• Login
    • Login
    Advanced Search
    View Item 
    •   UoN Digital Repository Home
    • Journal Articles
    • Faculty of Health Sciences (FHS)
    • View Item
    •   UoN Digital Repository Home
    • Journal Articles
    • Faculty of Health Sciences (FHS)
    • View Item
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    The Role of Pfmdr1 and Pfcrt in Changing Chloroquine, Amodiaquine, Mefloquine and Lumefantrine Susceptibility in Western-Kenya P. falciparum Samples during 2008–2011

    Thumbnail
    View/Open
    Abstract.pdf (124.2Kb)
    Date
    2013
    Author
    Eyase, FL,
    Akala, HM
    Ingasia, L
    Cheruiyot, A
    Omondi, A,
    Okudo, C
    Juma, D
    Yeda, R
    Andagalu, B
    Wanja, E
    Kamau, E
    Schnabel, D
    Bulimo, W
    Waters, NC
    Walsh, DS
    Johnson, JD
    Type
    Article
    Language
    en
    Metadata
    Show full item record

    Abstract
    Single Nucleotide Polymorphisms (SNPs) in the Pfmdr1, and Pfcrt, genes of Plasmodium falciparum may confer resistance to a number of anti-malaria drugs. Pfmdr1 86Y and haplotypes at Pfcrt 72-76 have been linked to chloroquine (CQ) as well as amodiaquine (AQ) resistance. mefloquine (MQ) and lumefantrine (LU) sensitivities are linked to Pfmdr1 86Y. Additionally, Pfcrt K76 allele carrying parasites have shown tolerance to LU. We investigated the association between Pfmdr1 86/Pfcrt 72-76 and P. falciparum resistance to CQ, AQ, MQ and LU using field samples collected during 2008-2011 from malaria endemic sites in western Kenya. Genomic DNA from these samples was genotyped to examine SNPs and haplotypes in Pfmdr1 and Pfcrt respectively. Additionally, immediate ex vivo and in vitro drug sensitivity profiles were assessed using the malaria SYBR Green I fluorescence-based assay. We observed a rapid but steady percent increase in wild-type parasites with regard to both Pfmdr1 and Pfcrt between 2008 and 2011 (p<0.0001). Equally, a significant reciprocate decrease in AQ and CQ median IC50 values occurred (p<0.0001) during the same period. Thus, the data in this study point to a significantly rapid change in parasite response to AQ and CQ in the study period. This may be due to releasing of drug pressure on the parasite from reduced use of AQ in the face of increased Artemisinin (ART) Combination Therapy (ACT) administration following the intervention of the Global Fund in 2008. LU has been shown to select for 76K genotypes, thus the observed increase in 76K genotypes coupled with significant cross resistance between LU and MQ, may herald emergence of tolerance against both drugs in future
    URI
    http://hinari-gw.who.int/whalecomwww.ncbi.nlm.nih.gov/whalecom0/pubmed/23675533
    http://profiles.uonbi.ac.ke/wallacebulimo/publications/role-pfmdr1-and-pfcrt-changing-chloroquine-amodiaquine-mefloquine-and-lum
    http://erepository.uonbi.ac.ke:8080/xmlui/handle/123456789/27907
    Citation
    PLoS One. 2013 May 13;8(5):e64299. doi: 10.1371/journal.pone.0064299. Print 2013
    Publisher
    University of Nairobi.
     
    College of Health Sciences, University of Nairobi, Kenya
     
    Collections
    • Faculty of Health Sciences (FHS) [10418]

    Copyright © 2022 
    University of Nairobi Library
    Contact Us | Send Feedback

     

     

    Useful Links
    UON HomeLibrary HomeKLISC

    Browse

    All of UoN Digital RepositoryCommunities & CollectionsBy Issue DateAuthorsTitlesSubjectsThis CollectionBy Issue DateAuthorsTitlesSubjects

    My Account

    LoginRegister

    Copyright © 2022 
    University of Nairobi Library
    Contact Us | Send Feedback