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Approaches for introducing high molecular diversity in scaffolds: Fast parallel synthesis of highly substituted 1H-quinolin-4-one libraries

  • Vladimir Kuznetsov
  • , Sofia Gorohovsky
  • , Amalia Levy
  • , Simcha Meir
  • , Vladimir Shkoulev
  • , Naim Menashe
  • , Moshe Greenwald
  • , Alexander Aizikovich
  • , Dror Ofer
  • , Gerardo Byk
  • , Garry Gellerman
  • Compugen Ltd.

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

We have developed a two steps strategy for the parallel synthesis of highly diversified quinolin-ones. In the first step we have combined and improved different synthetic methods for generating quinolin-4-ones bearing four different substitutions at specific positions using round bottomed flasks. The synthesis was assessed for a large number of substituted quinolin-4-ones. In the second step, the improved method was adapted to a parallel array synthesis using a 12 positions carrousel as demonstrated for the synthesis of 42-variable quinolin-4-ones. The first combinatorial library set 14{a-x} was obtained with a chemical purity of more than 95% without purification, the second library set 15{a-r}, which included two synthetic steps, needed combinatorial purification using an innovative parallel purifier. The proposed approach contributes to a more extensive diversification of molecular scaffolds in general and provides access to highly substituted quinolinones in particular.

Original languageEnglish
Pages (from-to)437-448
Number of pages12
JournalMolecular Diversity
Volume8
Issue number4
DOIs
StatePublished - 2004

Keywords

  • 1H-quinolin-one
  • scaffold decoration

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