In silico design, chemical synthesis and biological screening of novel 4-(1H)-pyridone-based antimalarial agents

Chem Biol Drug Des. 2022 May;99(5):674-687. doi: 10.1111/cbdd.13987. Epub 2022 Jan 27.

Abstract

Identifying novel lead compounds in drug discovery has been challenging because of the rapid rise of drug resistance to the existing chemotherapeutics and a lack of understanding of complex metabolic pathways in the parasite. Integrating computational and experimental approaches has shown to be of great worth in identifying and developing novel promising pharmacophore hybrids. In this present research, a series of new 4-(1H)-pyridone-derived antimalarial agents were designed based on recent reports and our preliminary findings through in silico studies. Two of the 4-(1H)-Pyridone derivatives showed potential to bind to the Q0 site of the cytochrome bc1 complex and disrupt the mitochondrial electron transport chain. These compounds, along with previously synthesized compounds, exhibited significant inhibitory activities against the malaria parasite. Presently, seven compounds were successfully synthesized, characterized and these novel compounds have shown promise as antimalarial agents.

Keywords: 4-(1H)-pyridone; antimalarial; atovaquone; in-silico; molecular docking.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Antimalarials* / chemistry
  • Drug Discovery
  • Drug Resistance
  • Plasmodium falciparum
  • Pyridones / chemistry
  • Pyridones / pharmacology

Substances

  • Antimalarials
  • Pyridones

Associated data

  • RefSeq/4PD4