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A broad analysis of resistance development in the malaria parasite

Microbial resistance to chemotherapy has caused countless deaths where malaria is endemic. Chemotherapy may fail either due to pre-existing resistance or evolution of drug-resistant parasites. Here we use a diverse set of antimalarial compounds to investigate the acquisition of drug resistance and t...

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Autores principales: Corey, Victoria C., Lukens, Amanda K., Istvan, Eva S., Lee, Marcus C. S., Franco, Virginia, Magistrado, Pamela, Coburn-Flynn, Olivia, Sakata-Kato, Tomoyo, Fuchs, Olivia, Gnädig, Nina F., Goldgof, Greg, Linares, Maria, Gomez-Lorenzo, Maria G., De Cózar, Cristina, Lafuente-Monasterio, Maria Jose, Prats, Sara, Meister, Stephan, Tanaseichuk, Olga, Wree, Melanie, Zhou, Yingyao, Willis, Paul A., Gamo, Francisco-Javier, Goldberg, Daniel E., Fidock, David A., Wirth, Dyann F., Winzeler, Elizabeth A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4912613/
https://www.ncbi.nlm.nih.gov/pubmed/27301419
http://dx.doi.org/10.1038/ncomms11901
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author Corey, Victoria C.
Lukens, Amanda K.
Istvan, Eva S.
Lee, Marcus C. S.
Franco, Virginia
Magistrado, Pamela
Coburn-Flynn, Olivia
Sakata-Kato, Tomoyo
Fuchs, Olivia
Gnädig, Nina F.
Goldgof, Greg
Linares, Maria
Gomez-Lorenzo, Maria G.
De Cózar, Cristina
Lafuente-Monasterio, Maria Jose
Prats, Sara
Meister, Stephan
Tanaseichuk, Olga
Wree, Melanie
Zhou, Yingyao
Willis, Paul A.
Gamo, Francisco-Javier
Goldberg, Daniel E.
Fidock, David A.
Wirth, Dyann F.
Winzeler, Elizabeth A.
author_facet Corey, Victoria C.
Lukens, Amanda K.
Istvan, Eva S.
Lee, Marcus C. S.
Franco, Virginia
Magistrado, Pamela
Coburn-Flynn, Olivia
Sakata-Kato, Tomoyo
Fuchs, Olivia
Gnädig, Nina F.
Goldgof, Greg
Linares, Maria
Gomez-Lorenzo, Maria G.
De Cózar, Cristina
Lafuente-Monasterio, Maria Jose
Prats, Sara
Meister, Stephan
Tanaseichuk, Olga
Wree, Melanie
Zhou, Yingyao
Willis, Paul A.
Gamo, Francisco-Javier
Goldberg, Daniel E.
Fidock, David A.
Wirth, Dyann F.
Winzeler, Elizabeth A.
author_sort Corey, Victoria C.
collection PubMed
description Microbial resistance to chemotherapy has caused countless deaths where malaria is endemic. Chemotherapy may fail either due to pre-existing resistance or evolution of drug-resistant parasites. Here we use a diverse set of antimalarial compounds to investigate the acquisition of drug resistance and the degree of cross-resistance against common resistance alleles. We assess cross-resistance using a set of 15 parasite lines carrying resistance-conferring alleles in pfatp4, cytochrome bc(1), pfcarl, pfdhod, pfcrt, pfmdr, pfdhfr, cytoplasmic prolyl t-RNA synthetase or hsp90. Subsequently, we assess whether resistant parasites can be obtained after several rounds of drug selection. Twenty-three of the 48 in vitro selections result in resistant parasites, with time to resistance onset ranging from 15 to 300 days. Our data indicate that pre-existing resistance may not be a major hurdle for novel-target antimalarial candidates, and focusing our attention on fast-killing compounds may result in a slower onset of clinical resistance.
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spelling pubmed-49126132016-06-29 A broad analysis of resistance development in the malaria parasite Corey, Victoria C. Lukens, Amanda K. Istvan, Eva S. Lee, Marcus C. S. Franco, Virginia Magistrado, Pamela Coburn-Flynn, Olivia Sakata-Kato, Tomoyo Fuchs, Olivia Gnädig, Nina F. Goldgof, Greg Linares, Maria Gomez-Lorenzo, Maria G. De Cózar, Cristina Lafuente-Monasterio, Maria Jose Prats, Sara Meister, Stephan Tanaseichuk, Olga Wree, Melanie Zhou, Yingyao Willis, Paul A. Gamo, Francisco-Javier Goldberg, Daniel E. Fidock, David A. Wirth, Dyann F. Winzeler, Elizabeth A. Nat Commun Article Microbial resistance to chemotherapy has caused countless deaths where malaria is endemic. Chemotherapy may fail either due to pre-existing resistance or evolution of drug-resistant parasites. Here we use a diverse set of antimalarial compounds to investigate the acquisition of drug resistance and the degree of cross-resistance against common resistance alleles. We assess cross-resistance using a set of 15 parasite lines carrying resistance-conferring alleles in pfatp4, cytochrome bc(1), pfcarl, pfdhod, pfcrt, pfmdr, pfdhfr, cytoplasmic prolyl t-RNA synthetase or hsp90. Subsequently, we assess whether resistant parasites can be obtained after several rounds of drug selection. Twenty-three of the 48 in vitro selections result in resistant parasites, with time to resistance onset ranging from 15 to 300 days. Our data indicate that pre-existing resistance may not be a major hurdle for novel-target antimalarial candidates, and focusing our attention on fast-killing compounds may result in a slower onset of clinical resistance. Nature Publishing Group 2016-06-15 /pmc/articles/PMC4912613/ /pubmed/27301419 http://dx.doi.org/10.1038/ncomms11901 Text en Copyright © 2016, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Corey, Victoria C.
Lukens, Amanda K.
Istvan, Eva S.
Lee, Marcus C. S.
Franco, Virginia
Magistrado, Pamela
Coburn-Flynn, Olivia
Sakata-Kato, Tomoyo
Fuchs, Olivia
Gnädig, Nina F.
Goldgof, Greg
Linares, Maria
Gomez-Lorenzo, Maria G.
De Cózar, Cristina
Lafuente-Monasterio, Maria Jose
Prats, Sara
Meister, Stephan
Tanaseichuk, Olga
Wree, Melanie
Zhou, Yingyao
Willis, Paul A.
Gamo, Francisco-Javier
Goldberg, Daniel E.
Fidock, David A.
Wirth, Dyann F.
Winzeler, Elizabeth A.
A broad analysis of resistance development in the malaria parasite
title A broad analysis of resistance development in the malaria parasite
title_full A broad analysis of resistance development in the malaria parasite
title_fullStr A broad analysis of resistance development in the malaria parasite
title_full_unstemmed A broad analysis of resistance development in the malaria parasite
title_short A broad analysis of resistance development in the malaria parasite
title_sort broad analysis of resistance development in the malaria parasite
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4912613/
https://www.ncbi.nlm.nih.gov/pubmed/27301419
http://dx.doi.org/10.1038/ncomms11901
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