Cargando…
An Automated Microfluidic Chip System for Detection of Piscine Nodavirus and Characterization of Its Potential Carrier in Grouper Farms
Groupers of the Epinephelus spp. are an important aquaculture species of high economic value in the Asia Pacific region. They are susceptible to piscine nodavirus infection, which results in viral nervous necrosis disease. In this study, a rapid and sensitive automated microfluidic chip system was i...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2012
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3415436/ https://www.ncbi.nlm.nih.gov/pubmed/22912690 http://dx.doi.org/10.1371/journal.pone.0042203 |
_version_ | 1782240361761996800 |
---|---|
author | Kuo, Hsiao-Che Wang, Ting-Yu Hsu, Hao-Hsuan Lee, Szu-Hsien Chen, Young-Mao Tsai, Tieh-Jung Ou, Ming-Chang Ku, Hsiao-Tung Lee, Gwo-Bin Chen, Tzong-Yueh |
author_facet | Kuo, Hsiao-Che Wang, Ting-Yu Hsu, Hao-Hsuan Lee, Szu-Hsien Chen, Young-Mao Tsai, Tieh-Jung Ou, Ming-Chang Ku, Hsiao-Tung Lee, Gwo-Bin Chen, Tzong-Yueh |
author_sort | Kuo, Hsiao-Che |
collection | PubMed |
description | Groupers of the Epinephelus spp. are an important aquaculture species of high economic value in the Asia Pacific region. They are susceptible to piscine nodavirus infection, which results in viral nervous necrosis disease. In this study, a rapid and sensitive automated microfluidic chip system was implemented for the detection of piscine nodavirus; this technology has the advantage of requiring small amounts of sample and has been developed and applied for managing grouper fish farms. Epidemiological investigations revealed an extremely high detection rate of piscine nodavirus (89% of fish samples) from 5 different locations in southern Taiwan. In addition, positive samples from the feces of fish-feeding birds indicated that the birds could be carrying the virus between fish farms. In the present study, we successfully introduced this advanced technology that combines engineering and biological approaches to aquaculture. In the future, we believe that this approach will improve fish farm management and aid in reducing the economic loss experienced by fish farmers due to widespread disease outbreaks. |
format | Online Article Text |
id | pubmed-3415436 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-34154362012-08-21 An Automated Microfluidic Chip System for Detection of Piscine Nodavirus and Characterization of Its Potential Carrier in Grouper Farms Kuo, Hsiao-Che Wang, Ting-Yu Hsu, Hao-Hsuan Lee, Szu-Hsien Chen, Young-Mao Tsai, Tieh-Jung Ou, Ming-Chang Ku, Hsiao-Tung Lee, Gwo-Bin Chen, Tzong-Yueh PLoS One Research Article Groupers of the Epinephelus spp. are an important aquaculture species of high economic value in the Asia Pacific region. They are susceptible to piscine nodavirus infection, which results in viral nervous necrosis disease. In this study, a rapid and sensitive automated microfluidic chip system was implemented for the detection of piscine nodavirus; this technology has the advantage of requiring small amounts of sample and has been developed and applied for managing grouper fish farms. Epidemiological investigations revealed an extremely high detection rate of piscine nodavirus (89% of fish samples) from 5 different locations in southern Taiwan. In addition, positive samples from the feces of fish-feeding birds indicated that the birds could be carrying the virus between fish farms. In the present study, we successfully introduced this advanced technology that combines engineering and biological approaches to aquaculture. In the future, we believe that this approach will improve fish farm management and aid in reducing the economic loss experienced by fish farmers due to widespread disease outbreaks. Public Library of Science 2012-08-09 /pmc/articles/PMC3415436/ /pubmed/22912690 http://dx.doi.org/10.1371/journal.pone.0042203 Text en © 2012 Kuo et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Kuo, Hsiao-Che Wang, Ting-Yu Hsu, Hao-Hsuan Lee, Szu-Hsien Chen, Young-Mao Tsai, Tieh-Jung Ou, Ming-Chang Ku, Hsiao-Tung Lee, Gwo-Bin Chen, Tzong-Yueh An Automated Microfluidic Chip System for Detection of Piscine Nodavirus and Characterization of Its Potential Carrier in Grouper Farms |
title | An Automated Microfluidic Chip System for Detection of Piscine Nodavirus and Characterization of Its Potential Carrier in Grouper Farms |
title_full | An Automated Microfluidic Chip System for Detection of Piscine Nodavirus and Characterization of Its Potential Carrier in Grouper Farms |
title_fullStr | An Automated Microfluidic Chip System for Detection of Piscine Nodavirus and Characterization of Its Potential Carrier in Grouper Farms |
title_full_unstemmed | An Automated Microfluidic Chip System for Detection of Piscine Nodavirus and Characterization of Its Potential Carrier in Grouper Farms |
title_short | An Automated Microfluidic Chip System for Detection of Piscine Nodavirus and Characterization of Its Potential Carrier in Grouper Farms |
title_sort | automated microfluidic chip system for detection of piscine nodavirus and characterization of its potential carrier in grouper farms |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3415436/ https://www.ncbi.nlm.nih.gov/pubmed/22912690 http://dx.doi.org/10.1371/journal.pone.0042203 |
work_keys_str_mv | AT kuohsiaoche anautomatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT wangtingyu anautomatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT hsuhaohsuan anautomatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT leeszuhsien anautomatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT chenyoungmao anautomatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT tsaitiehjung anautomatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT oumingchang anautomatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT kuhsiaotung anautomatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT leegwobin anautomatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT chentzongyueh anautomatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT kuohsiaoche automatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT wangtingyu automatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT hsuhaohsuan automatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT leeszuhsien automatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT chenyoungmao automatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT tsaitiehjung automatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT oumingchang automatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT kuhsiaotung automatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT leegwobin automatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms AT chentzongyueh automatedmicrofluidicchipsystemfordetectionofpiscinenodavirusandcharacterizationofitspotentialcarrieringrouperfarms |