Polymorphisms of Plasmodium falciparum k13-propeller gene among migrant workers returning to Henan Province, China from Africa

Abstract Background Henan Province has been in the malaria elimination stage, with all reports of the disease being imported since 2012 and over 90% coming from Africa. Surveillance and population studies are essential for the early detection and subsequent prevention of the spread of drug resistanc...

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Main Authors: Chengyun Yang, Hongwei Zhang, Ruimin Zhou, Dan Qian, Ying Liu, Yuling Zhao, Suhua Li, Bianli Xu
Format: Article
Language:English
Published: BMC 2017-08-01
Series:BMC Infectious Diseases
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12879-017-2634-z
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spelling doaj-d828eac0ff2140a880f1d41c518a26a52020-11-25T03:41:52ZengBMCBMC Infectious Diseases1471-23342017-08-011711810.1186/s12879-017-2634-zPolymorphisms of Plasmodium falciparum k13-propeller gene among migrant workers returning to Henan Province, China from AfricaChengyun Yang0Hongwei Zhang1Ruimin Zhou2Dan Qian3Ying Liu4Yuling Zhao5Suhua Li6Bianli Xu7Department of Parasite Disease Control and Prevention, Henan Province Center for Disease Control and PreventionDepartment of Parasite Disease Control and Prevention, Henan Province Center for Disease Control and PreventionDepartment of Parasite Disease Control and Prevention, Henan Province Center for Disease Control and PreventionDepartment of Parasite Disease Control and Prevention, Henan Province Center for Disease Control and PreventionDepartment of Parasite Disease Control and Prevention, Henan Province Center for Disease Control and PreventionDepartment of Parasite Disease Control and Prevention, Henan Province Center for Disease Control and PreventionDepartment of Parasite Disease Control and Prevention, Henan Province Center for Disease Control and PreventionDepartment of Parasite Disease Control and Prevention, Henan Province Center for Disease Control and PreventionAbstract Background Henan Province has been in the malaria elimination stage, with all reports of the disease being imported since 2012 and over 90% coming from Africa. Surveillance and population studies are essential for the early detection and subsequent prevention of the spread of drug resistance. The K13-propeller gene was recently identified as a proposed molecular marker of artemisinin (ART) resistance. In this study, we detected mutations of the K13-propeller gene in samples taken from imported malaria cases in Henan Province from 2012 to 2015. Methods There were 483 samples that were obtained from Plasmodium falciparum–infected malaria migrant workers who returned to Henan Province from Africa between 2012 and 2015. The single nucleotide polymorphisms in the K13-propeller gene were assessed by nested PCR with DNA sequencing. Frequency and geographic difference of K13-propeller gene mutant types were analyzed. Results Of 483 patients, 476 were cured and 7 died. There were no K13-propeller mutations in the blood samples from the 7 patients who died, but there were 23 different genotypes of the K13-propeller that were observed in 24 (4.97%) of the samples. C580Y, which was the predominant one in the resistance of ART, was not detected in the samples, but R539T and P574L which have also been associated with ART resistance, were observed in two samples from Angola and Equatorial Guinea. No mutations were detected in 11 samples from North Africa. The frequency of the K13-propeller was 6.50% (8/123) in Central Africa, followed by East Africa (1/19, 5.26%), West Africa (9/198, 4.55%) and South Africa (6/132, 4.55%). There was no significant difference among these four areas (P = 0.795). Conclusion R539T and P574L were found in migrant workers who traveled from Africa to Henan Province, although the frequency of the K13-propeller mutants was low. These data may enrich the molecular surveillance of antimalarial resistance and will be helpful for developing and updating the antimalarial policy in Henan Province.http://link.springer.com/article/10.1186/s12879-017-2634-zImported malariaPlasmodium falciparumK13-propeller geneArtemisinin resistanceAfricaHenan Province
collection DOAJ
language English
format Article
sources DOAJ
author Chengyun Yang
Hongwei Zhang
Ruimin Zhou
Dan Qian
Ying Liu
Yuling Zhao
Suhua Li
Bianli Xu
spellingShingle Chengyun Yang
Hongwei Zhang
Ruimin Zhou
Dan Qian
Ying Liu
Yuling Zhao
Suhua Li
Bianli Xu
Polymorphisms of Plasmodium falciparum k13-propeller gene among migrant workers returning to Henan Province, China from Africa
BMC Infectious Diseases
Imported malaria
Plasmodium falciparum
K13-propeller gene
Artemisinin resistance
Africa
Henan Province
author_facet Chengyun Yang
Hongwei Zhang
Ruimin Zhou
Dan Qian
Ying Liu
Yuling Zhao
Suhua Li
Bianli Xu
author_sort Chengyun Yang
title Polymorphisms of Plasmodium falciparum k13-propeller gene among migrant workers returning to Henan Province, China from Africa
title_short Polymorphisms of Plasmodium falciparum k13-propeller gene among migrant workers returning to Henan Province, China from Africa
title_full Polymorphisms of Plasmodium falciparum k13-propeller gene among migrant workers returning to Henan Province, China from Africa
title_fullStr Polymorphisms of Plasmodium falciparum k13-propeller gene among migrant workers returning to Henan Province, China from Africa
title_full_unstemmed Polymorphisms of Plasmodium falciparum k13-propeller gene among migrant workers returning to Henan Province, China from Africa
title_sort polymorphisms of plasmodium falciparum k13-propeller gene among migrant workers returning to henan province, china from africa
publisher BMC
series BMC Infectious Diseases
issn 1471-2334
publishDate 2017-08-01
description Abstract Background Henan Province has been in the malaria elimination stage, with all reports of the disease being imported since 2012 and over 90% coming from Africa. Surveillance and population studies are essential for the early detection and subsequent prevention of the spread of drug resistance. The K13-propeller gene was recently identified as a proposed molecular marker of artemisinin (ART) resistance. In this study, we detected mutations of the K13-propeller gene in samples taken from imported malaria cases in Henan Province from 2012 to 2015. Methods There were 483 samples that were obtained from Plasmodium falciparum–infected malaria migrant workers who returned to Henan Province from Africa between 2012 and 2015. The single nucleotide polymorphisms in the K13-propeller gene were assessed by nested PCR with DNA sequencing. Frequency and geographic difference of K13-propeller gene mutant types were analyzed. Results Of 483 patients, 476 were cured and 7 died. There were no K13-propeller mutations in the blood samples from the 7 patients who died, but there were 23 different genotypes of the K13-propeller that were observed in 24 (4.97%) of the samples. C580Y, which was the predominant one in the resistance of ART, was not detected in the samples, but R539T and P574L which have also been associated with ART resistance, were observed in two samples from Angola and Equatorial Guinea. No mutations were detected in 11 samples from North Africa. The frequency of the K13-propeller was 6.50% (8/123) in Central Africa, followed by East Africa (1/19, 5.26%), West Africa (9/198, 4.55%) and South Africa (6/132, 4.55%). There was no significant difference among these four areas (P = 0.795). Conclusion R539T and P574L were found in migrant workers who traveled from Africa to Henan Province, although the frequency of the K13-propeller mutants was low. These data may enrich the molecular surveillance of antimalarial resistance and will be helpful for developing and updating the antimalarial policy in Henan Province.
topic Imported malaria
Plasmodium falciparum
K13-propeller gene
Artemisinin resistance
Africa
Henan Province
url http://link.springer.com/article/10.1186/s12879-017-2634-z
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