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"Spirometra"

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Genetic Identification of Spirometra decipiens Plerocercoids in Terrestrial Snakes from Korea and China
Hyeong-Kyu Jeon, Hansol Park, Dongmin Lee, Seongjun Choe, Kyu-Heon Kim, Woon- Mok Sohn, Keeseon S. Eom
Korean J Parasitol 2016;54(2):181-185.
Published online April 30, 2016
DOI: https://doi.org/10.3347/kjp.2016.54.2.181
Human sparganosis is a zoonotic disease caused by infection with larval forms (procercoid/plerocercoid) of Spirometra spp. The purpose of this study was to identify Spirometra spp. of infected snakes using a multiplex PCR assay and phylogenetic analysis of mitochondrial DNA sequence data from the spargana of terrestrial snakes obtained from Korea and China. A total of 283 snakes were obtained that included 4 species of Colubridae comprising Rhabdophis tigrinus tigrinus (n=150), Dinodon rufozonatum rufozonatum (n=64), Elaphe davidi (n=2), and Elaphe schrenkii (n=7), and 1 species of Viperidae, Agkistrodon saxatilis (n=60). The snakes were collected from the provinces of Chungbuk, Chungnam, and Gyeongbuk in Korea (n=161), and from China (n=122). The overall infection rate with spargana was 83% (235/283). The highest was recorded for D. rufozonatum rufozonatum (100%), followed by A. saxatilis (85%) and R. tigrinus tigrinus (80%), with a negative result for E. davidi (0%) and E. schrenkii (0%). The sequence identities between the spargana from snakes (n=50) and Spirometra erinaceieuropaei (KJ599680) or S. decipiens (KJ599679) control specimens were 90.8% and 99.2%, respectively. Pairwise genetic distances between spargana (n=50) and S. decipiens ranged from 0.0080 to 0.0107, while those between spargana and S. erinaceieuropaei ranged from 0.1070 to 0.1096. In this study, all of the 904 spargana analyzed were identified as S. decipiens either by a multiplex PCR assay (n=854) or mitochondrial cox1 sequence analysis (n=50).

Citations

Citations to this article as recorded by  Crossref logo
  • 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
  • Molecular Characterization and Phylogenetic Analysis of Spirometra Tapeworms from Snakes in Hunan Province
    Shu-Yu Chen, Teng-Fang Gong, Jun-Lin He, Fen Li, Wen-Chao Li, Li-Xing Xie, Xin-Rui Xie, Yi-Song Liu, Ying-Fang Zhou, Wei Liu
    Veterinary Sciences.2022; 9(2): 62.     CrossRef
  • Epidemiology and Genetic Diversity of Spirometra Tapeworm Isolates from Snakes in Hunan Province, China
    Tengfang Gong, Xiaoyi Su, Fen Li, Junlin He, Shuyu Chen, Wenchao Li, Xinrui Xie, Yisong Liu, Xi Zhang, Wei Liu
    Animals.2022; 12(9): 1216.     CrossRef
  • Epidemiology, Diagnosis, and Prevention of Sparganosis in Asia
    Wei Liu, Tengfang Gong, Shuyu Chen, Quan Liu, Haoying Zhou, Junlin He, Yong Wu, Fen Li, Yisong Liu
    Animals.2022; 12(12): 1578.     CrossRef
  • Spirometra species from Asia: Genetic diversity and taxonomic challenges
    Hiroshi Yamasaki, Oranuch Sanpool, Rutchanee Rodpai, Lakkhana Sadaow, Porntip Laummaunwai, Mesa Un, Tongjit Thanchomnang, Sakhone Laymanivong, Win Pa Pa Aung, Pewpan M. Intapan, Wanchai Maleewong
    Parasitology International.2021; 80: 102181.     CrossRef
  • Genome of the fatal tapeworm Sparganum proliferum uncovers mechanisms for cryptic life cycle and aberrant larval proliferation
    Taisei Kikuchi, Mehmet Dayi, Vicky L. Hunt, Kenji Ishiwata, Atsushi Toyoda, Asuka Kounosu, Simo Sun, Yasunobu Maeda, Yoko Kondo, Belkisyole Alarcon de Noya, Oscar Noya, Somei Kojima, Toshiaki Kuramochi, Haruhiko Maruyama
    Communications Biology.2021;[Epub]     CrossRef
  • Large-scale survey of a neglected agent of sparganosis Spirometra erinaceieuropaei (Cestoda: Diphyllobothriidae) in wild frogs in China
    Xi Zhang, Xiu Hong, Shi Nan Liu, Peng Jiang, Shu Chuan Zhao, Chuan Xi Sun, Zhong Quan Wang, Jing Cui, David Blair
    PLOS Neglected Tropical Diseases.2020; 14(2): e0008019.     CrossRef
  • A Retrieved Sparganum of Spirometra erinaceieuropaei from a Korean Man during Mechanical Thrombectomy
    Yang-Ha Hwang, Wonsoo Son, Yong-Won Kim, Dong-Hun Kang, Hyun-Ha Chang, Youn-Kyoung Goo, Yeonchul Hong, Dong-Il Chung
    The Korean Journal of Parasitology.2020; 58(3): 309.     CrossRef
  • Low prevalence of spargana infection in farmed frogs in the Yangtze River Delta of China
    Xiaoli Zhang, Rongsheng Mi, Yehua Zhang, Shijie Zhang, Tao Sun, Haiyan Jia, Yan Huang, Haiyan Gong, Xiangan Han, Zhaoguo Chen
    Infection, Genetics and Evolution.2020; 85: 104466.     CrossRef
  • Development of EST-derived microsatellite markers to investigate the population structure of sparganum — the causative agent of zoonotic sparganosis
    Xi Zhang, Xiu Hong, Jiang Yang Duan, Lu Lu Han, Zi Yang Hong, Peng Jiang, Zhong Quan Wang, Jing Cui
    Parasitology.2019; 146(07): 947.     CrossRef
  • Genetic Identification of Spirometra erinaceieuropaei Spargana in Liaoning and Hubei Provinces, PR China
    Li He, Zheng-Ming Fang, Ting Xue, Er-Fu Zhang, Chun-Li An
    The Korean Journal of Parasitology.2019; 57(3): 309.     CrossRef
  • Characterization of the complete mitochondrial genome of Spirometra decipiens (Cestoda: Diphyllobothriidae) from China
    Yue Xie, Yingxin Li, Xiaobin Gu, Senzhao Zhang, Yunjian Liu, Lu Wang, Youle Zheng, Xuan Zhou, Zhicai Zuo, Guangyou Yang
    Mitochondrial DNA Part B.2019; 4(2): 2788.     CrossRef
  • Spirometra decipiens (Cestoda: Diphyllobothriidae) Collected in A Heavily Infected Stray Cat from the Republic of Korea
    Hyeong-Kyu Jeon, Hansol Park, Dongmin Lee, Seongjun Choe, Keeseon S. Eom
    The Korean Journal of Parasitology.2018; 56(1): 87.     CrossRef
  • Human Sparganosis in Korea
    Jeong-Geun Kim, Chun-Seob Ahn, Woon-Mok Sohn, Yukifumi Nawa, Yoon Kong
    Journal of Korean Medical Science.2018;[Epub]     CrossRef
  • Molecular Genetic Findings of Spirometra decipiens and S. ranarum in Korea
    Hyeong-Kyu Jeon, Sun Huh, Woon-Mok Sohn, Jong-Yil Chai, Keeseon S. Eom
    The Korean Journal of Parasitology.2018; 56(4): 359.     CrossRef
  • Establishment of the complete life cycle of Spirometra (Cestoda: Diphyllobothriidae) in the laboratory using a newly isolated triploid clone
    Tetsuya Okino, Hiroshi Ushirogawa, Kumiko Matoba, Shin-ichiro Nishimatsu, Mineki Saito
    Parasitology International.2017; 66(2): 116.     CrossRef
  • Using the small subunit of nuclear ribosomal DNA to reveal the phylogenetic position of the plerocercoid larvae of Spirometra tapeworms
    Xi Zhang, Jiang Yang Duan, Zhong Quan Wang, Peng Jiang, Ruo Dan Liu, Jing Cui
    Experimental Parasitology.2017; 175: 1.     CrossRef
  • Comparative mitochondrial genomics among Spirometra (Cestoda: Diphyllobothriidae) and the molecular phylogeny of related tapeworms
    Xi Zhang, Jiang Yang Duan, Ya Li Shi, Peng Jiang, De Jun Zeng, Zhong Quan Wang, Jing Cui
    Molecular Phylogenetics and Evolution.2017; 117: 75.     CrossRef
  • Spirometra erinaceieuropaei in a wildcat (Felis silvestris) in Iran
    Milad Badri, Aida Vafae Eslahi, Hamidreza Majidiani, Majid Pirestani
    Veterinary Parasitology: Regional Studies and Reports.2017; 10: 58.     CrossRef
  • 10,189 View
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  • 21 Web of Science
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Mitochondrial Genome Sequences of Spirometra erinaceieuropaei and S. decipiens (Cestoidea: Diphyllobothriidae)
Keeseon S. Eom, Hansol Park, Dongmin Lee, Seongjun Choe, Kyu-Heon Kim, Hyeong-Kyu Jeon
Korean J Parasitol 2015;53(4):455-463.
Published online August 25, 2015
DOI: https://doi.org/10.3347/kjp.2015.53.4.455
The present study was performed to compare the mitochondrial genomes between 2 Spirometra tapeworms, Spirometra erinaceieuropaei and Spirometra decipiens (Cestoidea: Diphyllobothriidae), which larval stages are important etiological agents of sparganosis in humans. For each species, the full mitochondrial genome was amplified in 8 overlapping fragments using total genomic DNA purified from a single worm as the template. The mitochondrial genomes were 13,643 bp (S. erinaceieuropaei) and 13,641 bp (S. decipiens) in length and contained 36 genes; 12 protein-coding genes, 2 ribosomal RNA (rRNA, small and large subunits), and 22 transfer RNAs (tRNAs). The 12 protein-coding genes constituted 10,083 bp (S. erinaceieuropaei) and 10,086 bp (S. decipiens) of their respective mitochondrial genomes. The tRNA genes, ranging in length from 56 to 70 bp, were identified based on putative secondary structures such as the typical cloverleaf shape. A total of 23 intergenic sequences, varying from 1 to 204 bp in size, were interspersed in S. erinaceieuropaei (total, 504 bp) and S. decipiens (total, 496 bp) mtDNA. The 12 protein-coding genes of S. erinaceieuropaei and S. decipiens differed by 12.4%, whereas the overall difference in mtDNA sequence between S. erinaceieuropaei and S. decipiens was 12.9%. Thus, from the standpoint of the mitochondrial genome, S. decipiens represents a valid species that can be distinguished from S. erinaceieuropaei.

