This book contains most analytical methods that have been applied to solving various
problems in broad areas of combinatorial chemistry, chemistry optimization, library
synthesis, lead selection, and lead optimization.
Examples related to solid-phase peptide
synthesis are included with an emphasis on their implication for the small molecule
synthesis.
This book serves as a valuable companion and a comprehensive reference book for
chemists involved in combinatorial chemistry. Also as an introduction to lead beginners to
enter the field of combinatorial chemistry knowing every analytical issue and possible
solution.
For those interested in analytical chemistry, this book tries to include as many
research possibilities and directions as can be achieved.
Contents
- Analytical Issues in Combinatorial Chemistry
Combinatorial Chemistry
Synthesis Methods
Analytical Challenges
- An Examination of the Analytical Sample: Resin Support
Physical Properties of Resins
Resin Swelling and Solvation
Effects of the Solvated Resiin on Solid-Phase Reactions
- Solid-Phase Reaction Optimization Using FTIR Methods
Comparison of FTIR and Raman Techniques
Monitoring of Reaction on Polystyrene-Based Resin
Monitoring of Reaction on PS-Peg Resins: Comparing the Reaction Rate on PS and PS-Peg
Resins
Monitoring of Reactions on Surface-Fuctionalized Polymers
- Reaction Optimization Using MS and NMR Methods
- Reaction Optimization Using Spectrophotometric and Other Methods
Qualitative Analysis of Amines
Quantitative Analysis of Amines
Quantitative Spectroscopic Methods for Organic Functional Groups
Combustion Elemental Analysis Methods
Electrochemical Methods
On-Resin X-ray, EPR, and Fluorescence Methods
- Quality Control Of Combinatorial Libraries
Analysis of Discrete Compound Libraries
Analysis of Pooled Libraries
HPLC for Analyzing Compounds from Discrete and Mixture Libraries
- Selection of Active Compounds from Combinatorial Libraries
In-solution Screening of Combinatorial Libraries
Affinity Selection of Lead Compounds by Mass Spectrometry
Affinity Capillary Electrophoresis
Affinity NMR
Other Affinity Selection Methods
Encoding Methods
- Optimization of Lead Compounds
Lead Compounds and Lead Optimization
Optimizing the In Vitro Activity: SAR by NMR
Optimizing Physiochemical Properties
- Final Thoughts and Future Perspectives
Reaction Optimization Efforts
Miniaturized Analysis
Parallel Analysis
HT NMR Data Interpretation
LC-NMR-MS
Appendices
Index