Rapid Synthesis and Diversification of Thymine‐Containing Bridged Nucleic Acids Through Cascade Cyclization Reactions
Abstract
Abstract Bridged nucleic acids (BNAs) are nucleoside analogues (NAs) in which the 2′‐alcohol is linked to the C4′‐position on ribose. In oligonucleotide therapeutics (ONTs), BNAs can impart beneficial properties, including enhanced stability, duplex melting temperatures, and tissue half‐lives. However, their lengthy syntheses challenge medicinal chemistry efforts and larger‐scale production. Here we demonstrate that a wide range of BNAs can be produced with various locking ring sizes and substitution patterns from a common thymine‐containing aldol product through cascade cyclization processes. Critically, several clinically relevant BNAs are now made available in as little as 3–5 steps. We expect these strategies will inspire and support medicinal and process chemistry efforts in this critical area for ONTs.
Article Details
Authors (8)
Cohan Huxley
Ethan Fung
Department of Chemistry Simon Fraser University Burnaby BC V5A 1S6 Canada
Bara Singh
Department of Chemistry Simon Fraser University Burnaby BC V5A 1S6 Canada
Guillermo Caballero‐García
Department of Chemistry Simon Fraser University Burnaby BC V5A 1S6 Canada
Garrett Muir
Steven M. Silverman
Process Research & Development
Louis‐Charles Campeau
Department of Process Research and Development Merck & Co., Inc. Rahway NJ 07065 USA
Robert Britton
Cloudburst Biotech, 8999 Nelson Way, Burnaby V5A 4B5, British Columbia, Canada