Citations

Citations to this article as recorded by  Crossref logo
  • Description of Spirometra asiana sp. nov. (Cestoda: Diphyllobothriidae) found in wild boars and hound dogs in Japan
    Hiroshi Yamasaki, Hiromu Sugiyama, Yasuyuki Morishima, Hirotaka Kobayashi
    Parasitology International.2024; 98: 102798.     CrossRef
  • 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
  • Molecular identification of sparganum of Spirometra mansoni isolated from the abdominal cavity of a domestic cat in Vietnam
    Yen Thi Hoang NGUYEN, Lan Anh Thi NGUYEN, Hieu VAN DONG, Hieu Duc DUONG, Ayako YOSHIDA
    Journal of Veterinary Medical Science.2024; 86(1): 96.     CrossRef
  • Molecular Characterization and Phylogenetic Analysis of Spirometra Tapeworms from Snakes in Hunan Province
    Shu-Yu Chen, Teng-Fang Gong, Jun-Lin He, Fen Li, Wen-Chao Li, Li-Xing Xie, Xin-Rui Xie, Yi-Song Liu, Ying-Fang Zhou, Wei Liu
    Veterinary Sciences.2022; 9(2): 62.     CrossRef
  • Morphological Characteristics and Molecular Phylogenetic Evidence Support the Existence of a New Spirometra Species, Spirometra Asiana, (Cestoda: Diphyllobothriidae) in the Wild Boar
    Hiroshi Yamasaki, Hiromu Sugiyama, Yasuyuki Morishima
    SSRN Electronic Journal .2022;[Epub]     CrossRef
  • Spirometra species from Asia: Genetic diversity and taxonomic challenges
    Hiroshi Yamasaki, Oranuch Sanpool, Rutchanee Rodpai, Lakkhana Sadaow, Porntip Laummaunwai, Mesa Un, Tongjit Thanchomnang, Sakhone Laymanivong, Win Pa Pa Aung, Pewpan M. Intapan, Wanchai Maleewong
    Parasitology International.2021; 80: 102181.     CrossRef
  • Insight into One Health Approach: Endoparasite Infections in Captive Wildlife in Bangladesh
    Tilak Chandra Nath, Keeseon S. Eom, Seongjun Choe, Shahadat Hm, Saiful Islam, Barakaeli Abdieli Ndosi, Yeseul Kang, Mohammed Mebarek Bia, Sunmin Kim, Chatanun Eamudomkarn, Hyeong-Kyu Jeon, Hansol Park, Dongmin Lee
    Pathogens.2021; 10(2): 250.     CrossRef
  • First Clinical Cases of Spirometrosis in Two Cats in Korea
    Joohyung Kim, Younsung Ock, Kihwan Yang, Seongjun Choe, Kyung-Mee Park, Wan-Kyu Lee, Kyung-Chul Choi, Soochong Kim, Dongmi Kwak, Seung-Hun Lee
    The Korean Journal of Parasitology.2021; 59(2): 153.     CrossRef
  • Mitochondrial Genome of Spirometra theileri Compared with Other Spirometra Species
    Barakaeli Abdieli Ndosi, Hansol Park, Dongmin Lee, Seongjun Choe, Yeseul Kang, Tilak Chandra Nath, Mohammed Mebarek Bia, Chatanun Eamudomkarn, Hyeong-Kyu Jeon, Keeseon S. Eom
    The Korean Journal of Parasitology.2021; 59(2): 139.     CrossRef
  • Evolutionary transitions in broad tapeworms (Cestoda: Diphyllobothriidea) revealed by mitogenome and nuclear ribosomal operon phylogenetics
    Natalia Fraija-Fernández, Andrea Waeschenbach, Andrew G. Briscoe, Suzanne Hocking, Roman Kuchta, Tommi Nyman, D. Timothy J. Littlewood
    Molecular Phylogenetics and Evolution.2021; 163: 107262.     CrossRef
  • Comparative Characterization of Mitogenomes From Five Orders of Cestodes (Eucestoda: Tapeworms)
    Bruna Trevisan, Denis Jacob Machado, Daniel J. G. Lahr, Fernando P. L. Marques
    Frontiers in Genetics.2021;[Epub]     CrossRef
  • Complete Sequence of the Mitochondrial Genome of Spirometra ranarum: Comparison with S. erinaceieuropaei and S. decipiens
    Hyeong-Kyu Jeon, Hansol Park, Dongmin Lee, Seongjun Choe, Yeseul Kang, Mohammed Mebarek Bia, Sang-Hwa Lee, Keeseon S. Eom
    The Korean Journal of Parasitology.2019; 57(1): 55.     CrossRef
  • Development of EST-derived microsatellite markers to investigate the population structure of sparganum — the causative agent of zoonotic sparganosis
    Xi Zhang, Xiu Hong, Jiang Yang Duan, Lu Lu Han, Zi Yang Hong, Peng Jiang, Zhong Quan Wang, Jing Cui
    Parasitology.2019; 146(07): 947.     CrossRef
  • Broad tapeworms (Diphyllobothriidae), parasites of wildlife and humans: Recent progress and future challenges
    Tomáš Scholz, Roman Kuchta, Jan Brabec
    International Journal for Parasitology: Parasites and Wildlife.2019; 9: 359.     CrossRef
  • Mitochondrial DNA Sequence Variability of Spirometra Species in Asian Countries
    Hyeong-Kyu Jeon, Keeseon S. Eom
    The Korean Journal of Parasitology.2019; 57(5): 481.     CrossRef
  • Spirometra decipiens (Cestoda: Diphyllobothriidae) Collected in A Heavily Infected Stray Cat from the Republic of Korea
    Hyeong-Kyu Jeon, Hansol Park, Dongmin Lee, Seongjun Choe, Keeseon S. Eom
    The Korean Journal of Parasitology.2018; 56(1): 87.     CrossRef
  • Differential Diagnosis of Human Sparganosis Using Multiplex PCR
    Hyeong-Kyu Jeon, Kyu-Heon Kim, Woon-Mok Sohn, Keeseon S. Eom
    The Korean Journal of Parasitology.2018; 56(3): 295.     CrossRef
  • Establishment of the complete life cycle of Spirometra (Cestoda: Diphyllobothriidae) in the laboratory using a newly isolated triploid clone
    Tetsuya Okino, Hiroshi Ushirogawa, Kumiko Matoba, Shin-ichiro Nishimatsu, Mineki Saito
    Parasitology International.2017; 66(2): 116.     CrossRef
  • Using the small subunit of nuclear ribosomal DNA to reveal the phylogenetic position of the plerocercoid larvae of Spirometra tapeworms
    Xi Zhang, Jiang Yang Duan, Zhong Quan Wang, Peng Jiang, Ruo Dan Liu, Jing Cui
    Experimental Parasitology.2017; 175: 1.     CrossRef
  • Characterization of the complete mitochondrial genome of Khawia sinensis belongs among platyhelminths, cestodes
    Yan Feng, Han-Li Feng, Yi-Hui Fang, Ying-Bing Su
    Experimental Parasitology.2017; 177: 35.     CrossRef
  • Comparative mitochondrial genomics among Spirometra (Cestoda: Diphyllobothriidae) and the molecular phylogeny of related tapeworms
    Xi Zhang, Jiang Yang Duan, Ya Li Shi, Peng Jiang, De Jun Zeng, Zhong Quan Wang, Jing Cui
    Molecular Phylogenetics and Evolution.2017; 117: 75.     CrossRef
  • Complete sequence and characterization of the mitochondrial genome of Diphyllobothrium stemmacephalum , the type species of genus Diphyllobothrium (Cestoda: Diphyllobothriidae), using next generation sequencing
    Hiroshi Yamasaki, Shinji Izumiyama, Tomoyoshi Nozaki
    Parasitology International.2017; 66(5): 573.     CrossRef
  • Genetic Identification of Spirometra decipiens Plerocercoids in Terrestrial Snakes from Korea and China
    Hyeong-Kyu Jeon, Hansol Park, Dongmin Lee, Seongjun Choe, Kyu-Heon Kim, Woon- Mok Sohn, Keeseon S. Eom
    The Korean Journal of Parasitology.2016; 54(2): 181.     CrossRef
  • Molecular Detection of Spirometra decipiens in the United States
    Hyeong-Kyu Jeon, Hansol Park, Dongmin Lee, Seongjun Choe, Woon-Mok Sohn, Keeseon S. Eom
    The Korean Journal of Parasitology.2016; 54(4): 503.     CrossRef
  • Rapid identification of nine species of diphyllobothriidean tapeworms by pyrosequencing
    Tongjit Thanchomnang, Chairat Tantrawatpan, Pewpan M. Intapan, Oranuch Sanpool, Viraphong Lulitanond, Somjintana Tourtip, Hiroshi Yamasaki, Wanchai Maleewong
    Scientific Reports.2016;[Epub]     CrossRef
  • 12,040 View
  • 151 Download
  • 26 Web of Science
  • Crossref
Human Infections with Spirometra decipiens Plerocercoids Identified by Morphologic and Genetic Analyses in Korea
Hyeong-Kyu Jeon, Hansol Park, Dongmin Lee, Seongjun Choe, Kyu-Heon Kim, Sun Huh, Woon-Mok Sohn, Jong-Yil Chai, Keeseon S. Eom
Korean J Parasitol 2015;53(3):299-305.
Published online June 30, 2015
DOI: https://doi.org/10.3347/kjp.2015.53.3.299
Tapeworms of the genus Spirometra are pseudophyllidean cestodes endemic in Korea. At present, it is unclear which Spirometra species are responsible for causing human infections, and little information is available on the epidemiological profiles of Spirometra species infecting humans in Korea. Between 1979 and 2009, a total of 50 spargana from human patients and 2 adult specimens obtained from experimentally infected carnivorous animals were analyzed according to genetic and taxonomic criteria and classified as Spirometra erinaceieuropaei or Spirometra decipiens depending on the morphology. Morphologically, S. erinaceieuropaei and S. decipiens are different in that the spirally coiled uterus in S. erinaceieuropaei has 5-7 complete coils, while in S. decipiens it has only 4.5 coils. In addition, there is a 9.3% (146/1,566) sequence different between S. erinaceieuropaei and S. decipiens in the cox1 gene. Partial cox1 sequences (390 bp) from 35 Korean isolates showed 99.4% (388/390) similarity with the reference sequence of S. erinaceieuropaei from Korea (G1724; GenBank KJ599680) and an additional 15 Korean isolates revealed 99.2% (387/390) similarity with the reference sequences of S. decipiens from Korea (G1657; GenBank KJ599679). Based on morphologic and molecular databases, the estimated population ratio of S. erinaceieuropaei to S. decipiens was 35: 15. Our results indicate that both S. erinaceieuropaei and S. decipiens found in Korea infect humans, with S. erinaceieuropaei being 2 times more prevalent than S. decipiens. This study is the first to report human sparganosis caused by S. decipiens in humans in Korea.

