Diversity-oriented synthesis as a tool for the discovery of novel biologically active small molecules
Top Cited Papers
- 21 September 2010
- journal article
- review article
- Published by Springer Nature in Nature Communications
- Vol. 1 (1), 80
- https://doi.org/10.1038/ncomms1081
Abstract
Biologically active molecules can be identified through the screening of small-molecule libraries. Deficiencies in current compound collections are evidenced by the continuing decline in drug-discovery successes. Typically, such collections are comprised of large numbers of structurally similar compounds. A general consensus has emerged that library size is not everything; library diversity, in terms of molecular structure and thus function, is crucial. Diversity-oriented synthesis (DOS) aims to generate such structural diversity in an efficient manner. Recent years have witnessed significant achievements in the field, which help to validate the usefulness of DOS as a tool for the discovery of novel, biologically interesting small molecules.Keywords
This publication has 82 references indexed in Scilit:
- Stereochemical and Skeletal Diversity Arising from Amino Propargylic AlcoholsOrganic Letters, 2010
- The tert-Butylsulfinamide Lynchpin in Transition-Metal-Mediated Multiscaffold Library SynthesisOrganic Letters, 2010
- Reagent based DOS: A “Click, Click, Cyclize” strategy to probe chemical spaceOrganic & Biomolecular Chemistry, 2010
- Aziridines as intermediates in diversity-oriented syntheses of alkaloidsTetrahedron Letters, 2009
- A small molecule that binds Hedgehog and blocks its signaling in human cellsNature Chemical Biology, 2009
- “Click, Click, Cyclize”: A DOS Approach to Sultams Utilizing Vinyl Sulfonamide LinchpinsOrganic Letters, 2008
- Synthesis of Natural‐Product‐Like Molecules with Over Eighty Distinct ScaffoldsAngewandte Chemie International Edition, 2008
- Towards the Optimal Screening Collection: A Synthesis StrategyAngewandte Chemie International Edition, 2007
- Natural Products as Sources of New Drugs over the Last 25 YearsJournal of Natural Products, 2007
- Molecular similarity: a key technique in molecular informaticsOrganic & Biomolecular Chemistry, 2004