A tetraoxane-based antimalarial drug candidate that overcomes PfK13-C580Y dependent artemisinin resistance
Artemisinin-resistantPlasmodium is an increasing problem. Here, using a medicinal chemistry programme, the authors identify a tetraoxane-based drug candidate that shows no cross-resistance with an artemisinin-resistant strain (PfK13-C580Y) and is efficient in Plasmodiummouse models.
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Nature Portfolio
2017
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oai:doaj.org-article:d0b09995908d4fd1a466aa398f702f2f2021-12-02T15:38:53ZA tetraoxane-based antimalarial drug candidate that overcomes PfK13-C580Y dependent artemisinin resistance10.1038/ncomms151592041-1723https://doaj.org/article/d0b09995908d4fd1a466aa398f702f2f2017-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms15159https://doaj.org/toc/2041-1723Artemisinin-resistantPlasmodium is an increasing problem. Here, using a medicinal chemistry programme, the authors identify a tetraoxane-based drug candidate that shows no cross-resistance with an artemisinin-resistant strain (PfK13-C580Y) and is efficient in Plasmodiummouse models.Paul M. O’NeillRichard K. AmewuSusan A. CharmanSunil SabbaniNina F. GnädigJudith StraimerDavid A. FidockEmma R. ShoreNatalie L. RobertsMichael H.-L. WongW. David HongChandrakala PidathalaChris RileyBen MurphyGhaith AljayyoussiFrancisco Javier GamoLaura SanzJanneth RodriguesCarolina Gonzalez CortesEsperanza HerrerosIñigo Angulo-BarturénMaría Belén Jiménez-DíazSantiago Ferrer BazagaMaría Santos Martínez-MartínezBrice CampoRaman SharmaEileen RyanDavid M. ShacklefordSimon CampbellDennis A. SmithGrennady WirjanataRintis NoviyantiRic N. PriceJutta MarfurtMichael J. PalmerIan M. CoppleAmy E. MercerAndrea RueckerMichael J. DelvesRobert E. SindenPeter SieglJill DaviesRosemary RochfordClemens H. M. KockenAnne-Marie ZeemanGemma L. NixonGiancarlo A. BiaginiStephen A. WardNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-10 (2017) |
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Science Q Paul M. O’Neill Richard K. Amewu Susan A. Charman Sunil Sabbani Nina F. Gnädig Judith Straimer David A. Fidock Emma R. Shore Natalie L. Roberts Michael H.-L. Wong W. David Hong Chandrakala Pidathala Chris Riley Ben Murphy Ghaith Aljayyoussi Francisco Javier Gamo Laura Sanz Janneth Rodrigues Carolina Gonzalez Cortes Esperanza Herreros Iñigo Angulo-Barturén María Belén Jiménez-Díaz Santiago Ferrer Bazaga María Santos Martínez-Martínez Brice Campo Raman Sharma Eileen Ryan David M. Shackleford Simon Campbell Dennis A. Smith Grennady Wirjanata Rintis Noviyanti Ric N. Price Jutta Marfurt Michael J. Palmer Ian M. Copple Amy E. Mercer Andrea Ruecker Michael J. Delves Robert E. Sinden Peter Siegl Jill Davies Rosemary Rochford Clemens H. M. Kocken Anne-Marie Zeeman Gemma L. Nixon Giancarlo A. Biagini Stephen A. Ward A tetraoxane-based antimalarial drug candidate that overcomes PfK13-C580Y dependent artemisinin resistance |
description |
Artemisinin-resistantPlasmodium is an increasing problem. Here, using a medicinal chemistry programme, the authors identify a tetraoxane-based drug candidate that shows no cross-resistance with an artemisinin-resistant strain (PfK13-C580Y) and is efficient in Plasmodiummouse models. |
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author |
Paul M. O’Neill Richard K. Amewu Susan A. Charman Sunil Sabbani Nina F. Gnädig Judith Straimer David A. Fidock Emma R. Shore Natalie L. Roberts Michael H.-L. Wong W. David Hong Chandrakala Pidathala Chris Riley Ben Murphy Ghaith Aljayyoussi Francisco Javier Gamo Laura Sanz Janneth Rodrigues Carolina Gonzalez Cortes Esperanza Herreros Iñigo Angulo-Barturén María Belén Jiménez-Díaz Santiago Ferrer Bazaga María Santos Martínez-Martínez Brice Campo Raman Sharma Eileen Ryan David M. Shackleford Simon Campbell Dennis A. Smith Grennady Wirjanata Rintis Noviyanti Ric N. Price Jutta Marfurt Michael J. Palmer Ian M. Copple Amy E. Mercer Andrea Ruecker Michael J. Delves Robert E. Sinden Peter Siegl Jill Davies Rosemary Rochford Clemens H. M. Kocken Anne-Marie Zeeman Gemma L. Nixon Giancarlo A. Biagini Stephen A. Ward |
author_facet |
Paul M. O’Neill Richard K. Amewu Susan A. Charman Sunil Sabbani Nina F. Gnädig Judith Straimer David A. Fidock Emma R. Shore Natalie L. Roberts Michael H.-L. Wong W. David Hong Chandrakala Pidathala Chris Riley Ben Murphy Ghaith Aljayyoussi Francisco Javier Gamo Laura Sanz Janneth Rodrigues Carolina Gonzalez Cortes Esperanza Herreros Iñigo Angulo-Barturén María Belén Jiménez-Díaz Santiago Ferrer Bazaga María Santos Martínez-Martínez Brice Campo Raman Sharma Eileen Ryan David M. Shackleford Simon Campbell Dennis A. Smith Grennady Wirjanata Rintis Noviyanti Ric N. Price Jutta Marfurt Michael J. Palmer Ian M. Copple Amy E. Mercer Andrea Ruecker Michael J. Delves Robert E. Sinden Peter Siegl Jill Davies Rosemary Rochford Clemens H. M. Kocken Anne-Marie Zeeman Gemma L. Nixon Giancarlo A. Biagini Stephen A. Ward |
author_sort |
Paul M. O’Neill |
title |
A tetraoxane-based antimalarial drug candidate that overcomes PfK13-C580Y dependent artemisinin resistance |
title_short |
A tetraoxane-based antimalarial drug candidate that overcomes PfK13-C580Y dependent artemisinin resistance |
title_full |
A tetraoxane-based antimalarial drug candidate that overcomes PfK13-C580Y dependent artemisinin resistance |
title_fullStr |
A tetraoxane-based antimalarial drug candidate that overcomes PfK13-C580Y dependent artemisinin resistance |
title_full_unstemmed |
A tetraoxane-based antimalarial drug candidate that overcomes PfK13-C580Y dependent artemisinin resistance |
title_sort |
tetraoxane-based antimalarial drug candidate that overcomes pfk13-c580y dependent artemisinin resistance |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/d0b09995908d4fd1a466aa398f702f2f |
work_keys_str_mv |
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