Citations

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  • Molecular confirmation of Spirometra mansoni (Cestoda: Diphyllobothriidae) in Javanese keelback water snake (Fowlea melanzosta) in Indonesia
    Ryanka Edila, Seongjun Choe, Mustofa Helmi Effendi, Lucia Tri Suwanti, John Yew Huat Tang
    International Journal for Parasitology: Parasites and Wildlife.2025; 28: 101150.     CrossRef
  • A case of cerebral sparganosis diagnosed by surgical resection and molecular analysis
    Ryo Miyahara, Osamu Akiyama, Naoko Yoshida, Mai Suzuki, Karin Ashizawa, Takuma Kodama, Yuzaburo Shimizu, Akihide Kondo
    Surgical Neurology International.2025; 16: 512.     CrossRef
  • Description of Spirometra asiana sp. nov. (Cestoda: Diphyllobothriidae) found in wild boars and hound dogs in Japan
    Hiroshi Yamasaki, Hiromu Sugiyama, Yasuyuki Morishima, Hirotaka Kobayashi
    Parasitology International.2024; 98: 102798.     CrossRef
  • Sparganosis
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    Acta Parasitologica.2024; 69(2): 1304.     CrossRef
  • Diversity and biology of Spirometra tapeworms (Cestoda: Diphyllobothriidea), zoonotic parasites of wildlife: A review
    Roman Kuchta, Anna J. Phillips, Tomáš Scholz
    International Journal for Parasitology: Parasites and Wildlife.2024; 24: 100947.     CrossRef
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    Parasite.2024; 31: 58.     CrossRef
  • Morphometry and Molecular Identification of Haemonchus Cobb, 1898 (Trichostrongylidae: Nematoda) Isolates from Small Ruminants in Tanzania Based on Mitochondrial cox 1 and rRNA-ITS genes
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    Journal of Parasitology Research.2023; 2023: 1.     CrossRef
  • Hand palm sparganosis: morphologically and genetically confirmed Spirometra erinaceieuropaei in a fourteen-year-old girl, Egypt
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    Journal of Parasitic Diseases.2023; 47(4): 859.     CrossRef
  • Helminth infections in dogs in Phu Tho Province, northern Vietnam
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  • Epidemiology, Diagnosis, and Prevention of Sparganosis in Asia
    Wei Liu, Tengfang Gong, Shuyu Chen, Quan Liu, Haoying Zhou, Junlin He, Yong Wu, Fen Li, Yisong Liu
    Animals.2022; 12(12): 1578.     CrossRef
  • Genetic and Morphological Identification of Spirometra decipiens in Snakes and Domestic Dog Found in Cuba
    Alexander Morales, Rebeca M. Laird-Pérez, Virginia Capó, Enrique Iglesias, Luis Fonte, Arturo Plascencia-Hernández, Enrique J. Calderón, Keeseon S. Eom, Yaxsier de Armas, Héctor R. Pérez-Gómez
    Pathogens.2022; 11(12): 1468.     CrossRef
  • Morphological Characteristics and Molecular Phylogenetic Evidence Support the Existence of a New Spirometra Species, Spirometra Asiana, (Cestoda: Diphyllobothriidae) in the Wild Boar
    Hiroshi Yamasaki, Hiromu Sugiyama, Yasuyuki Morishima
    SSRN Electronic Journal .2022;[Epub]     CrossRef
  • Spirometra species from Asia: Genetic diversity and taxonomic challenges
    Hiroshi Yamasaki, Oranuch Sanpool, Rutchanee Rodpai, Lakkhana Sadaow, Porntip Laummaunwai, Mesa Un, Tongjit Thanchomnang, Sakhone Laymanivong, Win Pa Pa Aung, Pewpan M. Intapan, Wanchai Maleewong
    Parasitology International.2021; 80: 102181.     CrossRef
  • Sparganosis (Spirometra) in Europe in the Molecular Era
    Roman Kuchta, Marta Kołodziej-Sobocińska, Jan Brabec, Daniel Młocicki, Rusłan Sałamatin, Tomáš Scholz
    Clinical Infectious Diseases.2021; 72(5): 882.     CrossRef
  • Insight into One Health Approach: Endoparasite Infections in Captive Wildlife in Bangladesh
    Tilak Chandra Nath, Keeseon S. Eom, Seongjun Choe, Shahadat Hm, Saiful Islam, Barakaeli Abdieli Ndosi, Yeseul Kang, Mohammed Mebarek Bia, Sunmin Kim, Chatanun Eamudomkarn, Hyeong-Kyu Jeon, Hansol Park, Dongmin Lee
    Pathogens.2021; 10(2): 250.     CrossRef
  • Mitochondrial Genome of Spirometra theileri Compared with Other Spirometra Species
    Barakaeli Abdieli Ndosi, Hansol Park, Dongmin Lee, Seongjun Choe, Yeseul Kang, Tilak Chandra Nath, Mohammed Mebarek Bia, Chatanun Eamudomkarn, Hyeong-Kyu Jeon, Keeseon S. Eom
    The Korean Journal of Parasitology.2021; 59(2): 139.     CrossRef
  • First Clinical Cases of Spirometrosis in Two Cats in Korea
    Joohyung Kim, Younsung Ock, Kihwan Yang, Seongjun Choe, Kyung-Mee Park, Wan-Kyu Lee, Kyung-Chul Choi, Soochong Kim, Dongmi Kwak, Seung-Hun Lee
    The Korean Journal of Parasitology.2021; 59(2): 153.     CrossRef
  • A case of human breast sparganosis diagnosed as Spirometra Type I by molecular analysis in Japan
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    Parasitology International.2021; 84: 102383.     CrossRef
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  • Large-scale survey of a neglected agent of sparganosis Spirometra erinaceieuropaei (Cestoda: Diphyllobothriidae) in wild frogs in China
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    Wilai Saksirisampant, Chatanun Eamudomkarn, Hyeong-Kyu Jeon, Keeseon S. Eom, Buravej Assavapongpaiboon, Sunisa Sintuwong, Wasee Tulvatana
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  • Morphological and Molecular Identification of Spirometra Tapeworms (Cestoda: Diphyllobothriidae) from Carnivorous Mammals in the Serengeti and Selous Ecosystems of Tanzania
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  • Complete Sequence of the Mitochondrial Genome of Spirometra ranarum: Comparison with S. erinaceieuropaei and S. decipiens
    Hyeong-Kyu Jeon, Hansol Park, Dongmin Lee, Seongjun Choe, Yeseul Kang, Mohammed Mebarek Bia, Sang-Hwa Lee, Keeseon S. Eom
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    The Korean Journal of Parasitology.2018; 56(1): 87.     CrossRef
  • Differential Diagnosis of Human Sparganosis Using Multiplex PCR
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  • Genetic and Morphologic Identification of Spirometra ranarum in Myanmar
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  • Molecular and Morphologic Identification of Spirometra ranarum Found in the Stool of African Lion, Panthera leo in the Serengeti Plain of Tanzania
