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Published on: December 27, 2016
A platform for high-throughput screening of DNA-encoded catalyst libraries in organic solvents
K Delaney Hook1, John T Chambers1, Ryan Hili1,2
1Department of Chemistry , University of Georgia , Athens , GA 30602 , USA . Email: rhili@yorku.ca ; http://www.yorku.ca/rhili/.
Abstract:
We have developed a novel high-throughput screening platform for the discovery of small-molecules catalysts for bond-forming reactions. The method employs an in vitro selection for bond-formation using amphiphilic DNA-encoded small molecules charged with reaction substrate, which enables selections to be conducted in a variety of organic or aqueous solvents. Using the amine-catalysed aldol reaction as a catalytic model and high-throughput DNA sequencing as a selection read-out, we demonstrate the 1200-fold enrichment of a known aldol catalyst from a library of 16.7-million uncompetitive library members.

