Weekly Variation of Rotavirus A Concentrations in Sewage and Oysters in Japan, 2014–2016
Abstract
:1. Introduction
2. Results and Discussion
3. Materials and Methods
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Desselberger, U. Rotaviruses. Virus Res. 2014, 190, 75–96. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Estes, M.K.; Greenberg, H.B. Rotaviruses. In Fields Virology, 6th ed.; Fields, B.N., Knipe, D.M., Howley, P.M., Eds.; Wolters Kluwer Health/Lippincott Williams Wilkins: Philadelphia, PA, USA, 2013; pp. 1347–1401. [Google Scholar]
- Zhou, Y.M.; Li, L.; Kim, B.; Kaneshi, K.; Nishimura, S.; Kuroiwa, T.; Nishimura, T.; Sugita, K.; Ueda, Y.; Nakaya, S.; et al. Rotavirus infection in children in Japan. Pediatr. Int. 2000, 42, 428–439. [Google Scholar] [CrossRef] [PubMed]
- Ministry of Health, Labour and Welfare (MHLW). Rotavirus QAs. Available online: https://www.mhlw.go.jp/bunya/kenkou/kekkaku-kansenshou19/Rotavirus/index.html (accessed on 8 March 2019).
- National Institute of Infectious Disease (NIID). Report of Rotavirus on 15 May 2013. Available online: https://www.niid.go.jp/niid/ja/diseases/a/echinococcus/392-encyclopedia/3377-rota-intro.html (accessed on 8 March 2019).
- Desselberger, U. Differences of Rotavirus Vaccine Effectiveness by Country: Likely Causes and Contributing Factors. Pathogens 2017, 6, 65. [Google Scholar] [CrossRef] [PubMed]
- Tate, J.E.; Burton, A.H.; Boschi-Pinto, C.; Parashar, U.D. World Health Organization–Coordinated Global Rotavirus Surveillance Network. Global, Regional, and National Estimates of Rotavirus Mortality in Children <5 Years of Age, 2000–2013. Clin. Infect. Dis. 2016, 62, S96–S105. [Google Scholar] [PubMed]
- Iritani, N.; Kaida, A.; Abe, N.; Kubo, H.; Sekiguchi, J.; Yamamoto, S.P.; Goto, K.; Tanaka, T.; Noda, M. Detection and genetic characterization of human enteric viruses in oyster-associated gastroenteritis outbreaks between 2001 and 2012 in Osaka City, Japan. J. Med. Virol. 2014, 86, 2019–2025. [Google Scholar] [CrossRef] [PubMed]
- Le Guyader, F.S.; Le Saux, J.C.; Ambert-Balay, K.; Krol, J.; Serais, O.; Parnaudeau, S.; Giraudon, H.; Delmas, G.; Pommepuy, M.; Pothier, P.; et al. Aichi virus, norovirus, astrovirus, enterovirus, and rotavirus involved in clinical cases from a French oyster-related gastroenteritis outbreak. J. Clin. Microbiol. 2008, 46, 4011–4017. [Google Scholar] [CrossRef]
- Kittigul, L.; Panjangampatthana, A.; Rupprom, K.; Pombubpa, K. Genetic diversity of rotavirus strains circulating in environmental water and bivalve shellfish in Thailand. Int. J. Environ. Res. Public Health 2014, 11, 1299–1311. [Google Scholar] [CrossRef] [PubMed]
- Kou, X.X.; Wu, Q.P.; Wang, D.P.; Zhang, J.M. Simultaneous detection of norovirus and rotavirus in oysters by multiplex RT–PCR. Food Control 2008, 19, 722–726. [Google Scholar] [CrossRef]
- Araud, E.; DiCaprio, E.; Ma, Y.; Lou, F.; Gao, Y.; Kingsley, D.; Hughes, J.H.; Li, J. Thermal inactivation of enteric viruses and bioaccumulation of enteric foodborne viruses in live oysters (Crassostrea virginica). Appl. Environ. Microbiol. 2016, 82, 2086–2099. [Google Scholar] [CrossRef]
- Pu, J.; Miura, T.; Kazama, S.; Konta, Y.; Azraini, N.D.; Ito, E.; Ito, H.; Omura, T.; Watanabe, T. Weekly variations in norovirus genogroup II genotypes in Japanese oysters. Int. J. Food Microbiol. 2018, 284, 48–55. [Google Scholar] [CrossRef]
- Miyagi Prefectural Government (MPG). Infectious Diseases Weekly Report of Miyagi Prefecture. Available online: https://www.pref.miyagi.jp/site/hokans/surveypdf-shuho.html (accessed on 13 March 2018).
- Ministry of Agriculture, Forestry and Fisheries (MAFF). Survey Results of Animal Waste in Japan. Available online: http://www.maff.go.jp/j/chikusan/kankyo/taisaku/pdf/syori-joukyou.pdf (accessed on 31 May 2019).