    Keeseon S. Eom, Hansol Park, Dongmin Lee, Seongjun Choe, Yeseul Kang, Mohammed Mebarek Bia, Sang-Hwa Lee, Julius Keyyu, Robert Fyumagwa, Hyeong-Kyu Jeon
    The Korean Journal of Parasitology.2018; 56(4): 379.     CrossRef
  • Molecular Genetic Findings of Spirometra decipiens and S. ranarum in Korea
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    The Korean Journal of Parasitology.2018; 56(4): 359.     CrossRef
  • Human Sparganosis in Korea
    Jeong-Geun Kim, Chun-Seob Ahn, Woon-Mok Sohn, Yukifumi Nawa, Yoon Kong
    Journal of Korean Medical Science.2018;[Epub]     CrossRef
  • Establishment of the complete life cycle of Spirometra (Cestoda: Diphyllobothriidae) in the laboratory using a newly isolated triploid clone
    Tetsuya Okino, Hiroshi Ushirogawa, Kumiko Matoba, Shin-ichiro Nishimatsu, Mineki Saito
    Parasitology International.2017; 66(2): 116.     CrossRef
  • Molecular identification of intramuscular and subcutaneous Spirometra erinaceiuropaei sparganosis in a Japanese patient
    Tomoko Kudo, Ai Fujioka, Masataka Korenaga, Hiroshi Yamasaki, Yasuyuki Morishima, Hiromu Sugiyama, Hideki Nakajima, Shigetoshi Sano
    The Journal of Dermatology.2017;[Epub]     CrossRef
  • Using the small subunit of nuclear ribosomal DNA to reveal the phylogenetic position of the plerocercoid larvae of Spirometra tapeworms
    Xi Zhang, Jiang Yang Duan, Zhong Quan Wang, Peng Jiang, Ruo Dan Liu, Jing Cui
    Experimental Parasitology.2017; 175: 1.     CrossRef
  • Molecular Identification of Spirometra erinaceieuropaei Tapeworm in Cases of Human Sparganosis, Hong Kong
    Tommy H.C. Tang, Samson S.Y. Wong, Christopher K.C. Lai, Rosana W.S. Poon, Helen S.Y. Chan, Tak Chiu Wu, Yuk-Fai Cheung, Tak-Lap Poon, Yi-Po Tsang, Wai-Lun Tang, Alan K.L. Wu
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  • The catholic taste of broad tapeworms ? multiple routes to human infection
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  • Case report: the first case of human infection by adult of SPIROMETRA ERINACEIEUROPAEI in VIETNAM
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    BMC Infectious Diseases.2017;[Epub]     CrossRef
  • Genetic Identification of Spirometra decipiens Plerocercoids in Terrestrial Snakes from Korea and China
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  • Parasitism by larval tapeworms genus Spirometra in South American amphibians and reptiles: new records from Brazil and Uruguay, and a review of current knowledge in the region
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    The Korean Journal of Parasitology.2016; 54(4): 503.     CrossRef
  • Rapid identification of nine species of diphyllobothriidean tapeworms by pyrosequencing
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    Scientific Reports.2016;[Epub]     CrossRef
  • Mitochondrial Genome Sequences of <i>Spirometra erinaceieuropaei</i> and <i>S. decipiens</i> (Cestoidea: Diphyllobothriidae)
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Case Reports

Recurred Sparganosis 1 Year after Surgical Removal of a Sparganum in a Korean Woman
Young-Il Lee, Min Seo, Hyun-Woo Park
Korean J Parasitol 2014;52(1):75-78.
Published online February 19, 2014
DOI: https://doi.org/10.3347/kjp.2014.52.1.75

Sparganosis, an infection due to the plerocercoid of Spirometra erinacei, are found worldwide but the majority of cases occur in East Asia including Korea. This report is on a recurred case of sparganosis in the subcutaneous tissue of the right lower leg 1 year after a surgical removal of a worm from a similar region. At admission, ultrasonography (USG) of the lesion strongly suggested sparganosis, and a worm was successfully removed which turned out to be a sparganum with scolex. Since sparganum has a variable life span, and may develop into a life-threatening severe case, a patient once diagnosed as sparganosis should be properly followed-up for a certain period of time. Although imaging modalities were useful for the diagnosis of sparganosis as seen in this case, serological test such as ELISA should also be accompanied so as to support the preoperative diagnosis.

Citations

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  • Diagnosis and treatment of human sparganosis
    Hong Li, Jianping Hu, Peizeng Yang
    The Lancet Infectious Diseases.2019; 19(6): 577.     CrossRef
  • Three Cases of Sparganosis Mansoni : Identification of the Causative Parasite Species by PCR Methods
    Tetsu SONOSAKI, Yuko OKUBO, Takuya OMINE, Takuya MIYAGI, Yoshiyuki KARIYA, Yu-ichi YAMAMOTO, Kenzo TAKAHASHI, Hiroshi UEZATO
    Nishi Nihon Hifuka.2016; 78(5): 522.     CrossRef
  • Recurrent Breast Sparganosis: Clinical and Radiological Findings
    Jiyoon Park, Ok Hee Woo, Kyu Ran Cho, Bo Kyoung Seo
    Journal of the Korean Society of Radiology.2015; 73(3): 164.     CrossRef
  • Clinical Features of Pulmonary Sparganosis
    Ning Li, Yi Xiang, Yun Feng, Min Li, Bei Li Gao, Qing Yun Li
    The American Journal of the Medical Sciences.2015; 350(6): 436.     CrossRef
  • 9,413 View
  • 98 Download
  • 2 Web of Science
  • Crossref
Intramuscular Sparganosis in the Gastrocnemius Muscle: A Case Report
Jeung Il Kim, Tae Wan Kim, Sung Min Hong, Tae Yong Moon, In Sook Lee, Kyung Un Choi, Hak Sun Yu
Korean J Parasitol 2014;52(1):69-73.
Published online February 19, 2014
DOI: https://doi.org/10.3347/kjp.2014.52.1.69

Sparganosis is a parasitic infection caused by the plerocercoid tapeworm larva of the genus Spirometra. Although the destination of the larva is often a tissue or muscle in the chest, abdominal wall, extremities, eyes, brain, urinary tract, spinal canal, and scrotum, intramuscular sparganosis is uncommon and therefore is difficult to distinguish from a soft tissue tumor. We report a case of intramuscular sparganosis involving the gastrocnemius muscle in an elderly patient who was diagnosed using ultrasonography and MRI and treated by surgical excision. At approximately 1 cm near the schwannoma at the right distal sciatic nerve, several spargana worms were detected and removed.

