
- 488 pages
- English
- PDF
- Available on iOS & Android
eBook - PDF
Handbook of Assay Development in Drug Discovery
About this book
The Handbook of Assay Development in Drug Discovery describes all the tools currently available for performing various assay techniques. Featuring troubleshooting advice for common problems from experienced assay developers, the vendor community, and scientists in the pharmaceutical industry, the book presents descriptions of methods, laboratory guidelines and protocols used to perform such methods, specific examples of each assay system, and troubleshooting tools. Designed as a guide to running an assay from start to finish, this is an ideal bench top companion for scientists involved in drug discovery screening, lead profiling, therapeutic target evaluation, and assay development and implementation.
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Yes, you can access Handbook of Assay Development in Drug Discovery by Lisa K. Minor in PDF and/or ePUB format, as well as other popular books in Medicine & Pharmacology. We have over one million books available in our catalogue for you to explore.
Information
Table of contents
- Front cover
- Dedication
- Preface
- Editor
- Contributors
- Table of Contents
- Chapter 1. Protein Kinases in Drug Discovery: Rationale, Success, and Challenge
- Chapter 2. An Introduction to the Protein Tyrosine Phosphatase Gene Family and Screening Assay Development
- Chapter 3. Time-Resolved Flourescence Based Assays for Kinases
- Chapter 4. Development of High-Throughput Screening Assays in Scintillating Microplates (FlashPlates) to Identify Inhibitors of Kinase Activity
- Chapter 5. Development of High-Throughput Screening Assays for Kinase Drug Targets Using AlphaScreen Technology
- Chapter 6. Homogeneous High-Throughput Screening (HTS) Assays for Serine/Threonine Kinases Using -Galactosidase Enzyme Fragment Complementation
- Chapter 7. IMAP Assays for Protein Kinases
- Chapter 8. A Homogeneous, Luminescent, High-Throughput, Versatile Assay for a Wide Range of Kinases
- Chapter 9. Proteases as Drug Targets
- Chapter 10. A Comparison of Homogeneous Bioluminescent and Fluorescent Methods for Protease Assays
- Chapter 11. Scintillation Proximity Assay (SPA) Receptor Binding Assays
- Chapter 12. Radioligand Binding Filtration Assay: Full Automation
- Chapter 13. Nuclear Receptors as Drug Targets
- Chapter 14. Nuclear Receptor Scintillation Proximity Assays
- Chapter 15. Homogeneous Assay Development for Nuclear Receptor Using AlphaScreen Technology
- Chapter 16. Development of Nuclear Receptor Homogeneous Assay Using the LANCE Technology
- Chapter 17. The Emerging Role of Cell-Based Assays in Drug Discovery
- Chapter 18. The Preparation of Cells for High-Content Screening
- Chapter 19. The Evolution of cAMP Assays
- Chapter 20. A Homogeneous, Fluorescent Polarization Assay for Inositol 1,4,5-Trisphosphate (Ins P )
- Chapter 21. Scintillation Proximity Assay of Inositol Phosphates
- Chapter 22. Measuring Calcium Mobilization with G -Coupled GPCRs Using the Fluormetric Imaging Plate Reader (FLIPR)
- Chapter 23. Development of FLIPR-Based HTS Assay for G;-Coupled GPCRs
- Chapter 24. Aurora Assays
- Chapter 25. Membrane Potential Based Assays for Ion Channels and Electrogenic Transporters
- Chapter 26. Reporter Gene Assays for Drug Discovery
- Chapter 27. mRNA Detection from Cells Using Quantigene Branched DNA Technology
- Chapter 28. Homogeneous Multiwell Assays for Measuring Cell Viabiltiy, Cytotoxicity, and Apoptosis
- Chapter 29. Development of Image-Based Assays for Drug Discovery
- Chapter 30. GPCR Internalization Measured by Image Analysis
- Chapter 31. TRANSFLUOR Provides a Universal Cell-Based Assay for Screening G-Protein-Coupled Receptors
- Index
- Back cover