Diversity-oriented synthesis-facilitated medicinal chemistry: toward the development of novel antimalarial agents

J Med Chem. 2014 Oct 23;57(20):8496-502. doi: 10.1021/jm500994n. Epub 2014 Oct 13.

Abstract

Here, we describe medicinal chemistry that was accelerated by a diversity-oriented synthesis (DOS) pathway, and in vivo studies of our previously reported macrocyclic antimalarial agent that derived from the synthetic pathway. Structure-activity relationships that focused on both appendage and skeletal features yielded a nanomolar inhibitor of P. falciparum asexual blood-stage growth with improved solubility and microsomal stability and reduced hERG binding. The build/couple/pair (B/C/P) synthetic strategy, used in the preparation of the original screening library, facilitated medicinal chemistry optimization of the antimalarial lead.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Antimalarials / chemistry*
  • Antimalarials / metabolism
  • Antimalarials / pharmacology*
  • Chemistry Techniques, Synthetic
  • Chemistry, Pharmaceutical / methods*
  • ERG1 Potassium Channel
  • Ether-A-Go-Go Potassium Channels / metabolism
  • Lactams, Macrocyclic / chemistry
  • Lactams, Macrocyclic / pharmacology
  • Plasmodium falciparum / drug effects
  • Solubility
  • Structure-Activity Relationship*

Substances

  • Antimalarials
  • ERG1 Potassium Channel
  • Ether-A-Go-Go Potassium Channels
  • Lactams, Macrocyclic