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"Young Woo Gong"

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"Young Woo Gong"

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Hard Ticks as Vectors Tested Negative for Severe Fever with Thrombocytopenia Syndrome in Ganghwa-do, Korea during 2019-2020
Kyoung Jin, Yeon-Ja Koh, Seong Kyu Ahn, Joonghee Cho, Junghwan Lim, Jaeyong Song, Jinyoung Lee, Young Woo Gong, Mun Ju Kwon, Hyung Wook Kwon, Young Yil Bahk, Tong-Soo Kim
Korean J Parasitol 2021;59(3):281-289.
Published online June 21, 2021
DOI: https://doi.org/10.3347/kjp.2021.59.3.281
This study aimed to characterize the seasonal abundance of hard ticks that transmit severe fever with thrombocytopenia syndrome virus from April to November 2019 and 2020 on Ganghwa-do, Incheon Metropolitan City, Korea. The ticks were collected at grassland, grave site, copse and mountain road using a collection trap method. The ixodid hard ticks comprising three species (Haemaphysalis longicornis, H. flava, and Ixodes nipponensis) collected were 6,622 in 2019 and 3,811 in 2020. H. longicornis was the most frequent (97.9% in 2019 and 96.0% in 2020), followed by H. flava (2.0% and 3.0% in 2019 and 2020, respectively) and I. nipponensis (less than 0.1%). Our study demonstrated that seasonal patterns of the tick populations examined for two years were totally unsimilar. The hard ticks tested using RT-qPCR were all negative for severe fever with thrombocytopenia syndrome virus.

Citations

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  • Hard Ticks as Vectors: The Emerging Threat of Tick-Borne Diseases in India
    Nandhini Perumalsamy, Rohit Sharma, Muthukumaravel Subramanian, Shriram Ananganallur Nagarajan
    Pathogens.2024; 13(7): 556.     CrossRef
  • Development of monoclonal antibody based IgG and IgM ELISA for diagnosis of severe fever with thrombocytopenia syndrome virus infection
    Mei Zhang, Yanhua Du, Li Yang, Lin Zhan, Bin Yang, Xueyong Huang, Bianli Xu, Koichi Morita, Fuxun Yu
    The Brazilian Journal of Infectious Diseases.2022; 26(4): 102386.     CrossRef
  • Seasonal activity of Haemaphysalis longicornis and Haemaphysalis flava (Acari: Ixodida), vectors of severe fever with thrombocytopenia syndrome (SFTS) virus, and their SFTS virus harboring rates in Gyeonggi Province, South Korea
    Hong Geun Kim, Minhyung Jung, Doo-Hyung Lee
    Experimental and Applied Acarology.2022; 87(1): 97.     CrossRef
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  • 3 Web of Science
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Monitoring Culicine Mosquitoes (Diptera: Culicidae) as a Vector of Flavivirus in Incheon Metropolitan City and Hwaseong-Si, Gyeonggi-Do, Korea, during 2019
Young Yil Bahk, Seo Hye Park, Myung-Deok Kim-Jeon, Sung-Suck Oh, Haneul Jung, Hojong Jun, Kyung-Ae Kim, Jong Myong Park, Seong Kyu Ahn, Jinyoung Lee, Eun-Jeong Choi, Bag-Sou Moon, Young Woo Gong, Mun Ju Kwon, Tong-Soo Kim
Korean J Parasitol 2020;58(5):551-558.
Published online October 22, 2020
DOI: https://doi.org/10.3347/kjp.2020.58.5.551
The flaviviruses are small single-stranded RNA viruses that are typically transmitted by mosquitoes or tick vectors and are etiological agents of acute zoonotic infections. The viruses are found around the world and account for significant cases of human diseases. We investigated population of culicine mosquitoes in central region of Korean Peninsula, Incheon Metropolitan City and Hwaseong-si. Aedes vexans nipponii was the most frequently collected mosquitoes (56.5%), followed by Ochlerotatus dorsalis (23.6%), Anopheles spp. (10.9%), and Culex pipiens complex (5.9%). In rural regions of Hwaseong, Aedes vexans nipponii was the highest population (62.9%), followed by Ochlerotatus dorsalis (23.9%) and Anopheles spp. (12.0%). In another rural region of Incheon (habitat of migratory birds), Culex pipiens complex was the highest population (31.4%), followed by Ochlerotatus dorsalis (30.5%), and Aedes vexans vexans (27.5%). Culex pipiens complex was the predominant species in the urban region (84.7%). Culicine mosquitoes were identified at the species level, pooled up to 30 mosquitoes each, and tested for flaviviral RNA using the SYBR Green-based RT-PCR and confirmed by cDNA sequencing. Three of the assayed 2,683 pools (989 pools without Anopheles spp.) were positive for Culex flaviviruses, an insect-specific virus, from Culex pipiens pallens collected at the habitats for migratory birds in Incheon. The maximum likelihood estimation (the estimated number) for Culex pipiens pallens positive for Culex flavivirus was 25. Although viruses responsible for mosquito-borne diseases were not identified, we encourage intensified monitoring and long-term surveillance of both vector and viruses in the interest of global public health.

