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dc.date.accessioned2019-07-18T11:36:43Z-
dc.date.available2019-07-18T11:36:43Z-
dc.date.issued2016-
dc.identifier.urihttp://10.1.7.192:80/jspui/handle/123456789/8505-
dc.descriptionSAR And QSAR in Environmental Research, vol. 27, No. 6; 2016: 427–440en_US
dc.description.abstractPlasmodium falciparum dihydroorotate dehydrogenase (PfDHODH) catalyses the fourth reaction of de novo pyrimidine biosynthesis in parasites, and represents an important target for the treatment of malaria. In this study, we describe pharmacophore-based virtual screening combined with docking study and biological evaluation as a rational strategy for identiication of novel hits as antimalarial agents. Pharmacophore models were established from known PfDHODH inhibitors using the GALAHAD module with IC50 values ranging from 0.033 μM to 142 μM. The best pharmacophore model consisted of three hydrogen bond acceptor, one hydrogen bond donor and one hydrophobic features. The pharmacophore models were validated through receiver operating characteristic and Günere–Henry scoring methods. The best pharmacophore model as a 3D search query was searched against the IBS database. Several compounds with diferent structures (scafolds) were retrieved as hit molecules. Among these compounds, those with a QFIT value of more than 81 were docked in the PfDHODH enzyme to further explore the binding modes of these compounds. In silico pharmacokinetic and toxicities were predicted for the best docked molecules. Finally, the identiied hits were evaluated in vivo for their antimalarial activity in a parasite inhibition assay. The hits reported here showed good potential to become novel antimalarial agents.en_US
dc.publisherTaylor and Francisen_US
dc.relation.ispartofseriesIPFP0346;-
dc.subjectPfdhodh inhibitorsen_US
dc.subjectpharmacophore modellingen_US
dc.subjectGAlAhAden_US
dc.subjectvirtual screeningen_US
dc.subjectmolecular dockingen_US
dc.subjectantimalarial agentsen_US
dc.titleIdentiication of Novel PfDHODH Inhibitors as Antimalarial Agents via Pharmacophore-based Virtual Screening Followed by Molecular Docking and in Vivo Antimalarial Activityen_US
dc.typeFaculty Papersen_US
Appears in Collections:Faculty Papers

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