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"Wilai Saksirisampant"

Case Report

Ocular Sparganosis: The First Report of Spirometra ranarum in Thailand
Wilai Saksirisampant, Chatanun Eamudomkarn, Hyeong-Kyu Jeon, Keeseon S. Eom, Buravej Assavapongpaiboon, Sunisa Sintuwong, Wasee Tulvatana
Korean J Parasitol 2020;58(5):577-581.
Published online October 22, 2020
DOI: https://doi.org/10.3347/kjp.2020.58.5.577
A 22-year-old Thai man from the Northeast region presented with acute eye swelling, itching, and discharge on his left eye. He was suspected of having gnathostomiasis and treated with albendazole and prednisolone for 3 weeks. Nine months later, he was treated with high-dose oral prednisolone for the preliminary and differential diagnoses with thyroid-associated orbitopathy and lymphoma. He had been administered prednisolone intermittently over a few years. Then he developed a painless movable mass at the left upper eyelid and recurrent pseudotumor oculi was suspected. The surgical removal of the mass was performed. A white pseudosegmented worm revealed a definite diagnosis of ocular sparganosis by a plerocercoid larva. Molecular diagnosis of the causative species was made based on the mitochondrial cytochrome c oxidase subunit 1 (cox1) gene. Proper technique of extraction and amplification of short fragments DNA from formalin-fixed paraffin-embedded tissue successfully identified parasite species. The result from the sequencing of the PCR-amplified cox1 fragments in this study showed 99.0% sequence homology to Spirometra ranarum. This is the first report of S. ranarum in Thailand.

Citations

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  • Molecular Characterization of Spirometra erinaceieuropaei from Jungle Cat (Felis chaus) in North of Iran
    Mahboobeh Salimi, Meysam Sharifdini, Eshrat Beigom Kia
    Acta Parasitologica.2024; 69(1): 574.     CrossRef
  • Sparganosis
    S. B. Chuelov, A. L. Rossina
    CHILDREN INFECTIONS.2024; 23(1): 44.     CrossRef
  • Sparganosis in the Indian Sub-continent and the Middle East
    Yukifumi Nawa, Mio Tanaka, Masahide Yoshikawa
    Parasites, Hosts and Diseases.2024; 62(3): 263.     CrossRef
  • Medical Parasitology Taxonomy Update, June 2020–June 2022
    Blaine A. Mathison, Richard S. Bradbury, Bobbi S. Pritt, Romney M. Humphries
    Journal of Clinical Microbiology.2023;[Epub]     CrossRef
  • Parasites, champignons et atteintes oculaires
    Hélène Yera, Marie-Fleur Durieux, Dominique Chabasse, Marie-Laure Dardé
    Revue Francophone des Laboratoires.2023; 2023(552): 44.     CrossRef
  • Sparganosis parasitic tumor: Resectability and postoperative outcome, and analysis of cases from an endemic area in Indochina
    Amnuay Kleebayoon, Viroj Wiwanitkit
    Formosan Journal of Surgery.2023; 56(5): 160.     CrossRef
  • An annotated checklist of the eukaryotic parasites of humans, exclusive of fungi and algae
    Blaine A. Mathison, Sarah G. H. Sapp
    ZooKeys.2021; 1069: 1.     CrossRef
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Original Article
Positivity and Intensity of Gnathostoma spinigerum Infective Larvae in Farmed and Wild-Caught Swamp Eels in Thailand
Wilai Saksirisampant, Benjamas Wongsatayanon Thanomsub
Korean J Parasitol 2012;50(2):113-118.
Published online May 24, 2012
DOI: https://doi.org/10.3347/kjp.2012.50.2.113

