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"molecular epidemiology"

Original Articles
Molecular survey of Toxoplasma gondii B1 gene in pigs from various localities in Korea
Dongmi Kwak, Min-Goo Seo
Parasites Hosts Dis 2024;62(3):294-301.
Published online August 26, 2024
DOI: https://doi.org/10.3347/PHD.24031
Toxoplasma gondii, a common protozoan parasite, poses significant public health risks due to its potential to cause toxoplasmosis in humans and can be contracted from pigs, which are considered its critical intermediate host. The aim of this study is to evaluate the prevalence of T. gondii in slaughtered pigs for human consumption, emphasizing the zoonotic implications and the need for improved biosecurity and monitoring practices in pig farming. A total of 1,526 pig samples (1,051 whole blood samples and 384 lung tissue samples from the local slaughterhouse and 91 aborted fetus samples from local farms) were collected throughout the whole country of Korea in 2020. Among them, 6 (0.4%) were found to be infected with T. gondii by nested PCR. When compared by sample type, the prevalence of T. gondii was significantly higher in the aborted fetus samples (2.2%, 2/91) than in the blood (0.3%, 3/1,051) and lung tissue samples (0.3%, 1/384). The B1 gene sequence of T. gondii was similar (97.9–99.8%) to that of the other T. gondii isolates. This study represents the first molecular genotyping survey of T. gondii in the lung tissue of fattening pigs and aborted fetuses in Korea. Our findings indicated the importance of adopting preventive measures including the implementation of rigorous farm hygiene protocols and the promotion of public awareness about the risks of consuming undercooked pork. By addressing the gaps in current control strategies and encouraging the One Health approach, this study contributes to the development of more effective strategies to mitigate the transmission of T. gondii from pigs to humans, ultimately safeguarding public health.
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  • 1 Web of Science
Allelic Diversity and Geographical Distribution of the Gene Encoding Plasmodium falciparum Merozoite Surface Protein-3 in Thailand
Vorthon Sawaswong, Phumin Simpalipan, Napaporn Siripoon, Pongchai Harnyuttanakorn, Sittiporn Pattaradilokrat
Korean J Parasitol 2015;53(2):177-187.
Published online April 22, 2015
DOI: https://doi.org/10.3347/kjp.2015.53.2.177
Merozoite surface proteins (MSPs) of malaria parasites play critical roles during the erythrocyte invasion and so are potential candidates for malaria vaccine development. However, because MSPs are often under strong immune selection, they can exhibit extensive genetic diversity. The gene encoding the merozoite surface protein-3 (MSP-3) of Plasmodium falciparum displays 2 allelic types, K1 and 3D7. In Thailand, the allelic frequency of the P. falciparum msp-3 gene was evaluated in a single P. falciparum population in Tak at the Thailand and Myanmar border. However, no study has yet looked at the extent of genetic diversity of the msp-3 gene in P. falciparum populations in other localities. Here, we genotyped the msp-3 alleles of 63 P. falciparum samples collected from 5 geographical populations along the borders of Thailand with 3 neighboring countries (Myanmar, Laos, and Cambodia). Our study indicated that the K1 and 3D7 alleles coexisted, but at different proportions in different Thai P. falciparum populations. K1 was more prevalent in populations at the Thailand-Myanmar and Thailand-Cambodia borders, whilst 3D7 was more prevalent at the Thailand-Laos border. Global analysis of the msp-3 allele frequencies revealed that proportions of K1 and 3D7 alleles of msp-3 also varied in different continents, suggesting the divergence of malaria parasite populations. In conclusion, the variation in the msp-3 allelic patterns of P. falciparum in Thailand provides fundamental knowledge for inferring the P. falciparum population structure and for the best design of msp-3 based malaria vaccines.

