New transmission-selective antimalarial agents through hit-to-lead optimization of 2-([1,1 '-Biphenyl]-4-carboxamido)benzoic acid derivatives

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Authors

Reader, Janette
Opperman, Daniel
Van der Watt, Mariette Elizabeth
Theron, Anjo
Leshabane, Meta Kgaogelo
Da Rocha, Michelle
Turner, Jonathan
Garrabrant, Kathleen
Pina, Ivett
Mills, Catherine

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Volume Title

Publisher

Wiley

Abstract

Malaria elimination requires multipronged approaches, including the application of antimalarial drugs able to block humanto- mosquito transmission of malaria parasites. The transmissible gametocytes of Plasmodium falciparum seem to be highly sensitive towards epidrugs, particularly those targeting demethylation of histone post-translational marks. Here, we report exploration of compounds from a chemical library generated during hit-to-lead optimization of inhibitors of the human histone lysine demethylase, KDM4B. Derivatives of 2-([1,1’- biphenyl]-4-carboxamido) benzoic acid, around either the amide or a sulfonamide linker backbone (2-(arylcarboxamido) benzoic acid, 2-carboxamide (arylsulfonamido)benzoic acid and N-(2-(1H-tetrazol-5-yl)phenyl)-arylcarboxamide), showed potent activity towards late-stage gametocytes (stage IV/V) of P. falciparum, with the most potent compound reaching single digit nanomolar activity. Structure-activity relationship trends were evident and frontrunner compounds also displayed microsomal stability and favourable solubility profiles. Simplified synthetic routes support further derivatization of these compounds for further development of these series as malaria transmission-blocking agents.

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Keywords

Antimalarials, Epigenetics, Gametocytes, Heterocycles, Inhibitors, Plasmodium, Malaria elimination

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Citation

Reader, J., Opperman, D,F.L., Van der Watt, M.E. et al. 2022, 'New transmission-selective antimalarial agents through hit-to-lead optimization of 2-([1,1 '-Biphenyl]-4-carboxamido)benzoic acid derivatives', ChemBioChem, vol. 23, no. 21, pp. 1-9, doi : 10.1002/cbic.202200427.