Citations

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  • Abundance, Diversity and Distribution of Mosquito Species and Molecular Detection of Its Associated Hepatitis C Virus in Sharkia Governorate, Egypt
    Tharwat A. Selim, Sanad H. Ragab, Saber A. Riad, Randa I. Eltaly, Shaimaa H. Mohammed, Somia Eissa Sharawi, Naser Ahmed Alkenani, Ruoa Saleh Almahallawi, Hayat S. Al-Rashidi, Mohamed A. M. El-Tabakh
    Insects.2025; 16(4): 433.     CrossRef
  • Leveraging insect-specific viruses to elucidate mosquito population structure and dynamics
    Brandon D. Hollingsworth, Nathan D. Grubaugh, Brian P. Lazzaro, Courtney C. Murdock, Helen M. Lazear
    PLOS Pathogens.2023; 19(8): e1011588.     CrossRef
  • Molecular detection and identification of Culex flavivirus in mosquito species from Jeju, Republic of Korea
    Shilpa Chatterjee, Choon-Mee Kim, Na Ra Yun, Dong-Min Kim, Hyeon Je Song, Kyeoung A Chung
    Virology Journal.2021;[Epub]     CrossRef
  • National Monitoring of Mosquito Populations and Molecular Analysis of Flavivirus in the Republic of Korea in 2020
    Min-Goo Seo, Hak Seon Lee, Sung-Chan Yang, Byung-Eon Noh, Tae-Kyu Kim, Wook-Gyo Lee, Hee Il Lee
    Microorganisms.2021; 9(10): 2085.     CrossRef
  • Recent Spatial and Temporal Trends of Malaria in Korea
    Yeong Hoon Kim, Hye-Jin Ahn, Dongjae Kim, Sung-Jong Hong, Tong-Soo Kim, Ho-Woo Nam
    The Korean Journal of Parasitology.2021; 59(6): 585.     CrossRef
  • 8,729 View
  • 99 Download
  • 5 Web of Science
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Surveillance of Chigger Mite Vectors for Tsutsugamushi Disease in the Hwaseong Area, Gyeonggi-do, Republic of Korea, 2015
Young Yil Bahk, Hojong Jun, Seo Hye Park, Haneul Jung, Seung Jegal, Myung-Deok Kim-Jeon, Jong Yul Roh, Wook-Gyo Lee, Seong Kyu Ahn, Jinyoung Lee, Kwangsig Joo, Young Woo Gong, Mun Ju Kwon, Tong-Soo Kim
Korean J Parasitol 2020;58(3):301-308.
Published online June 26, 2020
DOI: https://doi.org/10.3347/kjp.2020.58.3.301
Owing to global climate change, the global resurgence of vector-borne infectious diseases and their potential to inflict widespread casualties among human populations has emerged as a pivotal burden on public health systems. Tsutsugamushi disease (scrub typhus) in the Republic of Korea is steadily increasing and was designated as a legal communicable disease in 1994. The disease is a mite-borne acute febrile disease most commonly contracted from October to December. In this study, we tried to determine the prevalence of tsutsugamushi disease transmitted by chigger mites living on rodents and investigated their target vector diversity, abundance, and distribution to enable the mapping of hotspots for this disease in 2015. A total of 5 species belonging to 4 genera (109 mites): Leptotrombidium scutellare 60.6%, L. pallidum 28.4% Neotrombicula tamiyai 9.2%, Euschoengastia koreaensis/0.9%), and Neoschoengastia asakawa 0.9% were collected using chigger mite collecting traps mimicking human skin odor and sticky chigger traps from April to November 2015. Chigger mites causing tsutsugamushi disease in wild rodents were also collected in Hwaseong for the zoonotic surveillance of the vector. A total of 77 rodents belonging to 3 genera: Apodemus agrarius (93.5%), Crocidura lasiura (5.2%), and Micromys minutus (1.3%) were collected in April, October, and November 2015. The most common mite was L. pallidum (46.9%), followed by L. scutellare (18.6%), and L. orientale (18.0%). However, any of the chigger mite pools collected from rodent hosts was tested positive for Orientia tsutsugamushi, the pathogen of tsutsugamushi disease, in this survey.

