Ex vivo susceptibilities of Plasmodium vivax isolates from the China-Myanmar border to antimalarial drugs and association with polymorphisms in Pvmdr1 and Pvcrt-o genes.

<h4>Background</h4>Vivax malaria is an important public health problem in the Greater Mekong Subregion (GMS), including the China-Myanmar border. Previous studies have found that Plasmodium vivax has decreased sensitivity to antimalarial drugs in some areas of the GMS, but the sensitivit...

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Main Authors: Jiangyan Li, Jie Zhang, Qian Li, Yue Hu, Yonghua Ruan, Zhiyong Tao, Hui Xia, Jichen Qiao, Lingwen Meng, Weilin Zeng, Cuiying Li, Xi He, Luyi Zhao, Faiza A Siddiqui, Jun Miao, Zhaoqing Yang, Qiang Fang, Liwang Cui
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-06-01
Series:PLoS Neglected Tropical Diseases
Online Access:https://doi.org/10.1371/journal.pntd.0008255
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spelling doaj-114231b13a1b4d53993ecca4fbc820d22021-03-03T08:25:17ZengPublic Library of Science (PLoS)PLoS Neglected Tropical Diseases1935-27271935-27352020-06-01146e000825510.1371/journal.pntd.0008255Ex vivo susceptibilities of Plasmodium vivax isolates from the China-Myanmar border to antimalarial drugs and association with polymorphisms in Pvmdr1 and Pvcrt-o genes.Jiangyan LiJie ZhangQian LiYue HuYonghua RuanZhiyong TaoHui XiaJichen QiaoLingwen MengWeilin ZengCuiying LiXi HeLuyi ZhaoFaiza A SiddiquiJun MiaoZhaoqing YangQiang FangLiwang Cui<h4>Background</h4>Vivax malaria is an important public health problem in the Greater Mekong Subregion (GMS), including the China-Myanmar border. Previous studies have found that Plasmodium vivax has decreased sensitivity to antimalarial drugs in some areas of the GMS, but the sensitivity of P. vivax to antimalarial drugs is unclear in the China-Myanmar border. Here, we investigate the drug sensitivity profile and genetic variations for two drug resistance related genes in P. vivax isolates to provide baseline information for future drug studies in the China-Myanmar border.<h4>Methodology/principal findings</h4>A total of 64 P. vivax clinical isolates collected from the China-Myanmar border area were assessed for ex vivo susceptibility to eight antimalarial drugs by the schizont maturation assay. The medians of IC50 (half-maximum inhibitory concentrations) for chloroquine, mefloquine, pyronaridine, piperaquine, quinine, artesunate, artemether, dihydroartemisinin were 84.2 nM, 34.9 nM, 4.0 nM, 22.3 nM, 41.4 nM, 2.8 nM, 2.1 nM and 2.0 nM, respectively. Twelve P. vivax clinical isolates were found over the cut-off IC50 value (220 nM) for chloroquine resistance. In addition, sequence polymorphisms in pvmdr1 (P. vivax multidrug resistance-1), pvcrt-o (P. vivax chloroquine resistance transporter-o), and difference in pvmdr1 copy number were studied. Sequencing of the pvmdr1 gene in 52 samples identified 12 amino acid substitutions, among which two (G698S and T958M) were fixed, M908L were present in 98.1% of the isolates, while Y976F and F1076L were present in 3.8% and 78.8% of the isolates, respectively. Amplification of the pvmdr1 gene was only detected in 4.8% of the samples. Sequencing of the pvcrt-o in 59 parasite isolates identified a single lysine insertion at position 10 in 32.2% of the isolates. The pvmdr1 M908L substitutions in pvmdr1 in our samples was associated with reduced sensitivity to chloroquine, mefloquine, pyronaridine, piperaquine, quinine, artesunate and dihydroartemisinin.<h4>Conclusions</h4>Our findings depict a drug sensitivity profile and genetic variations of the P. vivax isolates from the China-Myanmar border area, and suggest possible emergence of chloroquine resistant P. vivax isolates in the region, which demands further efforts for resistance monitoring and mechanism studies.https://doi.org/10.1371/journal.pntd.0008255
collection DOAJ
language English
format Article
sources DOAJ
author Jiangyan Li
Jie Zhang
Qian Li
Yue Hu
Yonghua Ruan
Zhiyong Tao
Hui Xia
Jichen Qiao
Lingwen Meng
Weilin Zeng
Cuiying Li
Xi He
Luyi Zhao
Faiza A Siddiqui
Jun Miao
Zhaoqing Yang
Qiang Fang
Liwang Cui
spellingShingle Jiangyan Li
Jie Zhang
Qian Li
Yue Hu
Yonghua Ruan
Zhiyong Tao
Hui Xia
Jichen Qiao
Lingwen Meng
Weilin Zeng
Cuiying Li
Xi He
Luyi Zhao
Faiza A Siddiqui
Jun Miao
Zhaoqing Yang
Qiang Fang
Liwang Cui
Ex vivo susceptibilities of Plasmodium vivax isolates from the China-Myanmar border to antimalarial drugs and association with polymorphisms in Pvmdr1 and Pvcrt-o genes.
