Literature DB >> 25420656

Detection of the human coronavirus 229E, HKU1, NL63, and OC43 between 2010 and 2013 in Yamagata, Japan.

Yohei Matoba1, Chieko Abiko, Tatsuya Ikeda, Yoko Aoki, Yu Suzuki, Kazue Yahagi, Yoko Matsuzaki, Tsutomu Itagaki, Fumio Katsushima, Yuriko Katsushima, Katsumi Mizuta.   

Abstract

The available literature on human coronaviruses (HCoVs) in Japan is limited to epidemiological studies conducted over a maximum of 1 year. We conducted a 4-year study of HCoVs by analyzing 4,342 respiratory specimens obtained in Yamagata, Japan, between January 2010 and December 2013. A pan-coronavirus reverse transcription-PCR screening assay was performed, and all HCoV-positive specimens were subsequently confirmed by sequencing of the PCR products. We detected in 332 (7.6%) HCoV strains during the study period, comprising 133 (3.1%) HCoV-NL63, 83 (1.9%) HCoV-HKU1, 78 (1.8%) HCoV-OC43, and 38 (0.9%) HCoV-229E strains. HCoV detection per year ranged from 3.5% to 9.7%. HCoVs were detected mainly in winter, with January (28.5%) and February (25.3%) 2011 and December 2012 (14.6%) being the only months in which HCoV-NL63 detection per month exceeded 10.0%. HCoV-HKU1 displayed clear biennial peaks in January (18.3%) and February (10.7%) 2010 and in February (18.8%) and March (14.7%) 2012. The peak detection of HCoV-OC43 was 13.6% in November 2010, while that of HCoV-229E was 10.8% in March 2013. Our results indicated that there may be annual variations in the circulation of individual HCoV strains. Further long-term surveillance is necessary to clarify HCoV prevalence and circulation patterns in Japan.

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Year:  2014        PMID: 25420656     DOI: 10.7883/yoken.JJID.2014.266

Source DB:  PubMed          Journal:  Jpn J Infect Dis        ISSN: 1344-6304            Impact factor:   1.362


  25 in total

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Journal:  J Clin Invest       Date:  2020-10-01       Impact factor: 14.808

2.  Diversity and Evolutionary Histories of Human Coronaviruses NL63 and 229E Associated with Acute Upper Respiratory Tract Symptoms in Kuala Lumpur, Malaysia.

Authors:  Maryam Nabiel Al-Khannaq; Kim Tien Ng; Xiang Yong Oong; Yong Kek Pang; Yutaka Takebe; Jack Bee Chook; Nik Sherina Hanafi; Adeeba Kamarulzaman; Kok Keng Tee
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3.  Isolation of Coronavirus NL63 from Blood from Children in Rural Haiti: Phylogenetic Similarities with Recent Isolates from Malaysia.

Authors:  Valery Madsen Beau De Rochars; John Lednicky; Sarah White; Julia Loeb; Maha A Elbadry; Taina Telisma; Sonese Chavannes; Marie Gina Anilis; Eleonora Cella; Massimo Ciccozzi; Bernard A Okech; Marco Salemi; J Glenn Morris
Journal:  Am J Trop Med Hyg       Date:  2016-10-31       Impact factor: 2.345

4.  Crystal structures of human coronavirus NL63 main protease at different pH values.

Authors:  Hongxia Gao; Yuting Zhang; Haihai Jiang; Xiaohui Hu; Yuting Zhang; Xuelan Zhou; Fanglin Zhong; Cheng Lin; Jian Li; Jun Luo; Jin Zhang
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Journal:  PLoS One       Date:  2016-05-12       Impact factor: 3.240

6.  A Melting Curve-Based Multiplex RT-qPCR Assay for Simultaneous Detection of Four Human Coronaviruses.

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7.  Prevalence and genetic diversity analysis of human coronaviruses among cross-border children.

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Journal:  Virol J       Date:  2017-11-22       Impact factor: 4.099

Review 8.  COVID-19 and male reproductive system: pathogenic features and possible mechanisms.

Authors:  Arash Ardestani Zadeh; Davood Arab
Journal:  J Mol Histol       Date:  2021-07-07       Impact factor: 3.156

Review 9.  Herbal Medicine, Gut Microbiota, and COVID-19.

Authors:  Ziqi Chen; Yiwen Lv; Huachong Xu; Li Deng
Journal:  Front Pharmacol       Date:  2021-07-07       Impact factor: 5.988

10.  Structure of Main Protease from Human Coronavirus NL63: Insights for Wide Spectrum Anti-Coronavirus Drug Design.

Authors:  Fenghua Wang; Cheng Chen; Wenjie Tan; Kailin Yang; Haitao Yang
Journal:  Sci Rep       Date:  2016-03-07       Impact factor: 4.379

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