Citations

Citations to this article as recorded by  Crossref logo
  • Genetic diversity of Plasmodium falciparum AMA-1 antigen from the Northeast Indian state of Tripura and comparison with global sequences: implications for vaccine development
    Tulika Nirmolia, Md. Atique Ahmed, Vinayagam Sathishkumar, Nilanju P. Sarma, Dibya R. Bhattacharyya, Pradyumna K. Mohapatra, Devendra Bansal, Praveen K. Bharti, Rakesh Sehgal, Jagadish Mahanta, Ali A. Sultan, Kanwar Narain, Saurav J. Patgiri
    Malaria Journal.2022;[Epub]     CrossRef
  • Genetic polymorphism of merozoite surface protein-3 in Myanmar Plasmodium falciparum field isolates
    Hương Giang Lê, Thị Lam Thái, Jung-Mi Kang, Jinyoung Lee, Mya Moe, Tuấn Cường Võ, Haung Naw, Moe Kyaw Myint, Zaw Than Htun, Tong-Soo Kim, Ho-Joon Shin, Byoung-Kuk Na
    Malaria Journal.2020;[Epub]     CrossRef
  • Unraveling Haplotype Diversity of the Apical Membrane Antigen-1 Gene in Plasmodium falciparum Populations in Thailand
    Lalita Lumkul, Vorthon Sawaswong, Phumin Simpalipan, Morakot Kaewthamasorn, Pongchai Harnyuttanakorn, Sittiporn Pattaradilokrat
    The Korean Journal of Parasitology.2018; 56(2): 153.     CrossRef
  • Genetic diversity of the merozoite surface protein-3 gene in Plasmodium falciparum populations in Thailand
    Sittiporn Pattaradilokrat, Vorthon Sawaswong, Phumin Simpalipan, Morakot Kaewthamasorn, Napaporn Siripoon, Pongchai Harnyuttanakorn
    Malaria Journal.2016;[Epub]     CrossRef
  • 11,970 View
  • 114 Download
  • 4 Web of Science
  • Crossref
Molecular Variation in the Paragonimus heterotremus Complex in Thailand and Myanmar
Oranuch Sanpool, Pewpan M. Intapan, Tongjit Thanchomnang, Penchom Janwan, Yukifumi Nawa, David Blair, Wanchai Maleewong
Korean J Parasitol 2013;51(6):677-681.
Published online December 31, 2013
DOI: https://doi.org/10.3347/kjp.2013.51.6.677

Paragonimiasis is an important food-borne parasitic zoonosis caused by infection with lung flukes of the genus Paragonimus. Of the 7 members of the genus known in Thailand until recently, only P. heterotremus has been confirmed as causing human disease. An 8th species, P. pseudoheterotremus, has recently been proposed from Thailand, and has been found in humans. Molecular data place this species as a sister species to P. heterotremus, and it is likely that P. pseudoheterotremus is not specifically distinct from P. heterotremus. In this study, we collected metacercariae of both nominal species (identification based on metacercarial morphology) from freshwater crabs from Phetchabun Province in northern Thailand, Saraburi Province in central Thailand, and Surat Thani Province in southern Thailand. In addition, we purchased freshwater crabs imported from Myanmar at Myawaddy Province, western Thailand, close to the Myanmar-Thailand border. The DNAs extracted from excysted metacercariae were PCR-amplified and sequenced for ITS2 and cox1 genes. The ITS2 sequences were nearly identical among all samples (99-100%). Phylogenies inferred from all available partial cox1 sequences contained several clusters. Sequences from Indian P. heterotremus formed a sister group to sequences from P. pseudoheterotremus-type metacercariae. Sequences of P. heterotremus from Thailand, Vietnam, and China formed a separate distinct clade. One metacercaria from Phitsanulok Province was distinct from all others. There is clearly considerable genetic variation in the P. heterotremus complex in Thailand and the form referred to as P. pseudoheterotremus is widely distributed in Thailand and the Thai-Myanmar border region.