PLoS Neglected Tropical Diseases
author_facet Jiangyan Li
Jie Zhang
Qian Li
Yue Hu
Yonghua Ruan
Zhiyong Tao
Hui Xia
Jichen Qiao
Lingwen Meng
Weilin Zeng
Cuiying Li
Xi He
Luyi Zhao
Faiza A Siddiqui
Jun Miao
Zhaoqing Yang
Qiang Fang
Liwang Cui
author_sort Jiangyan Li
title Ex vivo susceptibilities of Plasmodium vivax isolates from the China-Myanmar border to antimalarial drugs and association with polymorphisms in Pvmdr1 and Pvcrt-o genes.
title_short Ex vivo susceptibilities of Plasmodium vivax isolates from the China-Myanmar border to antimalarial drugs and association with polymorphisms in Pvmdr1 and Pvcrt-o genes.
title_full Ex vivo susceptibilities of Plasmodium vivax isolates from the China-Myanmar border to antimalarial drugs and association with polymorphisms in Pvmdr1 and Pvcrt-o genes.
title_fullStr Ex vivo susceptibilities of Plasmodium vivax isolates from the China-Myanmar border to antimalarial drugs and association with polymorphisms in Pvmdr1 and Pvcrt-o genes.
title_full_unstemmed Ex vivo susceptibilities of Plasmodium vivax isolates from the China-Myanmar border to antimalarial drugs and association with polymorphisms in Pvmdr1 and Pvcrt-o genes.
title_sort ex vivo susceptibilities of plasmodium vivax isolates from the china-myanmar border to antimalarial drugs and association with polymorphisms in pvmdr1 and pvcrt-o genes.
publisher Public Library of Science (PLoS)
series PLoS Neglected Tropical Diseases
issn 1935-2727
1935-2735
publishDate 2020-06-01
description <h4>Background</h4>Vivax malaria is an important public health problem in the Greater Mekong Subregion (GMS), including the China-Myanmar border. Previous studies have found that Plasmodium vivax has decreased sensitivity to antimalarial drugs in some areas of the GMS, but the sensitivity of P. vivax to antimalarial drugs is unclear in the China-Myanmar border. Here, we investigate the drug sensitivity profile and genetic variations for two drug resistance related genes in P. vivax isolates to provide baseline information for future drug studies in the China-Myanmar border.<h4>Methodology/principal findings</h4>A total of 64 P. vivax clinical isolates collected from the China-Myanmar border area were assessed for ex vivo susceptibility to eight antimalarial drugs by the schizont maturation assay. The medians of IC50 (half-maximum inhibitory concentrations) for chloroquine, mefloquine, pyronaridine, piperaquine, quinine, artesunate, artemether, dihydroartemisinin were 84.2 nM, 34.9 nM, 4.0 nM, 22.3 nM, 41.4 nM, 2.8 nM, 2.1 nM and 2.0 nM, respectively. Twelve P. vivax clinical isolates were found over the cut-off IC50 value (220 nM) for chloroquine resistance. In addition, sequence polymorphisms in pvmdr1 (P. vivax multidrug resistance-1), pvcrt-o (P. vivax chloroquine resistance transporter-o), and difference in pvmdr1 copy number were studied. Sequencing of the pvmdr1 gene in 52 samples identified 12 amino acid substitutions, among which two (G698S and T958M) were fixed, M908L were present in 98.1% of the isolates, while Y976F and F1076L were present in 3.8% and 78.8% of the isolates, respectively. Amplification of the pvmdr1 gene was only detected in 4.8% of the samples. Sequencing of the pvcrt-o in 59 parasite isolates identified a single lysine insertion at position 10 in 32.2% of the isolates. The pvmdr1 M908L substitutions in pvmdr1 in our samples was associated with reduced sensitivity to chloroquine, mefloquine, pyronaridine, piperaquine, quinine, artesunate and dihydroartemisinin.<h4>Conclusions</h4>Our findings depict a drug sensitivity profile and genetic variations of the P. vivax isolates from the China-Myanmar border area, and suggest possible emergence of chloroquine resistant P. vivax isolates in the region, which demands further efforts for resistance monitoring and mechanism studies.
url https://doi.org/10.1371/journal.pntd.0008255
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