Citations

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  • Associations of meteorological factors and dynamics of scrub typhus incidence in South Korea: A nationwide time-series study
    Taehee Chang, Kyung-Duk Min, Sung-il Cho, Yoonhee Kim
    Environmental Research.2024; 245: 117994.     CrossRef
  • The Prevalence of Rodents Orientia tsutsugamushi in China During Two Decades: A Systematic Review and Meta-Analysis
    Yan-Chun Wang, Jing-Hao Li, Ya Qin, Si-Yuan Qin, Chao Chen, Xin-Bo Yang, Ning Ma, Ming-Xin Dong, Cong-Cong Lei, Xing Yang, He-Ting Sun, Zhi-Yong Sun, Jing Jiang
    Vector-Borne and Zoonotic Diseases.2023; 23(12): 619.     CrossRef
  • Epidemiological and clinical characteristics of scrub typhus in northern Fujian, China, from 2015 to 2019
    Jin Huang, Kaixiang Deng, Jiawei Chen, Meiquan Zhang
    BMC Infectious Diseases.2023;[Epub]     CrossRef
  • Clinical treatment of patients with scrub typhus-induced liver injury and intracranial infection
    HongKui Sun, Li Lei, JianWei Li, Haiming Niu, Jiezhang Yang, MiaoLian Chen
    Journal of International Medical Research.2023;[Epub]     CrossRef
  • Monitoring Chigger Mites for Orientia tsutsugamushi in Field Small Mammals in Hwaseong-si, Gyeonggi-do, Korea, 2019-2020
    Young Yil Bahk, Seong Kyu Ahn, Jinyoung Lee, Hyung Wook Kwon, Sung Jong Hong, Tong-Soo Kim
    The Korean Journal of Parasitology.2021; 59(3): 319.     CrossRef
  • Nationwide Incidence of Chigger Mite Populations and Molecular Detection of Orientia tsutsugamushi in the Republic of Korea, 2020
    Min-Goo Seo, Bong-Goo Song, Tae-Kyu Kim, Byung-Eon Noh, Hak Seon Lee, Wook-Gyo Lee, Hee Il Lee
    Microorganisms.2021; 9(8): 1563.     CrossRef
  • Infestation and Related Ecology of Chigger Mites on the Asian House Rat (Rattus tanezumi) in Yunnan Province, Southwest China
    Fan Ding, Wen-Li Jiang, Xian-Guo Guo, Rong Fan, Cheng-Fu Zhao, Zhi-Wei Zhang, Ke-Yu Mao, Rong Xiang
    The Korean Journal of Parasitology.2021; 59(4): 377.     CrossRef
  • Geographical Distribution and Epidemiologic Factors of Chigger Mites on Apodemus agrarius during Autumn in Korea
    In Yong Lee, Jae-Won Lim, Jang Hoon Seo, Heung Chul Kim, Ku Jae Lee, Tai-Soon Yong, Won-Ja Lee, Jae-Ran Yu, Seobo Sim
    The Korean Journal of Parasitology.2021; 59(5): 473.     CrossRef
  • Density of Chigger Mites as Tsutsugamushi Vectors Collected from Jinan, Jeollabuk-do
    Hyeok Jae Lee, Chul Park
    The Korean Journal of Clinical Laboratory Science.2020; 52(4): 364.     CrossRef
  • 6,763 View
  • 128 Download
  • 8 Web of Science
  • Crossref
Four Year Surveillance of the Vector Hard Ticks for SFTS, Ganghwa-do, Republic of Korea
Myung-Deok Kim-Jeon, Seung Jegal, Hojong Jun, Haneul Jung, Seo Hye Park, Seong Kyu Ahn, Jinyoung Lee, Young Woo Gong, Kwangsig Joo, Mun Ju Kwon, Jong Yul Roh, Wook-Gyo Lee, Young Yil Bahk, Tong-Soo Kim
Korean J Parasitol 2019;57(6):691-698.
Published online December 31, 2019
DOI: https://doi.org/10.3347/kjp.2019.57.6.691
The seasonal abundance of hard ticks that transmit severe fever with thrombocytopenia syndrome virus was monitored with a collection trap method every April to November during 2015-2018 and with a flagging method every July and August during 2015-2018 in Ganghwa-do (island) of Incheon Metropolitan City, Republic of Korea. This monitoring was performed in a copse, a short grass field, coniferous forest and broad-leaved forest. A total of 17,457 ticks (8,277 larvae, 4,137 nymphs, 3,389 females, and 1,654 males) of the ixodid ticks comprising 3 species (Haemaphysalis longicornis, H. flava, and Ixodes nipponensis) were collected with collection traps. Of the identified ticks, H. longicornis was the most frequently collected ticks (except larval ticks) (94.26%, 8,653/9,180 ticks (nymphs and adults)), followed by H. flava (5.71%, 524/9,180) and Ix. nipponensis (less than 0.04%, 3/9,180). The ticks collected with collecting traps were pooled and assayed for the presence of SFTS virus with negative results. In addition, for monitoring the prevalence of hard ticks, a total of 7,461 ticks (5,529 larvae, 1,272 nymphs, 469 females, and 191 males) of the ixodid ticks comprising 3 species (H. longicornis, H. flava, and Ix. nipponensis) were collected with flagging method. H. longicornis was the highest collected ticks (except larval ticks) (99.53%, 1,908/1,917 ticks (nymphs and adults)), followed by H. flava (1.15%, 22/1,917).