Citations

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  • Sparganosis – An Esoteric Infection
    Preethy Edavaloth, Vishnu Prabhakar, Sahjid Mukhida, Shahzad Beg Mirza
    Medical Journal of Dr. D.Y. Patil Vidyapeeth.2024; 17(Suppl 1): S239.     CrossRef
  • Miyozite Neden Olan Parazitler
    Süleyman Kaan Öner, Sevil Alkan Çeviker, Numan Kuyubaşı
    Black Sea Journal of Health Science.2023; 6(3): 498.     CrossRef
  • Epidemiology, Diagnosis, and Prevention of Sparganosis in Asia
    Wei Liu, Tengfang Gong, Shuyu Chen, Quan Liu, Haoying Zhou, Junlin He, Yong Wu, Fen Li, Yisong Liu
    Animals.2022; 12(12): 1578.     CrossRef
  • Sparganosis mimicking a soft-tissue tumor
    Shiwangi Sharma, Rakesh Kumar Mahajan, Hira Ram, M. Karikalan, Arvind Achra
    Tropical Parasitology.2021; 11(1): 49.     CrossRef
  • Apparent Sparganosis Presenting as a Palpable Neck Mass: A Case Report and Review of Literature
    Minhee Hwang, Hye Jin Baek, Sang Min Lee
    Journal of the Korean Society of Radiology.2020; 81(5): 1210.     CrossRef
  • Clinical Manifestation of a Patient With Forehead Sparganosis
    Soung Min Kim, Emmanuel Kofi Amponsah, Mi Young Eo, Yun Ju Cho, Suk Keun Lee
    Journal of Craniofacial Surgery.2017; 28(4): 1081.     CrossRef
  • Multifocal Sparganosis Mimicking Lymphoma Involvement: Multimodal Imaging Findings of Ultrasonography, CT, MRI, and Positron Emission Tomography-Computed Tomography
    So Young Heo, Ji Yeon Park, Noh Hyuck Park, Chan Sub Park, Taejung Kwon, Seong Yoon Yi, Hyun Jung Jun
    Journal of the Korean Society of Radiology.2016; 74(1): 55.     CrossRef
  • Human sparganosis, a neglected food borne zoonosis
    Quan Liu, Ming-Wei Li, Ze-Dong Wang, Guang-Hui Zhao, Xing-Quan Zhu
    The Lancet Infectious Diseases.2015; 15(10): 1226.     CrossRef
  • 12,949 View
  • 105 Download
  • 5 Web of Science
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Original Article

Diagnostic Efficacy of a Recombinant Cysteine Protease of Spirometra erinacei Larvae for Serodiagnosis of Sparganosis
S.M. Mazidur Rahman, Jae-Hwan Kim, Sung-Tae Hong, Min-Ho Choi
Korean J Parasitol 2014;52(1):41-46.
Published online February 19, 2014
DOI: https://doi.org/10.3347/kjp.2014.52.1.41

The mature domain of a cysteine protease of Spirometra erinacei plerocercoid larva (i.e., sparganum) was expressed in Escherichia coli, and its value as an antigen for the serodiagnosis of sparganosis was investigated. The recombinant protein (rSepCp-1) has the molecular weight of 23.4 kDa, and strongly reacted with the sparganum positive human or mice sera but not with negative sera by immunoblotting. ELISA with rSepCp-1 protein or sparganum crude antigen (SeC) was evaluated for the serodiagnosis of sparganosis using patient's sera. The sensitivity and specificity of ELISA using rSepCp-1 protein were 95.0% (19/20) and 99.1% (111/112), respectively. In contrast, the sensitivity and specificity of ELISA with SeC were 100% (20/20) and 96.4% (108/112), respectively. Moreover, in experimentally infected mice, the sensitivity and specificity of both ELISA assays were 100% for the detection of anti-sparganum IgG. It is suggested that the rSepCp-1 protein-based ELISA could provide a highly sensitive and specific assay for the diagnosis of sparganosis.

Citations

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  • Development of an immunochromatographic test for serodiagnosis of human sparganosis
    Jitaporn Harasan, Lakkhana Sadaow, Patcharaporn Boonroumkaew, Rutchanee Rodpai, Oranuch Sanpool, Hiroshi Yamasaki, Pewpan M. Intapan, Wanchai Maleewong
    Parasitology Research.2025;[Epub]     CrossRef
  • Establishment of Animal Infection Model of Spirometra Mansoni and Identification of Spirometra Mansoni by Enzyme-Linked Immunosorbent Assay
    Anqi Luo, Shuyu Chen, Mingye He, Xiaoruo Tan, Zhikang Li, Wei Liu, Yisong Liu
    Vector-Borne and Zoonotic Diseases.2024;[Epub]     CrossRef
  • Case Report: Moving Tumor-Like Foci Behind Refractory Epilepsy-Cerebral Sparganosis Successfully Treated by Surgery After Failure of Praziquantel Treatment
    Yusi Chen, Xu Chen, Huicong Kang
    Frontiers in Neurology.2022;[Epub]     CrossRef
  • Standardization of recombinant Ancylostoma caninum cysteine protease 2 (rAcCP2) based indirect ELISA for serodiagnosis of hookworm infection in dogs
    SUCHITA P UKE, RAJAT GARG, SHAFIYA IMTIAZ RAFIQI, HIRA RAM, K L KHURANA, P S BANERJEE
    The Indian Journal of Animal Sciences.2018; 88(2): 153.     CrossRef
  • Molecular Identification of Spirometra erinaceieuropaei Tapeworm in Cases of Human Sparganosis, Hong Kong
    Tommy H.C. Tang, Samson S.Y. Wong, Christopher K.C. Lai, Rosana W.S. Poon, Helen S.Y. Chan, Tak Chiu Wu, Yuk-Fai Cheung, Tak-Lap Poon, Yi-Po Tsang, Wai-Lun Tang, Alan K.L. Wu
    Emerging Infectious Diseases.2017; 23(4): 665.     CrossRef
  • Serodiagnosis of sparganosis by ELISA using recombinant cysteine protease of Spirometra erinaceieuropaei spargana
    Li Na Liu, Xi Zhang, Peng Jiang, Ruo Dan Liu, Jian Zhou, Rui Zhe He, Jing Cui, Zhong Quan Wang
    Parasitology Research.2015; 114(2): 753.     CrossRef
  • Human sparganosis, a neglected food borne zoonosis
    Quan Liu, Ming-Wei Li, Ze-Dong Wang, Guang-Hui Zhao, Xing-Quan Zhu
    The Lancet Infectious Diseases.2015; 15(10): 1226.     CrossRef
  • Clinical Features of Pulmonary Sparganosis
    Ning Li, Yi Xiang, Yun Feng, Min Li, Bei Li Gao, Qing Yun Li
    The American Journal of the Medical Sciences.2015; 350(6): 436.     CrossRef
  • Characterization of Spirometra erinaceieuropaei Plerocercoid Cysteine Protease and Potential Application for Serodiagnosis of Sparganosis
    Li Na Liu, Zhong Quan Wang, Xi Zhang, Peng Jiang, Xin Qi, Ruo Dan Liu, Zi Fang Zhang, Jing Cui, Xiao-Nong Zhou
    PLOS Neglected Tropical Diseases.2015; 9(6): e0003807.     CrossRef
  • Molecular characterization of a Spirometra mansoni antigenic polypeptide gene encoding a 28.7 kDa protein
    Jing Cui, Tong Wei, Li Na Liu, Xi Zhang, Xin Qi, Zi Fang Zhang, Zhong Quan Wang
    Parasitology Research.2014; 113(9): 3511.     CrossRef
  • Development of a Rapid Diagnostic Kit That Uses an Immunochromatographic Device To Detect Antibodies in Human Sparganosis
    Hiroshi Yamasaki, Takeshi Nakamura, Pewpan M. Intapan, Wanchai Maleewong, Yasuyuki Morishima, Hiromu Sugiyama, Hiroyuki Matsuoka, Kaoru Kobayashi, Katsuyoshi Takayama, Yukuharu Kobayashi, P. P. Wilkins
    Clinical and Vaccine Immunology.2014; 21(9): 1360.     CrossRef
  • 10,838 View
  • 70 Download
  • 12 Web of Science
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Case Report

Sparganosis Presenting as Cauda Equina Syndrome with Molecular Identification of the Parasite in Tissue Sections
Adhiratha Boonyasiri, Pornsuk Cheunsuchon, Prajak Srirabheebhat, Hiroshi Yamasaki, Wanchai Maleewong, Pewpan M. Intapan
Korean J Parasitol 2013;51(6):739-742.
Published online December 31, 2013
DOI: https://doi.org/10.3347/kjp.2013.51.6.739

A 52-year-old woman presented with lower back pain, progressive symmetrical paraparesis with sensory impairment, and sphincter disturbance. Magnetic resonance imaging (MRI) of the whole spine revealed multiple intradural extramedullary serpiginous-mass lesions in the subarachnoid space continuously from the prepontine to the anterior part of the medulla oblongata levels, C7, T2-T8, and T12 vertebral levels distally until the end of the theca sac and filling-in the right S1 neural foramen. Sparganosis was diagnosed by demonstration of the sparganum in histopathological sections of surgically resected tissues and also by the presence of serum IgG antibodies by ELISA. DNA was extracted from unstained tissue sections, and a partial fragment of mitochondrial cytochrome c oxidase subunit 1 (cox1) gene was amplified using a primer set specific for Spirometra spp. cox1. After sequencing of the PCR-amplicon and alignment of the nucleotide sequence data, the causative agent was identified as the larva of Spirometra erinaceieuropaei.