Citations

Citations to this article as recorded by  Crossref logo
  • Considerable genetic diversity within Paragonimus heterotremus in Luang Prabang, northern Lao People's Democratic Republic
    Alongkorn Nonthapa, Rutchanee Rodpai, Tongjit Thanchomnang, Patcharaporn Boonroumkaew, Lakkhana Sadaow, David Blair, Pewpan M. Intapan, Wanchai Maleewong, Virasack Banouvong, Sakhone Laymanivong, Oranuch Sanpool
    Infection, Genetics and Evolution.2025; 128: 105718.     CrossRef
  • Nuclear ribosomal transcription units in Asian Paragonimus species (Paragonimidae: Platyhelminthes): genetic characteristics, polymorphism, and implications for intersuperfamilial phylogeny
    Khue Thi Nguyen, Huong Thi Thanh Doan, Linh Thi Khanh Pham, Do Thi Roan, Takeshi Agatsuma, Pham Ngoc Doanh, Thanh Hoa Le
    Parasitology Research.2024;[Epub]     CrossRef
  • Morphological and Molecular Characterization of Paragonimus skrjabini Complex from Yunnan, China: A Brief Report
    Qiu-Hong Shu, Shu-De Li, Ming Tian, Yong Meng, Shu-Mei-Qi He, Min Zhu, Miao-Miao Wang, Wen-Lin Wang
    Acta Parasitologica.2022; 67(1): 316.     CrossRef
  • The potential use of mitochondrial ribosomal genes (12S and 16S) in DNA barcoding and phylogenetic analysis of trematodes
    Abigail Hui En Chan, Naowarat Saralamba, Sompob Saralamba, Jiraporn Ruangsittichai, Urusa Thaenkham
    BMC Genomics.2022;[Epub]     CrossRef
  • General overview of the current status of human foodborne trematodiasis
    Jong-Yil Chai, Bong-Kwang Jung
    Parasitology.2022; 149(10): 1262.     CrossRef
  • Genetic differentiation of Southeast Asian Paragonimus Braun, 1899 (Digenea: Paragonimidae) and genetic variation in the Paragonimus heterotremus complex examined by nuclear DNA sequences
    Chairat Tantrawatpan, Sumonta Tapdara, Takeshi Agatsuma, Oranuch Sanpool, Pewpan M. Intapan, Wanchai Maleewong, Weerachai Saijuntha
    Infection, Genetics and Evolution.2021; 90: 104761.     CrossRef
  • An outbreak of Paragonimus westermani infection among Cambodian technical intern trainees in Japan, exhibiting various extrapulmonary lesions
    Yoshifumi Nakagawa, Yuki Ikematsu, Takayuki Nakanishi, Yuji Ogawa, Ryuichi Taen, Yasunori Nakashima, Hironao Okabe, Ayako Yoshida, Haruhiko Maruyama
    Parasitology International.2021; 81: 102279.     CrossRef
  • Development of point-of-care testing tool using immunochromatography for rapid diagnosis of human paragonimiasis
    Lakkhana Sadaow, Oranuch Sanpool, Hiroshi Yamasaki, Wanchai Maleewong, Pewpan M. Intapan
    Acta Tropica.2020; 203: 105325.     CrossRef
  • Paragonimus and paragonimiasis in Asia: An update
    Ayako Yoshida, Pham Ngoc Doanh, Haruhiko Maruyama
    Acta Tropica.2019; 199: 105074.     CrossRef
  • Morphological and molecular characterization of Paragonimus caliensis Little, 1968 (Trematoda: Paragonimidae) from Medellin and Pichinde, Colombia
    Carolina Lenis, Alicia Galiano, Imelda Vélez, Iván Darío Vélez, Carlos Muskus, Antonio Marcilla
    Acta Tropica.2018; 183: 95.     CrossRef
  • Gene diversity and genetic variation in lung flukes (genusParagonimus)
    David Blair, Yukifumi Nawa, Makedonka Mitreva, Pham Ngoc Doanh
    Transactions of The Royal Society of Tropical Medicine and Hygiene.2016; 110(1): 6.     CrossRef
  • A review on the molecular characterization of digenean parasites using molecular markers with special reference to ITS region
    K. Choudhary, A. Kumar Verma, S. Swaroop, N. Agrawal
    Helminthologia.2015; 52(3): 167.     CrossRef
  • 11,370 View
  • 116 Download
  • Crossref