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What was the main factor in successful control of ascariasis in Korea?
Seung-Yull Cho, Sung-Tae Hong
Parasites Hosts Dis 2023;61(2):103-126.
Published online May 23, 2023
DOI: https://doi.org/10.3347/PHD.22152
In the l950s, under the legacy of traditional agriculture, Ascaris lumbricoides, spread epidemically in the war-bitten society of Korea. Consensus on the parasite control was drafted in the Parasite Disease Prevention Act, which passed a parliamentary agreement in 1966, and established safe disposal of feces and mass chemotherapy as control strategies. Biannual stool examinations and treating infected schoolchildren were basic scheme of the control activity through which revenue could be secured for organized business. In the 27 years following 1969, a maximum of 16 million stool examinations had been done every year. Cellophane thick smear enabled the task. The infection declined remarkably in the 1970s when industrialization and green revolution proceeded. A population study of A. lumbricoides in the late 1970s helped us better understand its epidemiology. The data also settled down the understandable protest of teachers against the repeated stool examinations. In the 9 years following 1987, the target population was gradually reduced when the egg positive rate was below 0.1%. An article in the Korean Law, stipulating obligatory stool examinations, was made optional. Although the long-term Korean effort of Ascaris control was a success, the effect of mass chemotherapy was not as succinct in terms of lowering reinfection. In the period of control, Korean agricultural technology changed, and the economy grew and supplied sanitary facilities by which the vicious cycle was disconnected. Reduction of morbidity was a benefit of mass chemotherapy, which is the only control method feasible in economically difficult countries. The most important hurdle of parasite control in the 1960s was poverty of general population and limited financial resources in Korea but the society formed a consensus on the priority of intestinal helminthiasis control during the ordeal period. The national consensus in the 1960s was the critical milestone for Ascaris control in Korea. Under the social agreement, application of timely technical and research advancements in parasitology achieved the success of ascariasis elimination. The successful experience of ascariasis elimination in Korea can be a benchmark for countries where neglected tropical diseases are endemically recycled.

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  • Clonorchis sinensis and Cholangiocarcinoma
    Eun-Min Kim, Sung-Tae Hong
    Journal of Korean Medical Science.2025;[Epub]     CrossRef
  • 7,262 View
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Original Article
ELISA detection of vivax malaria with recombinant multiple stage-specific antigens and its application to survey of residents in endemic areas
Sera Kim, Hye-Jin Ahn, Tong-Soo Kim, Ho-Woo Nam
Korean J Parasitol 2003;41(4):203-207.
Published online December 20, 2003
DOI: https://doi.org/10.3347/kjp.2003.41.4.203

An ELISA was developed for the diagnosis of vivax malaria using multiple stage-specific recombinant antigens of Plasmodium vivax. The DNA from the whole blood of a malaria patient was used as template to amplify the coding regions for the antigenic domains of circumsporozoite protein (CSP-1), merozoite surface protein (MSP-1), apical merozoite antigen (AMA-1), serine repeat antigen (SERA), and exported antigen (EXP-1). Each amplified DNA fragment was inserted into pQE30 plasmid to induce the expression of His-tagged protein in Escherichia coli (M15 strain) by IPTG. His-tagged proteins were purified by Ni-NTA metal-affinity chromatography and used as antigens for ELISA with patient sera that were confirmed previously by blood smear examinations. When applied to patient sera, 122 (80.3%) out of 152 vivax malaria cases reacted to at least one antigen, while no reactions were observed with 128 uninfected serum samples. We applied this ELISA to the screening of 3,262 civilian residents in endemic regions near the DMZ, which resulted in 236 positively detected (7.2%) cases. This method can be applied to serological diagnosis and mass screening in endemic regions, or can be used as a safety test for transfusion blood in endemic areas.