Citations

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  • Sparganosis of the Cauda Equina: A Rare Case of Lower Thoracic Cord Edema and Diagnostic Challenges
    Prasert Iampreechakul, Chonlada Angsusing, Sunisa Hangsapruek, Samasuk Thammachantha, Adisak Tanpun
    Asian Journal of Neurosurgery.2025; 20(02): 378.     CrossRef
  • A case of cerebral sparganosis diagnosed by surgical resection and molecular analysis
    Ryo Miyahara, Osamu Akiyama, Naoko Yoshida, Mai Suzuki, Karin Ashizawa, Takuma Kodama, Yuzaburo Shimizu, Akihide Kondo
    Surgical Neurology International.2025; 16: 512.     CrossRef
  • Description of Spirometra asiana sp. nov. (Cestoda: Diphyllobothriidae) found in wild boars and hound dogs in Japan
    Hiroshi Yamasaki, Hiromu Sugiyama, Yasuyuki Morishima, Hirotaka Kobayashi
    Parasitology International.2024; 98: 102798.     CrossRef
  • Establishment of Animal Infection Model of Spirometra Mansoni and Identification of Spirometra Mansoni by Enzyme-Linked Immunosorbent Assay
    Anqi Luo, Shuyu Chen, Mingye He, Xiaoruo Tan, Zhikang Li, Wei Liu, Yisong Liu
    Vector-Borne and Zoonotic Diseases.2024;[Epub]     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
  • Multiple sparganosis spinal infections mainly in the thoracic region: A case report
    Gan-Jun Wen, Jian Chen, Shi-Fei Zhang, Zhi-Sen Zhou, Gen-Long Jiao
    World Journal of Clinical Cases.2023; 11(36): 8507.     CrossRef
  • Morphological Characteristics and Molecular Phylogenetic Evidence Support the Existence of a New Spirometra Species, Spirometra Asiana, (Cestoda: Diphyllobothriidae) in the Wild Boar
    Hiroshi Yamasaki, Hiromu Sugiyama, Yasuyuki Morishima
    SSRN Electronic Journal .2022;[Epub]     CrossRef
  • Spirometra species from Asia: Genetic diversity and taxonomic challenges
    Hiroshi Yamasaki, Oranuch Sanpool, Rutchanee Rodpai, Lakkhana Sadaow, Porntip Laummaunwai, Mesa Un, Tongjit Thanchomnang, Sakhone Laymanivong, Win Pa Pa Aung, Pewpan M. Intapan, Wanchai Maleewong
    Parasitology International.2021; 80: 102181.     CrossRef
  • Case Report: Sparganosis of the Cauda Equina
    Verajit Chotmongkol, Warinthorn Phuttharak, Kritsakorn Jingjit, Nipon Chaisuriya, Oranuch Sanpool, Soramon Chaichan, Sittichai Khamsai
    The American Journal of Tropical Medicine and Hygiene.2021; 104(1): 298.     CrossRef
  • Low prevalence of spargana infection in farmed frogs in the Yangtze River Delta of China
    Xiaoli Zhang, Rongsheng Mi, Yehua Zhang, Shijie Zhang, Tao Sun, Haiyan Jia, Yan Huang, Haiyan Gong, Xiangan Han, Zhaoguo Chen
    Infection, Genetics and Evolution.2020; 85: 104466.     CrossRef
  • Cauda equina syndrome secondary to extramedullary spinal sparganosis
    Tzu-Hsieh Hsu, Tzu-Tsao Chung, Yi-Ani Chen, Among-Hsuan Chung
    Formosan Journal of Surgery.2020; 53(6): 230.     CrossRef
  • Differential Diagnosis of Human Sparganosis Using Multiplex PCR
    Hyeong-Kyu Jeon, Kyu-Heon Kim, Woon-Mok Sohn, Keeseon S. Eom
    The Korean Journal of Parasitology.2018; 56(3): 295.     CrossRef
  • Rapid identification of nine species of diphyllobothriidean tapeworms by pyrosequencing
    Tongjit Thanchomnang, Chairat Tantrawatpan, Pewpan M. Intapan, Oranuch Sanpool, Viraphong Lulitanond, Somjintana Tourtip, Hiroshi Yamasaki, Wanchai Maleewong
    Scientific Reports.2016;[Epub]     CrossRef
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    Quan Liu, Ming-Wei Li, Ze-Dong Wang, Guang-Hui Zhao, Xing-Quan Zhu
    The Lancet Infectious Diseases.2015; 15(10): 1226.     CrossRef
  • Research Note. Cox-1 gene sequence of Spirometra in Pampas foxes from Argentina
    R. S. Petrigh, N. P. Scioscia, G. M. Denegri, M. H. Fugassa
    Helminthologia.2015; 52(4): 355.     CrossRef
  • Nine Human Sparganosis Cases in Thailand with Molecular Identification of Causative Parasite Species
    Wanchai Maleewong, Pewpan M. Intapan, Adhiratha Boonyasiri, Pornsuk Cheunsuchon, Hiroshi Yamasaki, Yupin Suputtamongkol, Oranuch Sanpool
    The American Journal of Tropical Medicine and Hygiene.2014; 91(2): 389.     CrossRef
  • 10,022 View
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Brief Communications

Spargana in a Weasel, Mustela sibirica manchurica, and a Wild Boar, Sus scrofa, from Gangwon-do, Korea
Seung-Ha Lee, Eun-Yoon Choe, Hyun-Duk Shin, Min Seo
Korean J Parasitol 2013;51(3):379-381.
Published online June 30, 2013
DOI: https://doi.org/10.3347/kjp.2013.51.3.379

To know the status of sparganum (plerocercoid of Spirometra erinacei) infection in the Korean wild life, several species of wild animals were captured in Gangwon-do and examined for their status of infection with spargana. From February to December 2011, a total of 62 wild boars, 5 badgers, 1 weasel, 1 Siberian chipmunk, and 53 wild rodents were captured, and their whole muscles were examined with naked eyes for the presence of spargana worms. From the weasel and 1 wild boar, a total of 5 spargana specimens were extracted. The weasel was for the first time recorded as an intermediate or paratenic/transport host of S. erinacei in Korea, and both the weasel (Mustela sibirica manchurica) and wild boar (Sus scrofa) were added to the list of wild animals carrying spargana.

