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Structure-Activity Relationship between Thiol Group-Trapping Ability of Morphinan Compounds with a Michael Acceptor and Anti-Plasmodium falciparum Activities.

Noriki KutsumuraYasuaki KoyamaTsuyoshi SaitohNaoshi YamamotoYasuyuki NagumoYoshiyuki MiyataRei HokariAki IshiyamaMasato IwatsukiKazuhiko OtoguroSatoshi ŌmuraHiroshi Nagase
Published in: Molecules (Basel, Switzerland) (2020)
7-Benzylidenenaltrexone (BNTX) and most of its derivatives showed in vitro antimalarial activities against chloroquine-resistant and -sensitive Plasmodium falciparum strains (K1 and FCR3, respectively). In addition, the time-dependent changes of the addition reactions of the BNTX derivatives with 1-propanethiol were examined by 1H-NMR experiments to estimate their thiol group-trapping ability. The relative chemical reactivity of the BNTX derivatives to trap the thiol group of 1-propanethiol was correlated highly with the antimalarial activity. Therefore, the measurements of the thiol group-trapping ability of the BNTX derivatives with a Michael acceptor is expected to become an alternative method for in vitro malarial activity and related assays.
Keyphrases
  • plasmodium falciparum
  • structure activity relationship
  • magnetic resonance
  • escherichia coli
  • high resolution
  • high throughput
  • solar cells
  • energy transfer