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Antimalarial efficacy of MMV390048, an inhibitor of Plasmodium phosphatidylinositol 4-kinase
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 3827605
Author(s) Paquet, Tanya; Le Manach, Claire; Cabrera, Diego González; Younis, Yassir; Henrich, Philipp P.; Abraham, Tara S.; Lee, Marcus C. S.; Basak, Rajshekhar; Ghidelli-Disse, Sonja; Lafuente-Monasterio, María José; Bantscheff, Marcus; Ruecker, Andrea; Blagborough, Andrew M.; Zakutansky, Sara E.; Zeeman, Anne-Marie; White, Karen L.; Shackleford, David M.; Mannila, Janne; Morizzi, Julia; Scheurer, Christian; Angulo-Barturen, Iñigo; Martínez, María Santos; Ferrer, Santiago; Sanz, Laura María; Gamo, Francisco Javier; Reader, Janette; Botha, Mariette; Dechering, Koen J.; Sauerwein, Robert W.; Tungtaeng, Anchalee; Vanachayangkul, Pattaraporn; Lim, Chek Shik; Burrows, Jeremy; Witty, Michael J.; Marsh, Kennan C.; Bodenreider, Christophe; Rochford, Rosemary; Solapure, Suresh M.; Jiménez-Díaz, María Belén; Wittlin, Sergio; Charman, Susan A.; Donini, Cristina; Campo, Brice; Birkholtz, Lyn-Marie; Hanson, Kirsten K.; Drewes, Gerard; Kocken, Clemens H. M.; Delves, Michael J.; Leroy, Didier; Fidock, David A.; Waterson, David; Street, Leslie J.; Chibale, Kelly
Author(s) at UniBasel Scheurer, Christian
Year 2017
Title Antimalarial efficacy of MMV390048, an inhibitor of Plasmodium phosphatidylinositol 4-kinase
Journal Science translational medicine
Volume 9
Number 387
Pages / Article-Number eaad9735
Abstract As part of the global effort toward malaria eradication, phenotypic whole-cell screening revealed the 2-aminopyridine class of small molecules as a good starting point to develop new antimalarial drugs. Stemming from this series, we found that the derivative, MMV390048, lacked cross-resistance with current drugs used to treat malaria. This compound was efficacious against all Plasmodium life cycle stages, apart from late hypnozoites in the liver. Efficacy was shown in the humanized Plasmodium falciparum mouse model, and modest reductions in mouse-to-mouse transmission were achieved in the Plasmodium berghei mouse model. Experiments in monkeys revealed the ability of MMV390048 to be used for full chemoprotection. Although MMV390048 was not able to eliminate liver hypnozoites, it delayed relapse in a Plasmodium cynomolgi monkey model. Both genomic and chemoproteomic studies identified a kinase of the Plasmodium parasite, phosphatidylinositol 4-kinase, as the molecular target of MMV390048. The ability of MMV390048 to block all life cycle stages of the malaria parasite suggests that this compound should be further developed and may contribute to malaria control and eradication as part of a single-dose combination treatment.
Publisher American Association for the Advancement of Science
ISSN/ISBN 1946-6234
edoc-URL http://edoc.unibas.ch/55098/
Full Text on edoc No
Digital Object Identifier DOI 10.1126/scitranslmed.aad9735
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/28446690
ISI-Number WOS:000400128600001
Document type (ISI) Journal Article
 
   

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06/05/2024