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  • Important nutrient sources and carbohydrate metabolism patterns in the growth and development of spargana
    Pei Liang, Peng Liang, Kemin Chen, Zhengxin Chen, Yamei Liu, Yujin Lin, Jin Li, Ruijia Fu, Gang Lu, Dayong Wang
    Parasites & Vectors.2024;[Epub]     CrossRef
  • Establishment of Animal Infection Model of Spirometra Mansoni and Identification of Spirometra Mansoni by Enzyme-Linked Immunosorbent Assay
    Anqi Luo, Shuyu Chen, Mingye He, Xiaoruo Tan, Zhikang Li, Wei Liu, Yisong Liu
    Vector-Borne and Zoonotic Diseases.2024;[Epub]     CrossRef
  • Spirometra species from Asia: Genetic diversity and taxonomic challenges
    Hiroshi Yamasaki, Oranuch Sanpool, Rutchanee Rodpai, Lakkhana Sadaow, Porntip Laummaunwai, Mesa Un, Tongjit Thanchomnang, Sakhone Laymanivong, Win Pa Pa Aung, Pewpan M. Intapan, Wanchai Maleewong
    Parasitology International.2021; 80: 102181.     CrossRef
  • Morphological Features and Structural Analysis of Plerocercoids of Spirometra erinaceieuropaei (Cestoda: Diphyllobothriidae) from European Pine Marten, Martes martes (Mammalia: Mustelidae) in Ukraine
    Nataliya Yu. Rubtsova, Richard A. Heckmann
    Comparative Parasitology.2020; 87(1): 109.     CrossRef
  • Mustela sibirica (Carnivora: Mustelidae)
    Chris J Law
    Mammalian Species.2018; 50(966): 109.     CrossRef
  • RETROSPECTIVE ANALYSIS OF THE EPIDEMIOLOGIC LITERATURE, 1990–2015, ON WILDLIFE-ASSOCIATED DISEASES FROM THE REPUBLIC OF KOREA
    Jusun Hwang, Kyunglee Lee, Young-Jun Kim, Jonathan M. Sleeman, Hang Lee
    Journal of Wildlife Diseases.2017; 53(1): 5.     CrossRef
  • Spirometra erinaceieuropaei in a wildcat (Felis silvestris) in Iran
    Milad Badri, Aida Vafae Eslahi, Hamidreza Majidiani, Majid Pirestani
    Veterinary Parasitology: Regional Studies and Reports.2017; 10: 58.     CrossRef
  • Sparganosis in wild boar ( Sus scrofa ) – Implications for veterinarians, hunters, and consumers
    Marta Kołodziej-Sobocińska, Mariusz Miniuk, Iwona Ruczyńska, Małgorzata Tokarska
    Veterinary Parasitology.2016; 227: 115.     CrossRef
  • Human sparganosis, a neglected food borne zoonosis
    Quan Liu, Ming-Wei Li, Ze-Dong Wang, Guang-Hui Zhao, Xing-Quan Zhu
    The Lancet Infectious Diseases.2015; 15(10): 1226.     CrossRef
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Electron Microscopy of the Separated Outer Tegument of the Sparganum and Its Antigenicity
Hyun-Jong Yang
Korean J Parasitol 2012;50(2):181-183.
Published online May 24, 2012
DOI: https://doi.org/10.3347/kjp.2012.50.2.181

The author reported previously on separation of the outer tegument of the spargana (plerocercoids of Spirometra mansoni) using high concentration of urea solution. To determine which layer of the tegument is separated by this method, an electron microscopic analysis has been processed in this study. It was confirmed that the basement layer of the tegument is separated from the parenchyme of the sparganum. In addition, the antigenicity of the separated outer tegument against the human sparganosis patient sera was evaluated. Numerous antigenic proteins, including 16 and 55 kDa proteins, were noticed in the separated tegument; however, there were no diagnostic 31/36 kDa molecules in this tegument. The molecules reactive with the patient sera in the tegument are to be characterized in future studies.

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Sparganosis is a tissue invading helminthiasis infecting intermediate hosts, including humans. Strong immune responses are expected to occur in early phases of infection. Thus, we investigated cytokine expressions in splenic dendritic cells and in sera after experimental infection of mice. In splenic dendritic cells, TNF-α and IL-1β expression peaked at week 1 and week 3 post-infection (PI), respectively, and also early phase (week 2 PI) depressed cytokine expression was noticed. Serum IL-1β concentration increased significantly at week 2 PI and peaked at week 6 PI, and that of TNF-α peaked at week 6 PI. These results showed that pro-inflammatory cytokines, TNF-α and IL-1β, are chronologically regulated in mouse sparganosis.

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Separation of the Syncytial Layer of Spargana using Urea
Hyun-Jong Yang
Korean J Parasitol 2009;47(1):69-71.
Published online March 12, 2009
DOI: https://doi.org/10.3347/kjp.2009.47.1.69

The tegument of tapeworms is known to be composed of an outer syncytial cytoplasm layer which includes microtriches and cytoplasmic organelles (= syncytial layer), and a parenchymatous cytoplasm layer that contains subtegumental cell nuclei (= subtegumental layer) and organelles. In the present study, separation of the syncytial layer of the sparganum, the plerocercoid stage of Spirometra mansoni, was tried using urea as the chemical reagent. Histological sections were prepared to visualize the status of separation after staining with hematoxylin and eosin. The results showed that the syncytial layer of the sparganum tegument which includes microtriches and cytoplasmic organelles were successfully separated from the parenchyma using 3 M urea.

Citations

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  • Electron Microscopy of the Separated Outer Tegument of the Sparganum and Its Antigenicity
    Hyun-Jong Yang
    The Korean Journal of Parasitology.2012; 50(2): 181.     CrossRef
  • Production of Polyclonal Antibodies against the Tegument of Sparganum (Plerocercoid of Spirometra mansoni) and Its Immunolocalization
    Hyun-Jong Yang
    The Korean Journal of Parasitology.2010; 48(2): 183.     CrossRef
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Partial Purification and Characterization of a Cysteine Protease Inhibitor from the Plerocercoid of Spirometra erinacei
Young-Bae Chung, Hyun-Jong Yang
Korean J Parasitol 2008;46(3):183-186.
Published online September 20, 2008
DOI: https://doi.org/10.3347/kjp.2008.46.3.183

Helminthic cysteine proteases are well known to play critical roles in tissue invasion, nutrient uptake, and immune evasion of the parasites. In the same manner, the sparganum, the plerocercoid of Spirometra mansoni, is also known to secrete a large amount of cysteine proteases. However, cysteine protease inhibitors regulating the proteolytic activities of the cysteine protease are poorly illustrated. In this regard, we partially purified an endogenous cysteine protease inhibitor from spargana and characterized its biochemical properties. The cysteine protease inhibitor was purified by sequential chromatographies using Resource Q anion exchanger and Superdex 200 HR gel filtration from crude extracts of spargana. The molecular weight of the purified protein was estimated to be about 11 kD on SDS-PAGE. It was able to inhibit papain and 27 kDa cysteine protease of spargana with the ratio of 25.7% and 49.1%, respectively, while did not inhibit chymotrypsin. This finding suggests that the cysteine protease inhibitor of spargana may be involved in regulation of endogenous cysteine proteases of the parasite, rather than interact with cysteine proteases from their hosts.

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  • Identification, molecular profiling and immune functions of cystatin M in silver pomfret (Pampus argenteus)
    Yadong Xue, Xiumei Liu, Yajun Wang, Jing Chang, Xubo Wang
    Fish & Shellfish Immunology.2024; 153: 109844.     CrossRef
  • Bioinformatics analysis and prokaryotic expression of a cystatin analogue from Spirometra erinaceieuropaei
    Lin Huang, Ling Mai, Gang Lv, Xinjun Chen
    Biotechnology & Biotechnological Equipment.2023;[Epub]     CrossRef
  • Characterization of Spirometra erinaceieuropaei Plerocercoid Cysteine Protease and Potential Application for Serodiagnosis of Sparganosis
    Li Na Liu, Zhong Quan Wang, Xi Zhang, Peng Jiang, Xin Qi, Ruo Dan Liu, Zi Fang Zhang, Jing Cui, Xiao-Nong Zhou
    PLOS Neglected Tropical Diseases.2015; 9(6): e0003807.     CrossRef
  • Analysis of Structures, Functions, and Epitopes of Cysteine Protease fromSpirometra erinaceieuropaeiSpargana
    Li Na Liu, Jing Cui, Xi Zhang, Tong Wei, Peng Jiang, Zhong Quan Wang
    BioMed Research International.2013; 2013: 1.     CrossRef
  • Differential protein expression in Spirometra erinacei according to its development in its final host
    Jae-Hwan Kim, Young Ju Kim, Woon-Mok Sohn, Young Mee Bae, Sung-Tae Hong, Min-Ho Choi
    Parasitology Research.2009; 105(6): 1549.     CrossRef
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Changes of Serum Adiponectin Levels in Murine Experimental Sparganosis
Hyun-Jong Yang
Korean J Parasitol 2008;46(2):91-93.
Published online June 20, 2008
DOI: https://doi.org/10.3347/kjp.2008.46.2.91

The weight gain phenomenon associated with sparganosis has been well documented and was first recognized in the 1960s. Many studies have been conducted regarding the plerocercoid growth factor in the larva of Spirometra mansoni. In the present study, we hypothesized that the weight gain may be affected by the adipocyte secreted hormones, i.e., adiponectin, which is secreted from the adipose tissues in case of tissue migrating parasitic infections. Specifically, we attempted to ascertain whether the serum levels of adiponectin change in murine sparganosis. However, serum adiponectin levels assayed by ELISA evidenced no significant changes after an experimental infection (P > 0.05). Finally, the weight gain phenomenon in mouse sparganosis is not associated with changes in adiponectin levels, and further investigations involving parasitic infection-induced weight gain remain necessary.

