The tetrahydro-β-carboline scaffold has proven fertile ground for the discovery of antimalarial agents (e.g., MMV008138 () and cipargamin ()). Similarity searching of a publicly disclosed collection of antimalarial hits for molecules resembling drew our attention to N2-acyl tetrahydro-β-carboline GNF-Pf-5009 ((±)-). Compound purchase, "analog by catalog", and independent synthesis of hits indicated the benzofuran-2-yl amide portion was required for efficacy against . Preparation of pure enantiomers demonstrated the pharmacological superiority of ()-. Synthesis and evaluation of D- and F-ring substitution variants and benzofuran isosteres indicated a clear structure-activity relationship. Ultimately ()- was tested in -infected mice; unfavorable physicochemical properties may be responsible for the lack of oral efficacy.
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http://dx.doi.org/10.1021/acsmedchemlett.1c00697 | DOI Listing |
ACS Med Chem Lett
March 2022
Department of Chemistry and Virginia Tech Center for Drug Discovery, Virginia Tech, 1040 Drillfield Drive, Blacksburg, Virginia 24061, United States.
The tetrahydro-β-carboline scaffold has proven fertile ground for the discovery of antimalarial agents (e.g., MMV008138 () and cipargamin ()).
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