Lactam Truncation Yields a Dihydroquinazolinone Scaffold with Potent Antimalarial Activity that Targets PfATP4

Abstract: The emergence of resistance against current antimalarial treatments has necessitated the need for the development of novel antimalarial chemotypes. Toward this goal, we recently optimised the antimalarial activity of the dihydroquinazolinone scaffold and showed it targeted PfATP4. Here, we deconstruct the lactam moiety of the tricyclic dihydroquinazolinone scaffold and investigate the structure‐activity relationship of the truncated scaffold. It was shown that SAR between scaffolds was largely transferrable and generated analogues with potent asexual stage activity. Evaluation of the truncated analogues against PfATP4 mutant drug‐resistant parasite strains and in assays measuring PfATP4‐associated ATPase activity demonstrated retention of PfATP4 as the molecular target. Analogues exhibited activity against both male and female gametes and multidrug resistant parasites. Limited efficacy of analogues in a P. berghei asexual stage mouse model was attributed to their moderate metabolic stability and low aqueous stability. Further development is required to address these attributes toward the potential use of the dihydroquinazolinone class in a curative and transmission blocking combination antimalarial therapy.

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch

Erschienen in
Lactam Truncation Yields a Dihydroquinazolinone Scaffold with Potent Antimalarial Activity that Targets PfATP4 ; day:29 ; month:10 ; year:2024 ; extent:17
ChemMedChem ; (29.10.2024) (gesamt 17)

Urheber
Ashton, Trent D.
Calic, Petar P. S.
Dans, Madeline G.
Kang Ooi, Zi
Zhou, Qingmiao
Loi, Katie
Jarman, Kate E.
Palandri, Josephine
Qiu, Deyun
Lehane, Adele M.
Maity, Bikash
De, Nirupam
Famodimu, Mufuliat T.
Delves, Michael J.
Mao, Emma Y.
Gancheva, Maria R.
Wilson, Danny W.
Chowdury, Mrittika
de Koning‐Ward, Tania F.
Baud, Delphine
Brand, Stephen
Jackson, Paul F.
Cowman, Alan F.
Sleebs, Brad E.

DOI
10.1002/cmdc.202400549
URN
urn:nbn:de:101:1-2410301307108.992637115950
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
15.08.2025, 07:31 MESZ

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Beteiligte

  • Ashton, Trent D.
  • Calic, Petar P. S.
  • Dans, Madeline G.
  • Kang Ooi, Zi
  • Zhou, Qingmiao
  • Loi, Katie
  • Jarman, Kate E.
  • Palandri, Josephine
  • Qiu, Deyun
  • Lehane, Adele M.
  • Maity, Bikash
  • De, Nirupam
  • Famodimu, Mufuliat T.
  • Delves, Michael J.
  • Mao, Emma Y.
  • Gancheva, Maria R.
  • Wilson, Danny W.
  • Chowdury, Mrittika
  • de Koning‐Ward, Tania F.
  • Baud, Delphine
  • Brand, Stephen
  • Jackson, Paul F.
  • Cowman, Alan F.
  • Sleebs, Brad E.

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