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Imidazolopiperazines kill both rings and dormant rings in wild-type and K13 artemisinin-resistant plasmodium falciparum In Vitro

  • Laurent Dembele
  • , Devendra Kumar Gupta
  • , Michelle Yi Xiu Lim
  • , Xiaoman Ang
  • , Jeremy J. Selva
  • , Kesinee Chotivanich
  • , Chea Nguon
  • , Arjen M. Dondorp
  • , Ghislain M.C. Bonamy
  • , Thierry T. Diagana
  • , Pablo Bifania
  • Novartis Institute for Tropical Diseases Pte. Ltd.
  • University of Science, Techniques and Technologies of Bamako
  • Mahidol University
  • National Center for Parasitology, Entomology and Malaria Control
  • Nuffield Department of Medicine
  • University of Amsterdam
  • National University of Singapore
  • Agency for Science Technology and Research

Research output: Contribution to journalArticlepeer-review

16 Citations (Scopus)

Abstract

Artemisinin (ART) resistance has spread through Southeast Asia, posing a serious threat to the control and elimination of malaria. ART resistance has been associated with mutations in the Plasmodium falciparum kelch-13 (Pfk13) propeller domain. Phenotypically, ART resistance is defined as delayed parasite clearance in patients due to the reduced susceptibility of early ring-stage parasites to the active metabolite of ART dihydroartemisinin (DHA). Early rings can enter a state of quiescence upon DHA exposure and resume growth in its absence. These quiescent rings are referred to as dormant rings or DHA-pretreated rings (here called dormant rings). The imidazolopiperazines (IPZ) are a novel class of antimalarial drugs that have demonstrated efficacy in early clinical trials. Here, we characterized the stage of action of the IPZ GNF179 and evaluated its activity against rings and dormant rings in wild-type and ART-resistant parasites. Unlike DHA, GNF179 does not induce dormancy. We show that GNF179 is more rapidly cidal against schizonts than against ring and trophozoite stages. However, with 12 h of exposure, the compound effectively kills rings and dormant rings of both susceptible and ART-resistant parasites within 72 h. We further demonstrate that in combination with ART, GNF179 effectively prevents recrudescence of dormant rings, including those bearing pfk13 propeller mutations.

Original languageEnglish
Article numbere02235-17
JournalAntimicrobial Agents and Chemotherapy
Volume62
Issue number5
DOIs
Publication statusPublished - May 2018

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Dormant rings
  • Drug susceptibility
  • GNF179
  • Imidazolopiperazines
  • Malaria
  • Rings
  • Triple therapy

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