In Silico Approach for Early Antimalarial Drug Discovery: De Novo Design of Virtual Multi-Strain Antiplasmodial Inhibitors. [PDF]
Kleandrova VV +2 more
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In vitro antiplasmodial activities of extract and fractions from Lepidobotrys staudtii against sensitive and resistant blood-stage parasites of Plasmodium falciparum. [PDF]
Magoudjou Pekam JN +8 more
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Antimalarial Drug Repurposing of Epirubicin and Pelitinib in Combination with Artemether and Lumefantrine. [PDF]
Ochora DO +9 more
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Photopharmacology of Quinoline and Benzimidazole Azobenzene-Based Photoswitchable β‑Hematin Inhibitors. [PDF]
Golding TM +4 more
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Intelligent <i>in-silico</i> prioritization of antimalarial peptide candidates under explicit physicochemical windows via <i>de novo</i> CTCM-Neo generation and conformal-gated calibrated classification. [PDF]
Aamir M, Rezaee K, Anari MS.
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Medicinal Plants Used by Tanzanians for Human Paediatric Ailments: A PRISMA-Guided Systematic Review of Ethnomedicinal Evidence. [PDF]
Kacholi DS, Mogha NG.
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Metabolite characterization and in vitro antiplasmodial potential assessment of Sonchus arvensis L. callus under glutamine treatment. [PDF]
Wahyuni DK +12 more
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Antiplasmodial activity of polyphenolic derivatives.
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Antiplasmodial Activity of Uvaria klaineana
Planta Medica, 2002Crude extracts of Uvaria klaineana Engler and Diels (Annonaceae) stems showed in vitro activity against chloroquine-resistant K1 strain of Plasmodium falciparum. The most active extract was the basic dichloromethane extract containing crude alkaloids (IC50 = 3.55 microg/mL).
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