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Identification of 2,4-disubstituted imidazopyridines as hemozoin formation inhibitors with fast-killing kinetics and in vivo efficacy in the Plasmodium falciparum NSG mouse model

Horatscheck, A. and Andrijevic, A. and Nchinda, A. T. and Le Manach, C. and Paquet, T. and Khonde, L. P. and Dam, J. and Pawar, K. and Taylor, D. and Lawrence, N. and Brunschwig, C. and Gibhard, L. and Njoroge, M. and Reader, J. and van der Watt, M. and Wicht, K. and de Sousa, A. C. C. and Okombo, J. and Maepa, K. and Egan, T. J. and Birkholtz, L. M. and Basarab, G. S. and Wittlin, S. and Fish, P. V. and Street, L. J. and Duffy, J. and Chibale, K.. (2020) Identification of 2,4-disubstituted imidazopyridines as hemozoin formation inhibitors with fast-killing kinetics and in vivo efficacy in the Plasmodium falciparum NSG mouse model. Journal of medicinal chemistry, 63 (21). pp. 13013-13030.

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Official URL: https://edoc.unibas.ch/91161/

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Abstract

A series of 2,4-disubstituted imidazopyridines, originating from a SoftFocus Kinase library, was identified from a high throughput phenotypic screen against the human malaria parasite Plasmodium falciparum. Hit compounds showed moderate asexual blood stage activity. During lead optimization, several issues were flagged such as cross-resistance against the multidrug-resistant K1 strain, in vitro cytotoxicity, and cardiotoxicity and were addressed through structure-activity and structure-property relationship studies. Pharmacokinetic properties were assessed in mice for compounds showing desirable in vitro activity, a selectivity window over cytotoxicity, and microsomal metabolic stability. Frontrunner compound 37 showed good exposure in mice combined with good in vitro activity against the malaria parasite, which translated into in vivo efficacy in the P. falciparum NOD-scid IL-2Rgamma(null) (NSG) mouse model. Preliminary mechanistic studies suggest inhibition of hemozoin formation as a contributing mode of action.
Faculties and Departments:09 Associated Institutions > Swiss Tropical and Public Health Institute (Swiss TPH)
09 Associated Institutions > Swiss Tropical and Public Health Institute (Swiss TPH) > Department of Medical Parasitology and Infection Biology (MPI) > Parasite Chemotherapy (Mäser)
UniBasel Contributors:Wittlin, Sergio
Item Type:Article, refereed
Article Subtype:Research Article
ISSN:0022-2623
Note:Publication type according to Uni Basel Research Database: Journal article
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Last Modified:28 Dec 2022 10:45
Deposited On:28 Dec 2022 10:45

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