Citations

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  • Using Serological Markers for the Surveillance of Plasmodium vivax Malaria: A Scoping Review
    Lejla Kartal, Ivo Mueller, Rhea J. Longley
    Pathogens.2023; 12(6): 791.     CrossRef
  • Antibodies Against the Plasmodium vivax Apical Membrane Antigen 1 From the Belem Strain Share Common Epitopes Among Other Worldwide Variants
    Ana Caroline Barbosa França, Kátia Sanches Françoso, Rodolfo Ferreira Marques, Gustavo H. G. Trossini, Renan A. Gomes, Marinete M. Póvoa, Maristela G. Cunha, Eduardo L. V. Silveira, Irene S. Soares
    Frontiers in Cellular and Infection Microbiology.2021;[Epub]     CrossRef
  • Analyses of the expression, immunohistochemical properties and serodiagnostic potential of Schistosoma japonicum peroxiredoxin-4
    Minh-Anh Dang-Trinh, Jose Ma. M. Angeles, Kharleezelle J. Moendeg, Adrian Miki C. Macalanda, Thu-Thuy Nguyen, Luna Higuchi, Shotaro Nakagun, Masashi Kirinoki, Yuichi Chigusa, Yasuyuki Goto, Shin-ichiro Kawazu
    Parasites & Vectors.2020;[Epub]     CrossRef
  • Development and optimization of cocktail-ELISA for a unified surveillance of zoonotic schistosomiasis in multiple host species
    Kharleezelle J. Moendeg, Jose Ma. M. Angeles, Yasuyuki Goto, Lydia R. Leonardo, Masashi Kirinoki, Elena A. Villacorte, Pilarita T. Rivera, Noboru Inoue, Yuichi Chigusa, Shin-ichiro Kawazu
    Parasitology Research.2015; 114(3): 1225.     CrossRef
  • Probability of Antibody Formation against Circumsporozoite Protein of Plasmodium vivax among Korean Malaria Patients
    Ho-Woo Nam, Kyoung Ju Song, Hye Jin Ahn, Zhaoshou Yang, Chom-Kyu Chong, Pyo Yun Cho, Seong Kyu Ahn, Tong-Soo Kim
    The Korean Journal of Parasitology.2014; 52(2): 143.     CrossRef
  • Immunological markers of Plasmodium vivaxexposure and immunity: a systematic review and meta-analysis
    Julia C Cutts, Rosanna Powell, Paul A Agius, James G Beeson, Julie A Simpson, Freya J I Fowkes
    BMC Medicine.2014;[Epub]     CrossRef
  • A Recombinant Plasmodium vivax Apical Membrane Antigen-1 to Detect Human Infection in Iran
    Afsaneh Motevalli Haghi, Mohammad Reza Khoramizade, Mehdi Nateghpour, Mehdi Mohebali, Gholam Hossein Edrissian, Mohammad Reza Eshraghian, Zargham Sepehrizadeh
    The Korean Journal of Parasitology.2012; 50(1): 15.     CrossRef
  • Isolation and Characterization of the MSP1 Genes from Plasmodium malariae and Plasmodium ovale
    George J. Dawson, Suresh M. Desai, Larry Birkenmeyer, A. Scott Muerhoff
    The American Journal of Tropical Medicine and Hygiene.2010; 82(6): 996.     CrossRef
  • Detection ofPlasmodium falciparum,P. vivax,P. ovale, andP. malariaeMerozoite Surface Protein 1-p19 Antibodies in Human Malaria Patients and Experimentally Infected Nonhuman Primates
    A. Scott Muerhoff, Larry G. Birkenmeyer, Ruthie Coffey, Bruce J. Dille, John W. Barnwell, William E. Collins, Joann S. Sullivan, George J. Dawson, Suresh M. Desai
    Clinical and Vaccine Immunology.2010; 17(10): 1631.     CrossRef
  • A new ELISA kit which uses a combination of Plasmodium falciparum extract and recombinant Plasmodium vivax antigens as an alternative to IFAT for detection of malaria antibodies
    Cecile Doderer, Aurelie Heschung, Phillippe Guntz, Jean-Pierre Cazenave, Yves Hansmann, Alexandre Senegas, Alexander W Pfaff, Tamer Abdelrahman, Ermanno Candolfi
    Malaria Journal.2007;[Epub]     CrossRef
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  • 81 Download
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