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Selection of N86F184D1246 haplotype of Pfmrd1 gene by artemether–lumefantrine drug pressure on Plasmodium falciparum populations in Senegal

BACKGROUND: The use of artemisinin as a monotherapy resulted in the emergence of artemisinin resistance in 2005 in Southeast Asia. Monitoring of artemisinin combination therapy (ACT) is critical in order to detect and prevent the spread of resistance in endemic areas. Ex vivo studies and genotyping...

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Autores principales: Mbaye, Aminata, Dieye, Baba, Ndiaye, Yaye D., Bei, Amy K., Muna, Affara, Deme, Awa B., Yade, Mamadou S., Diongue, Khadim, Gaye, Amy, Ndiaye, Ibrahima M., Ndiaye, Tolla, Sy, Mouhamad, Diallo, Mamadou A., Badiane, Aida S., Ndiaye, Mouhamadou, Seck, Mame C., Sy, Ngayo, Koita, Ousmane, Krogstad, Donald J., Nwakanma, Davis, Ndiaye, Daouda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5000460/
https://www.ncbi.nlm.nih.gov/pubmed/27562216
http://dx.doi.org/10.1186/s12936-016-1490-4
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author Mbaye, Aminata
Dieye, Baba
Ndiaye, Yaye D.
Bei, Amy K.
Muna, Affara
Deme, Awa B.
Yade, Mamadou S.
Diongue, Khadim
Gaye, Amy
Ndiaye, Ibrahima M.
Ndiaye, Tolla
Sy, Mouhamad
Diallo, Mamadou A.
Badiane, Aida S.
Ndiaye, Mouhamadou
Seck, Mame C.
Sy, Ngayo
Koita, Ousmane
Krogstad, Donald J.
Nwakanma, Davis
Ndiaye, Daouda
author_facet Mbaye, Aminata
Dieye, Baba
Ndiaye, Yaye D.
Bei, Amy K.
Muna, Affara
Deme, Awa B.
Yade, Mamadou S.
Diongue, Khadim
Gaye, Amy
Ndiaye, Ibrahima M.
Ndiaye, Tolla
Sy, Mouhamad
Diallo, Mamadou A.
Badiane, Aida S.
Ndiaye, Mouhamadou
Seck, Mame C.
Sy, Ngayo
Koita, Ousmane
Krogstad, Donald J.
Nwakanma, Davis
Ndiaye, Daouda
author_sort Mbaye, Aminata
collection PubMed
description BACKGROUND: The use of artemisinin as a monotherapy resulted in the emergence of artemisinin resistance in 2005 in Southeast Asia. Monitoring of artemisinin combination therapy (ACT) is critical in order to detect and prevent the spread of resistance in endemic areas. Ex vivo studies and genotyping of molecular markers of resistance can be used as part of this routine monitoring strategy. One gene that has been associated in some ACT partner drug resistance is the Plasmodium falciparum multidrug resistance protein 1 (pfmdr1) gene. The purpose of this study was to assess the drug susceptibility of P. falciparum populations from Thiès, Senegal by ex vivo assay and typing molecular markers of resistance to drug components of ACT currently used for treatment. METHODS: The ex vivo susceptibility of 170 P. falciparum isolates to chloroquine, amodiaquine, lumefantrine, artesunate, and artemether was determined using the DAPI ex vivo assay. The high resolution melting technique was used to genotype the pfmdr1 gene at codons 86, 184 and 1246. RESULTS: A significant decrease in IC50 values was observed between 2012 and 2013: from 13.84 to 6.484 for amodiaquine, 173.4 to 113.2 for lumefantrine, and 39.72 to 18.29 for chloroquine, respectively. Increase of the wild haplotype NYD and the decrease of the mutant haplotype NFD (79 and 62.26 %) was also observed. A correlation was observed between the wild type allele Y184 in pfmdr1 and higher IC50 for all drugs, except amodiaquine. CONCLUSION: This study has shown an increase in sensitivity over the span of two transmission seasons, marked by an increase in the WT alleles at pfmdr1. Continuous the monitoring of the ACT used for treatment of uncomplicated malaria will be helpful.