Citations

Citations to this article as recorded by  Crossref logo
  • Molecular identification of severe fever with thrombocytopenia syndrome virus in deer ked: Implications for disease transmission
    Mark Anthony B. Casel, Jeong Ho Choi, Hyunwoo Jang, Seung-gyu Jang, Juryeon Gil, Rare Rollon, So-youn Cheun, Isaac Choi, Eun-ha Kim, Young-Il Kim, Young Ki Choi
    One Health.2025; 21: 101107.     CrossRef
  • The Diel Activity Pattern of Haemaphysalis longicornis and Its Relationship with Climatic Factors
    Byung-Eon Noh, Gi-hun Kim, Hak Seon Lee, Hyunwoo Kim, Hee-Il Lee
    Insects.2024; 15(8): 568.     CrossRef
  • Seasonal dynamics of Haemaphysalis tick species as SFTSV vectors in South Korea
    Hyunwoo Jang, Mark Anthony B. Casel, Seung-gyu Jang, Jeong Ho Choi, Juryeon Gil, Rare Rollon, So youn Cheun, Young-Il Kim, Min Suk Song, Young Ki Choi, Anna Moniuszko-Malinowska
    Microbiology Spectrum.2024;[Epub]     CrossRef
  • Transcriptome analysis of Haemaphysalis flava female using Illumina HiSeq 4000 sequencing: de novo assembly, functional annotation and discovery of SSR markers
    Min Kyu Sang, Hongray Howrelia Patnaik, Jie Eun Park, Dae Kwon Song, Jun Yang Jeong, Chan Eui Hong, Yong Tae Kim, Hyeon Jun Shin, Liu Ziwei, Hee Ju Hwang, So Young Park, Se Won Kang, Seung-Hwan Park, Sung-Jae Cha, Jung Ho Ko, E. Hyun Shin, Hong Seog Park,
    Parasites & Vectors.2023;[Epub]     CrossRef
  • Reference gene selection for normalizing gene expression using quantitative real‐time PCR in Haemaphysalis longicornis
    Ye Eun Park, YeongHo Kim, Gyuhyeong Goh, Si Hyeock Lee, Kwang Shik Choi, Young Ho Kim
    Entomological Research.2023; 53(1): 29.     CrossRef
  • Severe fever with thrombocytopenia syndrome virus from ticks: a molecular epidemiological study of a patient in the Republic of Korea
    Seong Yoon Kim, Choong Won Seo, Hee Il Lee
    Experimental and Applied Acarology.2023; 89(2): 305.     CrossRef
  • Tick Populations and Molecular Analysis of Anaplasma Species in Ticks from the Republic of Korea
    Min-Goo Seo, Haeseung Lee, Badriah Alkathiri, KyuSung Ahn, Seung-Hun Lee, SungShik Shin, Seulgi Bae, Kyoo-Tae Kim, Min Jang, Sang-Kwon Lee, Yun Sang Cho, Kyung-Yeon Eo, Oh-Deog Kwon, Dongmi Kwak
    Microorganisms.2023; 11(4): 820.     CrossRef
  • 2022년 참진드기 발생밀도 조사 현황
    병언 노, 현우 김, 정원 주, 희일 이
    Public Health Weekly Report.2023; 16(32): 1119.     CrossRef
  • Severe Fever with Thrombocytopenia Syndrome Virus in Ticks in the Republic of Korea
    Jun-Gu Kang, Yoon-Kyoung Cho, Young-Sun Jo, Sun-Woo Han, Jeong-Byoung Chae, Jung-Eun Park, Hyesung Jeong, Weon-Hwa Jheong, Joon-Seok Chae