- Hsieh, Y.C.; Wu, F.T.; Hsiung, C.A.; Wu, H.S.; Chang, K.Y.; Huang, Y.C. Comparison of virus shedding after lived attenuated and pentavalent reassortant rotavirus vaccine. Vaccine 2014, 32, 1199–1204. [Google Scholar] [CrossRef] [PubMed]
- Kaneko, M.; Takanashi, S.; Thongprachum, A.; Hanaoka, N.; Fujimoto, T.; Nagasawa, K.; Kimura, H.; Okitsu, S.; Mizuguchi, M.; Ushijima, H. Identification of vaccine-derived rotavirus strains in children with acute gastroenteritis in Japan, 2012–2015. PLoS ONE 2017, 12, e0184067. [Google Scholar] [CrossRef] [PubMed]
- Kitajima, M.; Iker, B.C.; Pepper, I.L.; Gerba, C.P. Relative abundance and treatment reduction of viruses during wastewater treatment processes—Identification of potential viral indicators. Sci. Total Envron. 2014, 488–489, 290–296. [Google Scholar] [CrossRef] [PubMed]
- Miura, T.; Schaeffer, J.; Le Saux, J.C.; Le Mehaute, P.; Le Guyader, F.S. Virus type-specific removal in a full-scale membrane bioreactor treatment process. Food Environ. Virol. 2017, 10, 176–186. [Google Scholar] [CrossRef] [PubMed]
- De Abreu Corrêa, A.; Souza, D.S.; Moresco, V.; Kleemann, C.R.; Garcia, L.A.; Barardi, C.R. Stability of human enteric viruses in seawater samples from mollusc depuration tanks coupled with ultraviolet irradiation. J. Appl. Microbiol. 2012, 113, 1554–1563. [Google Scholar] [CrossRef] [PubMed]
- Le Guyader, F.S.; Atmar, R.L.; Le Pendu, J. Transmission of viruses through shellfish: When specific ligands come into play. Curr. Opin. Virol. 2012, 2, 103–110. [Google Scholar] [CrossRef]
- Kazama, S.; Masago, Y.; Tohma, K.; Souma, N.; Imagawa, T.; Suzuki, A.; Liu, X.; Saito, M.; Oshitani, H.; Omura, T. Temporal dynamics of norovirus determined through monitoring of municipal wastewater by pyrosequencing and virological surveillance of gastroenteritis cases. Water Res. 2016, 92, 244–253. [Google Scholar] [CrossRef] [Green Version]
- Pu, J.; Kazama, S.; Miura, T.; Azraini, N.D.; Konta, Y.; Ito, H.; Ueki, Y.; Cahyaningrum, E.E.; Omura, T.; Watanabe, T. Pyrosequencing analysis of norovirus genogroup II distribution in sewage and oysters: first detection of GII.17 Kawasaki 2014 in oysters. Food Environ. Virol. 2016, 8, 310–312. [Google Scholar] [CrossRef]
- Pang, X.L.; Lee, B.; Boroumand, N.; Leblanc, B.; Preiksaitis, J.K.; Yu Ip, C.C. Increased detection of rotavirus using a real time reverse transcription-polymerase chain reaction (RT-PCR) assay in stool specimens from children with diarrhea. J. Med. Virol. 2004, 72, 496–501. [Google Scholar] [CrossRef]
- ISO 15216-1. Microbiology of the Food Chain-Horizontal Method for Determination of Hepatitis A Virus and Norovirus Using Real-Time RT-PCR- Part 1: Method for Quantification. Available online: https://www.iso.org/standard/65681.html (accessed on 20 March 2018).
- Bustin, S.A.; Benes, V.; Garson, J.A.; Hellemans, J.; Huggett, J.; Kubista, M.; Mueller, R.; Nolan, T.; Pfaffl, M.W.; Shipley, G.L.; et al. The MIQE guidelines: minimum information for publication of quantitative real-time PCR experiments. Clin. Chem. 2009, 55, 611–622. [Google Scholar] [CrossRef]
- Kazama, S.; Miura, T.; Masago, Y.; Konta, Y.; Tohma, K.; Manaka, T.; Liu, X.; Nakayama, D.; Tanno, T.; Saito, M.; et al. Environmental surveillance of norovirus genogroups I and II for sensitive detection of epidemic variants. Appl. Environ. Microbiol. 2017, 83, e03406–e03416. [Google Scholar] [CrossRef] [PubMed]
- LaFleur, B.; Lee, W.; Billhiemer, D.; Lockhart, C.; Liu, J.; Merchant, N. Statistical methods for assays with limits of detection: Serum bile acid as a differentiator between patients with normal colons, adenomas, and colorectal cancer. J. Carcinog. 2011, 10, 12. [Google Scholar] [CrossRef] [PubMed]
- Whitcomb, B.W.; Schisterman, E.F. Assays with lower detection limits: implications for epidemiological investigations. Paediatr. Perinat. Epidemiol. 2009, 22, 597–602. [Google Scholar] [CrossRef] [PubMed]
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Ito, E.; Pu, J.; Miura, T.; Kazama, S.; Nishiyama, M.; Ito, H.; Konta, Y.; Nguyen, G.T.; Omura, T.; Watanabe, T. Weekly Variation of Rotavirus A Concentrations in Sewage and Oysters in Japan, 2014–2016. Pathogens 2019, 8, 89. https://doi.org/10.3390/pathogens8030089
Ito E, Pu J, Miura T, Kazama S, Nishiyama M, Ito H, Konta Y, Nguyen GT, Omura T, Watanabe T. Weekly Variation of Rotavirus A Concentrations in Sewage and Oysters in Japan, 2014–2016. Pathogens. 2019; 8(3):89. https://doi.org/10.3390/pathogens8030089
Chicago/Turabian StyleIto, Erika, Jian Pu, Takayuki Miura, Shinobu Kazama, Masateru Nishiyama, Hiroaki Ito, Yoshimitsu Konta, Gia Thanh Nguyen, Tatsuo Omura, and Toru Watanabe. 2019. "Weekly Variation of Rotavirus A Concentrations in Sewage and Oysters in Japan, 2014–2016" Pathogens 8, no. 3: 89. https://doi.org/10.3390/pathogens8030089
APA StyleIto, E., Pu, J., Miura, T., Kazama, S., Nishiyama, M., Ito, H., Konta, Y., Nguyen, G. T., Omura, T., & Watanabe, T. (2019). Weekly Variation of Rotavirus A Concentrations in Sewage and Oysters in Japan, 2014–2016. Pathogens, 8(3), 89. https://doi.org/10.3390/pathogens8030089