Cargando…

Rapid detection of avian leukosis virus using a fluorescent microsphere immunochromatographic test strip assay

We developed a rapid fluorescent microsphere immunochromatographic test strip (FM-ICTS) assay for the quantitative detection of avian leukosis virus (ALV). A monoclonal antibody specific for the ALV major capsid protein encoded by the gag gene was coupled to label fluorescent microspheres. ALV antib...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Huanan, Guan, Jianchi, Liu, Xiangnan, Shi, Yue, Wu, Qiwen, Luo, Mengzhen, Zhu, Yujun, Wang, Zizengchen, Wang, Lefeng, Pan, Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8913972/
https://www.ncbi.nlm.nih.gov/pubmed/31553793
http://dx.doi.org/10.3382/ps/pez547
_version_ 1784667584254181376
author Wang, Huanan
Guan, Jianchi
Liu, Xiangnan
Shi, Yue
Wu, Qiwen
Luo, Mengzhen
Zhu, Yujun
Wang, Zizengchen
Wang, Lefeng
Pan, Yu
author_facet Wang, Huanan
Guan, Jianchi
Liu, Xiangnan
Shi, Yue
Wu, Qiwen
Luo, Mengzhen
Zhu, Yujun
Wang, Zizengchen
Wang, Lefeng
Pan, Yu
author_sort Wang, Huanan
collection PubMed
description We developed a rapid fluorescent microsphere immunochromatographic test strip (FM-ICTS) assay for the quantitative detection of avian leukosis virus (ALV). A monoclonal antibody specific for the ALV major capsid protein encoded by the gag gene was coupled to label fluorescent microspheres. ALV antibodies were coated on a nitrocellulose membrane to prepare a test line for sample detection. The fluorescence signals of the test and control lines can be read either visually by exposure to UV light or using a fluorescence analyzer. ALV could be detected quantitatively using the ratio of fluorescence signals of the test and control lines (T/C). The assay threshold was determined as a T/C value of 0.0606. The fitting curve equation was established between 1 and 2,048 ng/mL P27 protein with an r(2) value of 0.9998. The assay showed no cross reactivity with Newcastle disease virus, infectious laryngotracheitis virus, infectious bronchitis virus, Marek's disease virus, infectious bursal disease, Reoviridae virus, or avian influenza virus. The repeatability was satisfactory with an overall average CV of 8.65%. The Kappa coefficient between a commercial ELISA kit was 0.7031 using clinical chicken meconium samples. Thus, a simple, rapid, sensitive, and specific fluorescent microsphere immunochromatographic test strip was developed based on specific anti-capsid protein p27 monoclonal antibodies.
format Online
Article
Text
id pubmed-8913972
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-89139722022-03-12 Rapid detection of avian leukosis virus using a fluorescent microsphere immunochromatographic test strip assay Wang, Huanan Guan, Jianchi Liu, Xiangnan Shi, Yue Wu, Qiwen Luo, Mengzhen Zhu, Yujun Wang, Zizengchen Wang, Lefeng Pan, Yu Poult Sci Immunology, Health and Disease We developed a rapid fluorescent microsphere immunochromatographic test strip (FM-ICTS) assay for the quantitative detection of avian leukosis virus (ALV). A monoclonal antibody specific for the ALV major capsid protein encoded by the gag gene was coupled to label fluorescent microspheres. ALV antibodies were coated on a nitrocellulose membrane to prepare a test line for sample detection. The fluorescence signals of the test and control lines can be read either visually by exposure to UV light or using a fluorescence analyzer. ALV could be detected quantitatively using the ratio of fluorescence signals of the test and control lines (T/C). The assay threshold was determined as a T/C value of 0.0606. The fitting curve equation was established between 1 and 2,048 ng/mL P27 protein with an r(2) value of 0.9998. The assay showed no cross reactivity with Newcastle disease virus, infectious laryngotracheitis virus, infectious bronchitis virus, Marek's disease virus, infectious bursal disease, Reoviridae virus, or avian influenza virus. The repeatability was satisfactory with an overall average CV of 8.65%. The Kappa coefficient between a commercial ELISA kit was 0.7031 using clinical chicken meconium samples. Thus, a simple, rapid, sensitive, and specific fluorescent microsphere immunochromatographic test strip was developed based on specific anti-capsid protein p27 monoclonal antibodies. Elsevier 2019-12-17 /pmc/articles/PMC8913972/ /pubmed/31553793 http://dx.doi.org/10.3382/ps/pez547 Text en © 2019 Poultry Science Association Inc. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Immunology, Health and Disease
Wang, Huanan
Guan, Jianchi
Liu, Xiangnan
Shi, Yue
Wu, Qiwen
Luo, Mengzhen
Zhu, Yujun
Wang, Zizengchen
Wang, Lefeng
Pan, Yu
Rapid detection of avian leukosis virus using a fluorescent microsphere immunochromatographic test strip assay
title Rapid detection of avian leukosis virus using a fluorescent microsphere immunochromatographic test strip assay
title_full Rapid detection of avian leukosis virus using a fluorescent microsphere immunochromatographic test strip assay
title_fullStr Rapid detection of avian leukosis virus using a fluorescent microsphere immunochromatographic test strip assay
title_full_unstemmed Rapid detection of avian leukosis virus using a fluorescent microsphere immunochromatographic test strip assay
title_short Rapid detection of avian leukosis virus using a fluorescent microsphere immunochromatographic test strip assay
title_sort rapid detection of avian leukosis virus using a fluorescent microsphere immunochromatographic test strip assay
topic Immunology, Health and Disease
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8913972/
https://www.ncbi.nlm.nih.gov/pubmed/31553793
http://dx.doi.org/10.3382/ps/pez547
work_keys_str_mv AT wanghuanan rapiddetectionofavianleukosisvirususingafluorescentmicrosphereimmunochromatographicteststripassay
AT guanjianchi rapiddetectionofavianleukosisvirususingafluorescentmicrosphereimmunochromatographicteststripassay
AT liuxiangnan rapiddetectionofavianleukosisvirususingafluorescentmicrosphereimmunochromatographicteststripassay
AT shiyue rapiddetectionofavianleukosisvirususingafluorescentmicrosphereimmunochromatographicteststripassay
AT wuqiwen rapiddetectionofavianleukosisvirususingafluorescentmicrosphereimmunochromatographicteststripassay
AT luomengzhen rapiddetectionofavianleukosisvirususingafluorescentmicrosphereimmunochromatographicteststripassay
AT zhuyujun rapiddetectionofavianleukosisvirususingafluorescentmicrosphereimmunochromatographicteststripassay
AT wangzizengchen rapiddetectionofavianleukosisvirususingafluorescentmicrosphereimmunochromatographicteststripassay
AT wanglefeng rapiddetectionofavianleukosisvirususingafluorescentmicrosphereimmunochromatographicteststripassay
AT panyu rapiddetectionofavianleukosisvirususingafluorescentmicrosphereimmunochromatographicteststripassay