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About:
Rapid and Sensitive Recombinase Polymerase Amplification Combined With Lateral Flow Strip for Detecting African Swine Fever Virus
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schema:ScholarlyArticle
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wasabi.inria.fr
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Type:
Academic Article
research paper
schema:ScholarlyArticle
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type
Academic Article
research paper
schema:ScholarlyArticle
isDefinedBy
Covid-on-the-Web dataset
has title
Rapid and Sensitive Recombinase Polymerase Amplification Combined With Lateral Flow Strip for Detecting African Swine Fever Virus
Creator
Li, Min
Wang, Ying
Chen, Teng
Hu, Rongliang
Li, Nan
Mi, Lijuan
Miao, Faming
Wang, Lidong
Wang, Shuchao
Zhang, Fei
Zhang, Jingyuan
Zhang, Jinxia
Zhang, Shoufeng
Zhang, Yanyan
Zhou, Xintao
Zhang, Zhou
Li, Y
Wang, Wang
Li, Zhang
Bastos, Armanda
Source
Medline; PMC
abstract
African swine fever virus (ASFV), the etiological agent of African swine fever (ASF), a hemorrhagic fever of domestic pigs, has devastating consequences for the pig farming industry. More than 1,000,000 pigs have been slaughtered since 3 August 2018 in China. However, vaccines or drugs for ASF have yet to be developed. As such, a rapid test that can accurately detect ASFV on-site is important to the timely implementation of control measures. In this study, we developed a rapid test that combines recombinase polymerase amplification (RPA) of the ASFV p72 gene with lateral flow detection (LFD). Results showed that the sensitivity of recombinase polymerase amplification with lateral flow dipstick (RPA-LFD) for ASFV was 150 copies per reaction within 10 min at 38°C. The assay was highly specific to ASFV and had no cross-reactions with other porcine viruses, including classical swine fever virus (CSFV). A total of 145 field samples were examined using our method, and the agreement of the positive rate between RPA-LFD (10/145) and real-time PCR (10/145) was 100%. Overall, RPA-LFD provides a novel alternative for the simple, sensitive, and specific identification of ASFV and showed potential for on-site ASFV detection.
has issue date
2019-05-15
(
xsd:dateTime
)
bibo:doi
10.3389/fmicb.2019.01004
bibo:pmid
31156571
has license
cc-by
sha1sum (hex)
cc563b84c16c4fe4fb1fbd3baa6ffd08dda70006
schema:url
https://doi.org/10.3389/fmicb.2019.01004
resource representing a document's title
Rapid and Sensitive Recombinase Polymerase Amplification Combined With Lateral Flow Strip for Detecting African Swine Fever Virus
has PubMed Central identifier
PMC6530510
has PubMed identifier
31156571
schema:publication
Front Microbiol
resource representing a document's body
covid:cc563b84c16c4fe4fb1fbd3baa6ffd08dda70006#body_text
is
schema:about
of
named entity 'MIN'
named entity 'COMBINES'
named entity 'TIMELY'
named entity 'DETECTION'
named entity 'SENSITIVE'
named entity 'PIG'
named entity 'REAL-TIME PCR '
named entity 'LATERAL'
named entity 'RAPID'
named entity 'IMPLEMENTATION'
named entity 'MEASURES'
named entity '80%'
named entity 'DOMESTIC'
named entity 'HAVE'
named entity 'RECOMBINASE'
named entity 'POSITIVE RATE'
named entity 'ALTERNATIVE'
named entity 'CLASSICAL SWINE FEVER VIRUS'
named entity 'TEST'
named entity 'NOVEL'
named entity 'HIGHLY'
named entity 'EXAMINED'
named entity 'RAPID'
named entity 'domestic pigs'
named entity 'real-time PCR'
named entity 'specific'
named entity 'swine fever'
named entity 'etiological agent'
named entity 'However'
named entity 'reaction'
named entity 'With'
named entity 'FLOW'
covid:arg/cc563b84c16c4fe4fb1fbd3baa6ffd08dda70006
named entity 'AUGUST'
named entity 'ASSAY'
named entity 'CONTROL'
named entity 'RESULTS'
named entity 'DIPSTICK'
named entity 'PIGS'
named entity 'CROSS'
named entity 'VIRUSES'
named entity 'POLYMERASE'
named entity 'IMPORTANT'
named entity 'GENE'
named entity 'FIELD'
named entity 'USING'
named entity 'LFD'
named entity 'AGREEMENT'
named entity 'VACCINES'
named entity 'CITATION'
named entity 'RECOMBINASE'
named entity 'LATERAL'
named entity 'AFRICAN SWINE FEVER VIRUS'
named entity 'STRIP'
named entity 'DETECTING'
named entity 'SENSITIVE'
named entity 'AMPLIFICATION'
named entity 'ASFV P72'
named entity 'INCLUDING'
named entity 'COPIES'
named entity 'MORE THAN'
named entity 'REACTION'
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