molecular Interactions and Transport in Cell Membranes by Image Correlation Spec284
  • Index303
Book details
  • Vendor Elsevier S & T
  • SKU 9780195177206
  • ISBN-13 9780080536873
  • Author Periasamy, Ammasi; Day, Richard
  • Category Medical
  • Subject Physiology

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The detection and measurement of the dynamic interactions of proteins within the living cell are critical to our understanding of cell physiology and pathophysiology. With FRET microscopy and spectroscopy techniques, basic and clinical scientists can make such measurements at very high spatial and temporal resolution. But sources of background information about these tools are very limited, so this book fills an important gap. It covers both the basic concepts and theory behind the various FRET microscopy and spectroscopy techniques, and the practical aspects of using the techniques and analyzing the results. The critical tricks for obtaining a good FRET image and precisely quantitating the signals from living specimens at the nanomolecular level are explained. Valuable information about the preparation of biological samples used for FRET image analysis is also provided.

The methods covered include different types of microscopy systems and detectors (wide-field, confocal, multi-photon) as well as specialized techniques such as photobleaching FRET, FLIM-FRET microscopy, spectral imaging FRET, single molecule FRET, and time and image correlation spectroscopy. Starting from the basics, the chapters guide readers through the choice of probes to be used for FRET experiments and the selection of the most suitable experimental approaches to address specific biological questions. Up-to-date, consistently organized, and well-illustrated, this unique book will be welcomed by all researchers who wish to use FRET microscopy and spectroscopy techniques.