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  • A Protein Microarray for the Rapid Screening of Patients Suspected of Infection with Various Food-Borne Helminthiases
    Jia-Xu Chen, Mu-Xin Chen, Lin Ai, Jun-Hu Chen, Shao-Hong Chen, Yong-Nian Zhang, Yu-Chun Cai, Xing-Quan Zhu, Xiao-Nong Zhou, Patrick J. Lammie
    PLoS Neglected Tropical Diseases.2012; 6(11): e1899.     CrossRef
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Cloning of the novel putative apoptosis-related gene of Spirometra erinacei (Order Pseudophyllidea)
Soo-Ung Lee, Sun Huh
Korean J Parasitol 2006;44(3):233-237.
Published online September 20, 2006
DOI: https://doi.org/10.3347/kjp.2006.44.3.233

We postulated that apolysis was processed in accordance with apoptotic changes occurring in a cestode, Spirometra erinacei (Pseudophyllidea). We cloned the novel putative apoptosis-associated gene from S. erinacei via screening of a S. erinacei cDNA library with a ced-3 gene (activator of apoptosis) probe from Caenorhabditis elegans. We identified a 261-bp cDNA sequence, which encodes for an 86-amino acid protein. The cloned gene expression was observed in the neck and gravid proglottids via Northern blotting, using cloned cDNA inserts as probes, but the clone was not expressed in any of other tissues. We suggest that this gene may be involved in the apolysis of S. erinacei during normal tissue development and differentiation in cestode parasites.

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  • The genome of the sparganosis tapeworm Spirometra erinaceieuropaeiisolated from the biopsy of a migrating brain lesion
    Hayley M Bennett, Hoi Ping Mok, Effrossyni Gkrania-Klotsas, Isheng J Tsai, Eleanor J Stanley, Nagui M Antoun, Avril Coghlan, Bhavana Harsha, Alessandra Traini, Diogo M Ribeiro, Sascha Steinbiss, Sebastian B Lucas, Kieren SJ Allinson, Stephen J Price, Thom
    Genome Biology.2014;[Epub]     CrossRef
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Feminization and reduction of testicular weight in mouse sparganosis
Hyun-Jong Yang
Korean J Parasitol 2006;44(2):167-169.
Published online June 20, 2006
DOI: https://doi.org/10.3347/kjp.2006.44.2.167

After infection of male mice with the plerocercoids (spargana) of Spirometra mansoni, serum levels of estrogen and testicular weight were analyzed by enzyme-linked immunosorbent assay (ELISA) and weighing machine, respectively. The serum level of estrogen increased progressively in infected mice compared with normal controls, whereas the testicular weight of infected mice decreased significantly (P < 0.05). These results suggest that certain substances from spargana change the steroid hormone metabolisms in the host by unknown pathways, and chronic infection may contribute to change of the function of steroid hormone target organ, i.e., testis, in male mice.

Citations

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  • Changes of Serum Adiponectin Levels in Murine Experimental Sparganosis
    Hyun-Jong Yang
    The Korean Journal of Parasitology.2008; 46(2): 91.     CrossRef
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  • 73 Download
  • Crossref
A new method for concentration of proteins in the calcareous corpuscles separated from the spargana of Spirometra erinacei
Yun-Kyu Park, Jae-Hwan Park, Sang-Mee Guk, Eun-Hee Shin, Jong-Yil Chai
Korean J Parasitol 2005;43(3):119-122.
Published online September 20, 2005
DOI: https://doi.org/10.3347/kjp.2005.43.3.119

Calcareous corpuscles are a characteristic structure found in larval and adult stage cestodes. These corpuscles are known to contain several protein components and to possess protein-binding activity. However, the proteins bound to calcareous corpuscles in situ have not been studied. The present study was undertaken to identify the proteins on calcareous corpuscles. Calcareous corpuscles were purified from the plerocercoids (= spargana) of Spirometra erinacei, and serially dissolved using 0.1 M sulfamic acid solution. Collected supernatants were examined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and silver staining. The results showed that only the fraction remaining after the 19th dissolved fraction contained proteins. A total of 20 protein molecules were detected in gel, with major bands at 56, 53, 46, 40, 35, 29, 28, 24.5, 21, 19, 16, 13, 10 and 8 kDa. In particular, the proteins corresponding to the 21 and 16 kDa bands were most abundant. Our results demonstrated for the first time the protein contents of the calcareous corpuscles of spargana. Further studies on the functions of these proteins are required.

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  • Innovative diagnostic strategies for Taenia ovis infection: Exploring molecular, gene expression, oxidative stress, and histopathological insights
    Mai A. Salem, Marwa M. Khalifa, Noha M. Bakry, Mohamed S. Kamel, Mawada Mohamed Ali, Ehab A. Fouad, Reem M. Ramadan
    Veterinary Parasitology.2025; 339: 110567.     CrossRef
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    Shaohua Zhang, Aijiang Guo, Xueliang Zhu, Yanan You, Junling Hou, Qiuxia Wang, Xuenong Luo, Xuepeng Cai
    Acta Tropica.2015; 144: 31.     CrossRef
  • Differential protein expression in Spirometra erinacei according to its development in its final host
    Jae-Hwan Kim, Young Ju Kim, Woon-Mok Sohn, Young Mee Bae, Sung-Tae Hong, Min-Ho Choi
    Parasitology Research.2009; 105(6): 1549.     CrossRef
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Case Report
A Case of Vesical and Scrotal Sparganosis Presenting as a Scrotal Mass
Yun, Seok Joong , Park, Moon Seon , Jeon, Hyeong Kyu , Kim, Yong June , Kim, Wun Jae , Lee, Sang Cheol
Korean J Parasitol 2010;48(1):57-59.
DOI: https://doi.org/10.3347/kjp.2010.48.1.57
A 59-year-old Korean man complained of a painless scrotal hard nodule and weak urine stream. The ultrasound scan revealed a 2.2-cm sized round heteroechogenic nodule located in the extratesticular area. Microscopic hematuria was detected in routine laboratory examinations. On scrotal exploration, multiple spargana were incidentally found in the mass and along the left spermatic cord. On cystoscopy, a 10-mm sized mucosal elevation was found in the right side of the bladder dome. After transurethral resection of the covered mucosa, larval tapeworms were removed from inside of the nodule by forceps. Plerocercoids of Spirometra erinacei was confirmed morphologically and also by PCR-sequencing analysis from the extracted tissue of the urinary bladder. So far as the literature is concerned, this is the first worm (PCR)-proven case of sparganosis in the urinary bladder.

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    Süleyman Kaan Öner, Sevil Alkan Çeviker, Numan Kuyubaşı
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    Shiwangi Sharma, Rakesh Kumar Mahajan, Hira Ram, M. Karikalan, Arvind Achra
    Tropical Parasitology.2021; 11(1): 49.     CrossRef
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    Jian-Feng Fan, Sheng Huang, Jing Li, Ren-Jun Peng, He Huang, Xi-Ping Ding, Li-Ping Jiang, Jian Xi
    The Korean Journal of Parasitology.2021; 59(6): 635.     CrossRef
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    Taisei Kikuchi, Haruhiko Maruyama
    Parasitology International.2020; 75: 102036.     CrossRef
  • Eosinophilic Pleuritis due to Sparganum: A Case Report
    Youngmin Oh, Jeong-Tae Kim, Mi-Kyeong Kim, You-Jin Chang, Keeseon Eom, Jung-Gi Park, Ki-Man Lee, Kang-Hyeon Choe, Jin-Young An
    The Korean Journal of Parasitology.2014; 52(5): 541.     CrossRef
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    Yi-Ming Zhao, Hao-Chuan Zhang, Zhong-Rong Li, Hai-Yan Zhang
    The Korean Journal of Parasitology.2014; 52(5): 545.     CrossRef
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    A.-L. Bauchet, C. Joubert, J.-M. Helies, S.A. Lacour, N. Bosquet, R. Le Grand, J. Guillot, F. Lachapelle
    Journal of Comparative Pathology.2013; 148(4): 294.     CrossRef
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    Dae-Won Kim, Dong-Wook Kim, Won Gi Yoo, Seong-Hyeuk Nam, Myoung-Ro Lee, Hye-Won Yang, Junhyung Park, Kyooyeol Lee, Sanghyun Lee, Shin-Hyeong Cho, Won-Ja Lee, Hong-Seog Park, Jung-Won Ju
    BMC Research Notes.2012;[Epub]     CrossRef
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    Jin Yeob Yeo, Jee Young Han, Jung Hwan Lee, Young Hoon Park, Joo Han Lim, Moon Hee Lee, Chul Soo Kim, Hyeon Gyu Yi
    The Korean Journal of Parasitology.2012; 50(4): 353.     CrossRef
  • Case Report: Lower Extremity Sparganosis in a Bursa
    Kee-Yong Ha, In-Soo Oh
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    Korean Journal of Obstetrics and Gynecology.2010; 53(8): 746.     CrossRef
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