    The Korean Journal of Parasitology.2022; 60(1): 65.     CrossRef
  • Molecular Detection of Anaplasma phagocytophilum and Ehrlichia Species in Ticks Removed from Humans in the Republic of Korea
    Yu-Jung Kim, Ji Ye Seo, Seong Yoon Kim, Hee Il Lee
    Microorganisms.2022; 10(6): 1224.     CrossRef
  • Modelling the transmission dynamics of severe fever with thrombocytopenia syndrome in Jiangsu Province, China
    Nan Zhang, Xiao-Qing Cheng, Bin Deng, Jia Rui, Luxia Qiu, Zeyu Zhao, Shengnan Lin, Xingchun Liu, Jingwen Xu, Yao Wang, Meng Yang, Yuanzhao Zhu, Jiefeng Huang, Chan Liu, Weikang Liu, Li Luo, Zhuoyang Li, Peihua Li, Tianlong Yang, Zhi-Feng Li, Shu-Yi Liang,
    Parasites & Vectors.2021;[Epub]     CrossRef
  • Molecular Detection and Phylogeny of Tick-Borne Pathogens in Ticks Collected from Dogs in the Republic of Korea
    A-Tai Truong, Jinhyeong Noh, Yeojin Park, Hyun-Ji Seo, Keun-Ho Kim, Subin Min, Jiyeon Lim, Mi-Sun Yoo, Heung-Chul Kim, Terry A. Klein, Hyunkyoung Lee, Soon-Seek Yoon, Yun Sang Cho
    Pathogens.2021; 10(5): 613.     CrossRef
  • Seasonal distribution of Haemaphysalis longicornis (Acari: Ixodidae) and detection of SFTS virus in Gyeongbuk Province, Republic of Korea, 2018
    JaeSeok Lee, KyungHwan Moon, Myeonghwan Kim, Wook-Gyo Lee, Hee-II Lee, Jong Kyun Park, Young Ho Kim
    Acta Tropica.2021; 221: 106012.     CrossRef
  • Hard Ticks as Vectors Tested Negative for Severe Fever with Thrombocytopenia Syndrome in Ganghwa-do, Korea during 2019-2020
    Kyoung Jin, Yeon-Ja Koh, Seong Kyu Ahn, Joonghee Cho, Junghwan Lim, Jaeyong Song, Jinyoung Lee, Young Woo Gong, Mun Ju Kwon, Hyung Wook Kwon, Young Yil Bahk, Tong-Soo Kim
    The Korean Journal of Parasitology.2021; 59(3): 281.     CrossRef
  • iSeq 100 for metagenomic pathogen screening in ticks
    Ju Yeong Kim, Myung-hee Yi, Alghurabi Areej Sabri Mahdi, Tai-Soon Yong
    Parasites & Vectors.2021;[Epub]     CrossRef
  • Nationwide Temporal and Geographical Distribution of Tick Populations and Phylogenetic Analysis of Severe Fever with Thrombocytopenia Syndrome Virus in Ticks in Korea, 2020
    Min-Goo Seo, Byung-Eon Noh, Hak Seon Lee, Tae-Kyu Kim, Bong-Goo Song, Hee Il Lee
    Microorganisms.2021; 9(8): 1630.     CrossRef
  • Estimating severe fever with thrombocytopenia syndrome transmission using machine learning methods in South Korea
    Giphil Cho, Seungheon Lee, Hyojung Lee
    Scientific Reports.2021;[Epub]     CrossRef
  • 8,467 View
  • 199 Download
  • 17 Web of Science
  • Crossref