Surveillance of Antimalarial Drug-Resistance Genes in Imported Plasmodium falciparum Isolates From Nigeria in Henan, China, 2012-2019

Malaria remains a major public health issue in Nigeria, and Nigeria is one of the main sources of imported malaria in China. Antimalarial drug resistance is a significant obstacle to the control and prevention of malaria globally. The molecular markers associated with antimalarial drug resistance ca...

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Published inFrontiers in cellular and infection microbiology Vol. 11; p. 644576
Main Authors Zhao, Dongyang, Zhang, Hongwei, Ji, Penghui, Li, Suhua, Yang, Chengyun, Liu, Ying, Qian, Dan, Deng, Yan, Wang, Hao, Lu, Deling, Zhou, Ruimin, Zhao, Yuling
Format Journal Article
LanguageEnglish
Published Switzerland Frontiers Media S.A 23.04.2021
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Abstract Malaria remains a major public health issue in Nigeria, and Nigeria is one of the main sources of imported malaria in China. Antimalarial drug resistance is a significant obstacle to the control and prevention of malaria globally. The molecular markers associated with antimalarial drug resistance can provide early warnings about the emergence of resistance. The prevalence of antimalarial drug resistant genes and mutants, including , , , , and , was evaluated among the imported isolates from Nigeria in Henan, China, from 2012 to 2019. Among the 167 imported isolates, the wild-type frequency of , , , , and was 98.7, 63.9, 34.8, 3.1, and 3.1%, respectively. The mutation of was rare, with just two nonsynonymous (S693F and Q613H) and two synonymous mutations (C469C and G496G) identified from four isolates. The prevalence of mutation at codon 74-76 decreased year-by-year, while the prevalence of 86Y also decreased significantly with time. The prevalence of and mutants was high. Combined mutations of and had a high prevalence of the quadruple mutant I R N -G (39.0%), followed by the octal mutant I R N -V A G G S (17.0%). These molecular findings update the known data on antimalarial drug-resistance genes and provide supplemental information for Nigeria.
AbstractList Malaria remains a major public health issue in Nigeria, and Nigeria is one of the main sources of imported malaria in China. Antimalarial drug resistance is a significant obstacle to the control and prevention of malaria globally. The molecular markers associated with antimalarial drug resistance can provide early warnings about the emergence of resistance. The prevalence of antimalarial drug resistant genes and mutants, including PfK13 , Pfcrt , Pfmdr1 , Pfdhfr , and Pfdhps , was evaluated among the imported Plasmodium falciparum isolates from Nigeria in Henan, China, from 2012 to 2019. Among the 167 imported P. falciparum isolates, the wild-type frequency of PfK13 , Pfcrt , Pfmdr1 , Pfdhfr , and Pfdhps was 98.7, 63.9, 34.8, 3.1, and 3.1%, respectively. The mutation of PfK13 was rare, with just two nonsynonymous (S693F and Q613H) and two synonymous mutations (C469C and G496G) identified from four isolates. The prevalence of Pfcrt mutation at codon 74–76 decreased year-by-year, while the prevalence of pfmdr1 86Y also decreased significantly with time. The prevalence of Pfdhfr and Pfdhps mutants was high. Combined mutations of Pfdhfr and Pfdhps had a high prevalence of the quadruple mutant I 51 R 59 N 108 -G 437 (39.0%), followed by the octal mutant I 51 R 59 N 108 -V 431 A 436 G 437 G 581 S 613 (17.0%). These molecular findings update the known data on antimalarial drug-resistance genes and provide supplemental information for Nigeria.
Malaria remains a major public health issue in Nigeria, and Nigeria is one of the main sources of imported malaria in China. Antimalarial drug resistance is a significant obstacle to the control and prevention of malaria globally. The molecular markers associated with antimalarial drug resistance can provide early warnings about the emergence of resistance. The prevalence of antimalarial drug resistant genes and mutants, including PfK13, Pfcrt, Pfmdr1, Pfdhfr, and Pfdhps, was evaluated among the imported Plasmodium falciparum isolates from Nigeria in Henan, China, from 2012 to 2019. Among the 167 imported P. falciparum isolates, the wild-type frequency of PfK13, Pfcrt, Pfmdr1, Pfdhfr, and Pfdhps was 98.7, 63.9, 34.8, 3.1, and 3.1%, respectively. The mutation of PfK13 was rare, with just two nonsynonymous (S693F and Q613H) and two synonymous mutations (C469C and G496G) identified from four isolates. The prevalence of Pfcrt mutation at codon 74–76 decreased year-by-year, while the prevalence of pfmdr1 86Y also decreased significantly with time. The prevalence of Pfdhfr and Pfdhps mutants was high. Combined mutations of Pfdhfr and Pfdhps had a high prevalence of the quadruple mutant I51R59N108-G437 (39.0%), followed by the octal mutant I51R59N108-V431A436G437G581S613 (17.0%). These molecular findings update the known data on antimalarial drug-resistance genes and provide supplemental information for Nigeria.