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spelling pubmed-50004602016-08-27 Selection of N86F184D1246 haplotype of Pfmrd1 gene by artemether–lumefantrine drug pressure on Plasmodium falciparum populations in Senegal Mbaye, Aminata Dieye, Baba Ndiaye, Yaye D. Bei, Amy K. Muna, Affara Deme, Awa B. Yade, Mamadou S. Diongue, Khadim Gaye, Amy Ndiaye, Ibrahima M. Ndiaye, Tolla Sy, Mouhamad Diallo, Mamadou A. Badiane, Aida S. Ndiaye, Mouhamadou Seck, Mame C. Sy, Ngayo Koita, Ousmane Krogstad, Donald J. Nwakanma, Davis Ndiaye, Daouda Malar J Research BACKGROUND: The use of artemisinin as a monotherapy resulted in the emergence of artemisinin resistance in 2005 in Southeast Asia. Monitoring of artemisinin combination therapy (ACT) is critical in order to detect and prevent the spread of resistance in endemic areas. Ex vivo studies and genotyping of molecular markers of resistance can be used as part of this routine monitoring strategy. One gene that has been associated in some ACT partner drug resistance is the Plasmodium falciparum multidrug resistance protein 1 (pfmdr1) gene. The purpose of this study was to assess the drug susceptibility of P. falciparum populations from Thiès, Senegal by ex vivo assay and typing molecular markers of resistance to drug components of ACT currently used for treatment. METHODS: The ex vivo susceptibility of 170 P. falciparum isolates to chloroquine, amodiaquine, lumefantrine, artesunate, and artemether was determined using the DAPI ex vivo assay. The high resolution melting technique was used to genotype the pfmdr1 gene at codons 86, 184 and 1246. RESULTS: A significant decrease in IC50 values was observed between 2012 and 2013: from 13.84 to 6.484 for amodiaquine, 173.4 to 113.2 for lumefantrine, and 39.72 to 18.29 for chloroquine, respectively. Increase of the wild haplotype NYD and the decrease of the mutant haplotype NFD (79 and 62.26 %) was also observed. A correlation was observed between the wild type allele Y184 in pfmdr1 and higher IC50 for all drugs, except amodiaquine. CONCLUSION: This study has shown an increase in sensitivity over the span of two transmission seasons, marked by an increase in the WT alleles at pfmdr1. Continuous the monitoring of the ACT used for treatment of uncomplicated malaria will be helpful. BioMed Central 2016-08-25 /pmc/articles/PMC5000460/ /pubmed/27562216 http://dx.doi.org/10.1186/s12936-016-1490-4 Text en © The Author(s) 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Mbaye, Aminata
Dieye, Baba
Ndiaye, Yaye D.
Bei, Amy K.
Muna, Affara
Deme, Awa B.
Yade, Mamadou S.
Diongue, Khadim
Gaye, Amy
Ndiaye, Ibrahima M.
Ndiaye, Tolla
Sy, Mouhamad
Diallo, Mamadou A.
Badiane, Aida S.
Ndiaye, Mouhamadou
Seck, Mame C.
Sy, Ngayo
Koita, Ousmane
Krogstad, Donald J.
Nwakanma, Davis
Ndiaye, Daouda
Selection of N86F184D1246 haplotype of Pfmrd1 gene by artemether–lumefantrine drug pressure on Plasmodium falciparum populations in Senegal
title Selection of N86F184D1246 haplotype of Pfmrd1 gene by artemether–lumefantrine drug pressure on Plasmodium falciparum populations in Senegal
title_full Selection of N86F184D1246 haplotype of Pfmrd1 gene by artemether–lumefantrine drug pressure on Plasmodium falciparum populations in Senegal
title_fullStr Selection of N86F184D1246 haplotype of Pfmrd1 gene by artemether–lumefantrine drug pressure on Plasmodium falciparum populations in Senegal
title_full_unstemmed Selection of N86F184D1246 haplotype of Pfmrd1 gene by artemether–lumefantrine drug pressure on Plasmodium falciparum populations in Senegal
title_short Selection of N86F184D1246 haplotype of Pfmrd1 gene by artemether–lumefantrine drug pressure on Plasmodium falciparum populations in Senegal
title_sort selection of n86f184d1246 haplotype of pfmrd1 gene by artemether–lumefantrine drug pressure on plasmodium falciparum populations in senegal
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5000460/
https://www.ncbi.nlm.nih.gov/pubmed/27562216
http://dx.doi.org/10.1186/s12936-016-1490-4
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