Spiroindolones, a potent compound class for the treatment of malaria
Recent reports of increased tolerance to artemisinin derivatives - the most recently adopted class of antimalarials - have prompted a need for new treatments. The spirotetrahydro-β-carbolines, or spiroindolones, are potent drugs that kill the blood stages of Plasmodium falciparum and Plasmodium viva...
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th-mahidol.299812018-09-24T16:47:49Z Spiroindolones, a potent compound class for the treatment of malaria Matthias Rottmann Case McNamara Bryan K.S. Yeung Marcus C.S. Lee Bin Zou Bruce Russell Patrick Seitz David M. Plouffe Neekesh V. Dharia Jocelyn Tan Steven B. Cohen Kathryn R. Spencer Gonzalo E. González-Páez Suresh B. Lakshminarayana Anne Goh Rossarin Suwanarusk Timothy Jegla Esther K. Schmitt Hans Peter Beck Reto Brun Francois Nosten Laurent Renia Veronique Dartois Thomas H. Keller David A. Fidock Elizabeth A. Winzeler Thierry T. Diagana Swiss Tropical and Public Health Institute (Swiss TPH) Universitat Basel The Genomics Institute of the Novartis Research Foundation Novartis Institute for Tropical Diseases Pte. Ltd. Columbia University Medical Center Agency for Science, Technology and Research, Singapore National University of Singapore Scripps Research Institute Pennsylvania State University Novartis International AG Shoklo Malaria Research Unit Mahidol University Nuffield Department of Clinical Medicine Multidisciplinary Recent reports of increased tolerance to artemisinin derivatives - the most recently adopted class of antimalarials - have prompted a need for new treatments. The spirotetrahydro-β-carbolines, or spiroindolones, are potent drugs that kill the blood stages of Plasmodium falciparum and Plasmodium vivax clinical isolates at low nanomolar concentration. Spiroindolones rapidly inhibit protein synthesis in P. falciparum, an effect that is ablated in parasites bearing nonsynonymous mutations in the gene encoding the P-type cation-transporter ATPase4 (PfATP4). The optimized spiroindolone NITD609 shows pharmacokinetic properties compatible with once-daily oral dosing and has single-dose efficacy in a rodent malaria model. 2018-09-24T09:47:49Z 2018-09-24T09:47:49Z 2010-09-03 Article Science. Vol.329, No.5996 (2010), 1175-1180 10.1126/science.1193225 10959203 00368075 2-s2.0-77956280420 https://repository.li.mahidol.ac.th/handle/123456789/29981 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=77956280420&origin=inward |
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Multidisciplinary Matthias Rottmann Case McNamara Bryan K.S. Yeung Marcus C.S. Lee Bin Zou Bruce Russell Patrick Seitz David M. Plouffe Neekesh V. Dharia Jocelyn Tan Steven B. Cohen Kathryn R. Spencer Gonzalo E. González-Páez Suresh B. Lakshminarayana Anne Goh Rossarin Suwanarusk Timothy Jegla Esther K. Schmitt Hans Peter Beck Reto Brun Francois Nosten Laurent Renia Veronique Dartois Thomas H. Keller David A. Fidock Elizabeth A. Winzeler Thierry T. Diagana Spiroindolones, a potent compound class for the treatment of malaria |
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Recent reports of increased tolerance to artemisinin derivatives - the most recently adopted class of antimalarials - have prompted a need for new treatments. The spirotetrahydro-β-carbolines, or spiroindolones, are potent drugs that kill the blood stages of Plasmodium falciparum and Plasmodium vivax clinical isolates at low nanomolar concentration. Spiroindolones rapidly inhibit protein synthesis in P. falciparum, an effect that is ablated in parasites bearing nonsynonymous mutations in the gene encoding the P-type cation-transporter ATPase4 (PfATP4). The optimized spiroindolone NITD609 shows pharmacokinetic properties compatible with once-daily oral dosing and has single-dose efficacy in a rodent malaria model. |
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Swiss Tropical and Public Health Institute (Swiss TPH) |
author_facet |
Swiss Tropical and Public Health Institute (Swiss TPH) Matthias Rottmann Case McNamara Bryan K.S. Yeung Marcus C.S. Lee Bin Zou Bruce Russell Patrick Seitz David M. Plouffe Neekesh V. Dharia Jocelyn Tan Steven B. Cohen Kathryn R. Spencer Gonzalo E. González-Páez Suresh B. Lakshminarayana Anne Goh Rossarin Suwanarusk Timothy Jegla Esther K. Schmitt Hans Peter Beck Reto Brun Francois Nosten Laurent Renia Veronique Dartois Thomas H. Keller David A. Fidock Elizabeth A. Winzeler Thierry T. Diagana |
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Article |
author |
Matthias Rottmann Case McNamara Bryan K.S. Yeung Marcus C.S. Lee Bin Zou Bruce Russell Patrick Seitz David M. Plouffe Neekesh V. Dharia Jocelyn Tan Steven B. Cohen Kathryn R. Spencer Gonzalo E. González-Páez Suresh B. Lakshminarayana Anne Goh Rossarin Suwanarusk Timothy Jegla Esther K. Schmitt Hans Peter Beck Reto Brun Francois Nosten Laurent Renia Veronique Dartois Thomas H. Keller David A. Fidock Elizabeth A. Winzeler Thierry T. Diagana |
author_sort |
Matthias Rottmann |
title |
Spiroindolones, a potent compound class for the treatment of malaria |
title_short |
Spiroindolones, a potent compound class for the treatment of malaria |
title_full |
Spiroindolones, a potent compound class for the treatment of malaria |
title_fullStr |
Spiroindolones, a potent compound class for the treatment of malaria |
title_full_unstemmed |
Spiroindolones, a potent compound class for the treatment of malaria |
title_sort |
spiroindolones, a potent compound class for the treatment of malaria |
publishDate |
2018 |
url |
https://repository.li.mahidol.ac.th/handle/123456789/29981 |
_version_ |
1763495900520382464 |