Malaria remains a major public health issue in Nigeria, and Nigeria is one of the main sources of imported malaria in China. Antimalarial drug resistance is a significant obstacle to the control and prevention of malaria globally. The molecular markers associated with antimalarial drug resistance can provide early warnings about the emergence of resistance. The prevalence of antimalarial drug resistant genes and mutants, including , , , , and , was evaluated among the imported isolates from Nigeria in Henan, China, from 2012 to 2019. Among the 167 imported isolates, the wild-type frequency of , , , , and was 98.7, 63.9, 34.8, 3.1, and 3.1%, respectively. The mutation of was rare, with just two nonsynonymous (S693F and Q613H) and two synonymous mutations (C469C and G496G) identified from four isolates. The prevalence of mutation at codon 74-76 decreased year-by-year, while the prevalence of 86Y also decreased significantly with time. The prevalence of and mutants was high. Combined mutations of and had a high prevalence of the quadruple mutant I R N -G (39.0%), followed by the octal mutant I R N -V A G G S (17.0%). These molecular findings update the known data on antimalarial drug-resistance genes and provide supplemental information for Nigeria.
Author Liu, Ying
Zhou, Ruimin
Zhao, Dongyang
Li, Suhua
Ji, Penghui
Qian, Dan
Deng, Yan
Zhao, Yuling
Yang, Chengyun
Zhang, Hongwei
Lu, Deling
Wang, Hao
AuthorAffiliation Department of Parasite Disease Control and Prevention, Henan Provincial Center for Disease Control and Prevention, Henan Key Laboratory of Infectious Disease Microbiology , Zhengzhou , China
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– sequence: 2
  givenname: Hongwei
  surname: Zhang
  fullname: Zhang, Hongwei
  organization: Department of Parasite Disease Control and Prevention, Henan Provincial Center for Disease Control and Prevention, Henan Key Laboratory of Infectious Disease Microbiology, Zhengzhou, China
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  givenname: Penghui
  surname: Ji
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  surname: Li
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  givenname: Chengyun
  surname: Yang
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  givenname: Ying
  surname: Liu
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– sequence: 7
  givenname: Dan
  surname: Qian
  fullname: Qian, Dan
  organization: Department of Parasite Disease Control and Prevention, Henan Provincial Center for Disease Control and Prevention, Henan Key Laboratory of Infectious Disease Microbiology, Zhengzhou, China
– sequence: 8
  givenname: Yan
  surname: Deng
  fullname: Deng, Yan
  organization: Department of Parasite Disease Control and Prevention, Henan Provincial Center for Disease Control and Prevention, Henan Key Laboratory of Infectious Disease Microbiology, Zhengzhou, China
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  givenname: Hao
  surname: Wang
  fullname: Wang, Hao
  organization: Department of Parasite Disease Control and Prevention, Henan Provincial Center for Disease Control and Prevention, Henan Key Laboratory of Infectious Disease Microbiology, Zhengzhou, China
– sequence: 10
  givenname: Deling
  surname: Lu
  fullname: Lu, Deling
  organization: Department of Parasite Disease Control and Prevention, Henan Provincial Center for Disease Control and Prevention, Henan Key Laboratory of Infectious Disease Microbiology, Zhengzhou, China
– sequence: 11
  givenname: Ruimin
  surname: Zhou
  fullname: Zhou, Ruimin
  organization: Department of Parasite Disease Control and Prevention, Henan Provincial Center for Disease Control and Prevention, Henan Key Laboratory of Infectious Disease Microbiology, Zhengzhou, China
– sequence: 12
  givenname: Yuling
  surname: Zhao
  fullname: Zhao, Yuling
  organization: Department of Parasite Disease Control and Prevention, Henan Provincial Center for Disease Control and Prevention, Henan Key Laboratory of Infectious Disease Microbiology, Zhengzhou, China
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Copyright Copyright © 2021 Zhao, Zhang, Ji, Li, Yang, Liu, Qian, Deng, Wang, Lu, Zhou and Zhao.
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Keywords PfK13
Plasmodium falciparum
Pfdhfr
Pfcrt
Pfmdr1
drug resistance
Nigeria
Pfdhps
Language English
License Copyright © 2021 Zhao, Zhang, Ji, Li, Yang, Liu, Qian, Deng, Wang, Lu, Zhou and Zhao.
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Edited by: Jun Feng, National Institute of Parasitic Diseases, China
This article was submitted to Parasite and Host, a section of the journal Frontiers in Cellular and Infection Microbiology
These authors have contributed equally to this work
Reviewed by: Carlo Severini, National Institute of Health (ISS), Italy; Didier Menard, Institut Pasteur, France; Yaming Cao, China Medical University, China; Olusola Ojurongbe, Ladoke Akintola University of Technology, Nigeria
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Snippet Malaria remains a major public health issue in Nigeria, and Nigeria is one of the main sources of imported malaria in China. Antimalarial drug resistance is a...
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SubjectTerms Cellular and Infection Microbiology
drug resistance
Pfcrt
Pfdhfr
PfK13
Pfmdr1
Plasmodium falciparum
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Title Surveillance of Antimalarial Drug-Resistance Genes in Imported Plasmodium falciparum Isolates From Nigeria in Henan, China, 2012-2019
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