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6 ½ X 9 7/16 in Nature: The Original Combinatorial Chemist
Biopolymers constitute natural libraries
Selection a nd evolution
The expression of genetic information
Combinatorial assembly of antibody genes
Molecular solutions to combinatorial problems
Sy nthetic Peptide Libraries Solid-phase peptide synt hesis
Peptides on pins
Other iterati ve deconvolution strategies
Examples of split/couple/m ix peptide libraries
Positional scanning
Epilogue
Supports, Linkers, and Reagents for Peptide
Synthesis Polystyrenes
< BR id=‘CRLF’>PEG-grafted supports
Coupling strategies
Supports and Linkers for Small Molecule Synthesis< /STRONG> New resins and linkers
Ring-form ing cleavage
Loading
Encoded Com binatorial Chemistry Directed Sorting
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6 ½ X 9 7/16 in Nature: The Original Combinatorial Chemist
Biopolymers constitute natural libraries
Selection a nd evolution
The expression of genetic information
Combinatorial assembly of antibody genes
Molecular solutions to combinatorial problems
Sy nthetic Peptide Libraries Solid-phase peptide synt hesis
Peptides on pins
Other iterati ve deconvolution strategies
Examples of split/couple/m ix peptide libraries
Positional scanning
Epilogue
Supports, Linkers, and Reagents for Peptide
Synthesis Polystyrenes
< BR id=‘CRLF’>PEG-grafted supports
Coupling strategies
Supports and Linkers for Small Molecule Synthesis< /STRONG> New resins and linkers
Ring-form ing cleavage
Loading
Encoded Com binatorial Chemistry Directed Sorting