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    KCI등재 SCI SCIE SCOPUS

    Quantitative Determination of Plasmodium Parasitemia by Flow Cytometry and Microscopy

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    https://www.riss.kr/link?id=A103686924

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The traditional light microscopy has limitations for precise growth assays of malaria parasites in culture or for assessment of new compounds for antimalarial activity; the speed and high reproducibility of flow cytometry can overcome these limitations. A flow cytometric method using PicoGreen, a DNA-binding fluorochrome, was developed with optimal precision suitable for performing growth assays of low-parasitemia field isolates.
    In addition, intra- and inter-person reproducibility of the flow cytometric and the microscopic method were compared in order to quantitatively demonstrate the improved precision. RNase treatment contributed to the precision of the flow cytometric measurements by enhancing the signal-to-noise ratios. Coefficients of variation of the method were smaller than 10% for 0.1% or higher parasitemia samples. The intra- and inter-person coefficients of variation of the flow cytometric method were three to six times smaller than those of the microscopic method. The flow cytometric method developed in this study yielded substantially more precise results than the microscopic method, allowing determination of parasitemia levels of 0.1% or higher, with coefficients of variation smaller than 10%. Thus, the PicoGreen method could be a reliable high sensitivity assay for analysis of low parasitemia samples and might be applied to a high throughput system testing antimalarial drug activity.
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    The traditional light microscopy has limitations for precise growth assays of malaria parasites in culture or for assessment of new compounds for antimalarial activity; the speed and high reproducibility of flow cytometry can overcome these limitation...

    The traditional light microscopy has limitations for precise growth assays of malaria parasites in culture or for assessment of new compounds for antimalarial activity; the speed and high reproducibility of flow cytometry can overcome these limitations. A flow cytometric method using PicoGreen, a DNA-binding fluorochrome, was developed with optimal precision suitable for performing growth assays of low-parasitemia field isolates.
    In addition, intra- and inter-person reproducibility of the flow cytometric and the microscopic method were compared in order to quantitatively demonstrate the improved precision. RNase treatment contributed to the precision of the flow cytometric measurements by enhancing the signal-to-noise ratios. Coefficients of variation of the method were smaller than 10% for 0.1% or higher parasitemia samples. The intra- and inter-person coefficients of variation of the flow cytometric method were three to six times smaller than those of the microscopic method. The flow cytometric method developed in this study yielded substantially more precise results than the microscopic method, allowing determination of parasitemia levels of 0.1% or higher, with coefficients of variation smaller than 10%. Thus, the PicoGreen method could be a reliable high sensitivity assay for analysis of low parasitemia samples and might be applied to a high throughput system testing antimalarial drug activity.

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    참고문헌 (Reference)

    1 van der Heyde HC, "Use of hydroethidine and flow cytometry to assess the effects of leukocytes on the malarial parasite Plasmodium falciparum" 2 : 417-425, 1995

    2 Collins WE, "The Chesson strain of plasmodium vivax in humans and different species of Aotus monkeys" 80 : 152-159, 2009

    3 Brown GV, "Separation of stages of Plasmodium falciparum-infected cells by means of a fluorescence-activated cell sorter" 29 : 1147-1149, 1980

    4 Whaun JM, "Rapid identification and detection of parasitized human red cells by automated flow cytometry" 4 : 117-122, 1983

    5 Desjardins RE, "Quantitative assessment of antimalarial activity in vitro by a semiautomated microdilution technique" 16 : 710-718, 1979

    6 Bharti AR, "Polymerase chain reaction detection of Plasmodium vivax and Plasmodium falciparum DNA from stored serum samples: implications for retrospective diagnosis of malaria" 77 : 444-446, 2007

    7 허애정, "Parasitemia Characteristics of Plasmodium vivax Malaria Patients in the Republic of Korea" 대한의학회 26 (26): 42-46, 2011

    8 Barkan D, "Optimisation of flow cytometric measurement of parasitaemia in plasmodium-infected mice" 30 : 649-653, 2000

    9 Gronowicz G, "Maturation of the reticulocyte in vitro" 71 : 177-197, 1984

    10 Ahn SY, "Magnetic separation: a highly effective method for synchronization of cultured erythrocytic Plasmodium falciparum" 102 : 1195-1200, 2008

    1 van der Heyde HC, "Use of hydroethidine and flow cytometry to assess the effects of leukocytes on the malarial parasite Plasmodium falciparum" 2 : 417-425, 1995

    2 Collins WE, "The Chesson strain of plasmodium vivax in humans and different species of Aotus monkeys" 80 : 152-159, 2009

    3 Brown GV, "Separation of stages of Plasmodium falciparum-infected cells by means of a fluorescence-activated cell sorter" 29 : 1147-1149, 1980

    4 Whaun JM, "Rapid identification and detection of parasitized human red cells by automated flow cytometry" 4 : 117-122, 1983

    5 Desjardins RE, "Quantitative assessment of antimalarial activity in vitro by a semiautomated microdilution technique" 16 : 710-718, 1979

    6 Bharti AR, "Polymerase chain reaction detection of Plasmodium vivax and Plasmodium falciparum DNA from stored serum samples: implications for retrospective diagnosis of malaria" 77 : 444-446, 2007

    7 허애정, "Parasitemia Characteristics of Plasmodium vivax Malaria Patients in the Republic of Korea" 대한의학회 26 (26): 42-46, 2011

    8 Barkan D, "Optimisation of flow cytometric measurement of parasitaemia in plasmodium-infected mice" 30 : 649-653, 2000

    9 Gronowicz G, "Maturation of the reticulocyte in vitro" 71 : 177-197, 1984

    10 Ahn SY, "Magnetic separation: a highly effective method for synchronization of cultured erythrocytic Plasmodium falciparum" 102 : 1195-1200, 2008

    11 Baniecki ML, "High-throughput Plasmodium falciparum growth assay for malaria drug discovery" 51 : 716-723, 2007

    12 Snounou G, "High sensitivity of detection of human malaria parasites by the use of nested polymerase chain reaction" 61 : 315-320, 1993

    13 Chevalley S, "Flow cytometry for the evaluation of anti-plasmodial activity of drugs on Plasmodium falciparum gametocytes" 9 : 49-, 2010

    14 Wilson DW, "Development of fluorescent Plasmodium falciparum for in vitro growth inhibition assays" 9 : 152-, 2010

    15 Persson KE, "Development and optimization of high-throughput methods to measure Plasmodium falciparumspecific growth inhibitory antibodies" 44 : 1665-1673, 2006

    16 Carlton JM, "Comparative genomics of the neglected human malaria parasite Plasmodium vivax" 455 : 757-763, 2008

    17 Marie D, "Application of the novel nucleic acid dyes YOYO-1, YO-PRO-1, and PicoGreen for flow cytometric analysis of marine prokaryotes" 62 : 1649-1655, 1996

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    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2011-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2009-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2005-01-01 등재 SCI 등재 (등재유지) KCI등재
    2002-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 1.48 0.37 1.06
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.85 0.75 0.691 0.11
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