From July 2008 to June 2009, livers of the swamp eels (Monopterus alba) were investigated for advanced third-stage larvae (AL3) of Gnathostoma spinigerum. Results revealed that 10.2% (106/1,037) and 20.4% (78/383) of farmed eels from Aranyaprathet District, Sa Kaeo Province and those of wild-caught eels obtained from a market in Min Buri District of Bangkok, Thailand were infected, respectively. The prevalence was high during the rainy and winter seasons. The infection rate abruptly decreased in the beginning of summer. The highest infection rate (13.7%) was observed in September and absence of infection (0%) in March-April in the farmed eels. Whereas, in the wild-caught eels, the highest rate (30.7%) was observed in November, and the rate decreased to the lowest at 6.3% in March. The average no. (mean±SE) of AL3 per investigated liver in farmed eels (1.1±0.2) was significantly lower (P=0.040) than those in the caught eels (0.2±0.03). In addition, the intensity of AL3 recovered from each infected liver varied from 1 to 18 (2.3±0.3) in the farmed eels and from 1 to 47 (6.3±1.2) in the caught eels, respectively. The AL3 intensity showed significant difference (P=0.011) between these 2 different sources of eels. This is the first observation that farmed eels showed positive findings of G. spinigerum infective larvae. This may affect the standard farming of the culture farm and also present a risk of consuming undercooked eels from the wild-caught and farmed eels.

Citations

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  • Human gnathostomiasis: A review on the biology of the parasite with special reference on the current therapeutic management
    Kathyleen Nogrado, Poom Adisakwattana, Onrapak Reamtong
    Food and Waterborne Parasitology.2023; 33: e00207.     CrossRef
  • Morphological and Phylogenetic Analysis of Eustrongylides sp. and Gnathostoma spinigerum Parasitizing the Asian Swamp Eel Monopterusalbus in China
    Sixin Zhang, Guangping Huang, Liang Li, Xianyong Liu, Xiaoli Tang, Xun Suo
    Pathogens.2021; 10(6): 711.     CrossRef
  • Molecular cloning and characterization of serine protease inhibitor from food-borne nematode, Gnathostoma spinigerum
    Anusorn Tinyou, Salisa Chaimon, Orawan Phuphisut, Porntida Kobpornchai, Preeyarat Malaithong, Akkarin Poodeepiyasawat, Issariya Ieamsuwan, Jiraporn Ruangsittichai, Pornpan Pumirat, Paron Dekumyoy, Onrapak Reamtong, Poom Adisakwattana
    Acta Tropica.2020; 204: 105288.     CrossRef
  • Infection Status of Gnathostoma spinigerum Larvae in Asian Swamp Eels, Monopterus albus, Purchased from Local Markets in Cambodia
    Jong-Yil Chai, Bong-Kwang Jung, Keon Hoon Lee, Sung-Jong Hong, Virak Khieu, Byoung-Kuk Na, Woon-Mok Sohn
    The Korean Journal of Parasitology.2020; 58(6): 695.     CrossRef
  • Genetic diversity of infective larvae of Gnathostoma spinigerum (Nematoda: Gnathostomatidae) in freshwater swamp eels from Thailand
    P. Eamsobhana, D. Wanachiwanawin, K. Roongruangchai, S.L. Song, H.S. Yong
    Journal of Helminthology.2017; 91(6): 767.     CrossRef
  • Cloning and expression analysis of two pro-inflammatory cytokines, IL-1β and its receptor, IL-1R2, in the Asian swamp eel Monopterus albus
    Q. Q. Xu, P. Xu, J. W. Zhou, T. S. Pan, R. Tuo, K. Ai, D. Q. Yang
    Molecular Biology.2016; 50(5): 671.     CrossRef
  • Antiviral genes in the Asian swamp eel Monopterus albus: comparison of tissue expression and inducible expression of six interferon regulatory factors
    Qiaoqing Xu, Jin Wan, Tingshuang Pan, Jingwen Zhou, Kete Ai, Daiqin Yang
    Genes & Genomics.2015; 37(5): 429.     CrossRef
  • Larval Gnathostoma spinigerum Detected in Asian Swamp Eels, Monopterus albus, Purchased from a Local Market in Yangon, Myanmar
    Jong-Yil Chai, Woon-Mok Sohn, Byoung-Kuk Na, Jong-Bok Park, Hoo-Gn Jeoung, Eui-Hyug Hoang, Thi Thi Htoon, Htay Htay Tin
    The Korean Journal of Parasitology.2015; 53(5): 619.     CrossRef
  • Cutaneous Gnathostomiasis with Recurrent Migratory Nodule and Persistent Eosinophilia: a Case Report from China
    Jing Cui, Ye Wang, Zhong Quan Wang
    The Korean Journal of Parasitology.2013; 51(4): 467.     CrossRef
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