Cargando…

A New Strategy for the Detection of Chicken Infectious Anemia Virus Contamination in Attenuated Live Vaccine by Droplet Digital PCR

Chicken infectious anemia virus (CIAV) causes the atrophy of bone marrow hematopoietic and lymphoid tissues in chicks, leading to huge economic losses all over the world. The using of attenuated vaccine contaminated with CIAV increased the mortality and the pathogenicity of other diseases in many fa...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Qiuchen, Zhang, Yubiao, Meng, Fanfeng, Jiang, Hui, Xu, Guanlong, Ding, Jiabo, Zhang, Yawen, Dong, Guiwei, Tian, Sibao, Chang, Shuang, Zhao, Peng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6541982/
https://www.ncbi.nlm.nih.gov/pubmed/31223613
http://dx.doi.org/10.1155/2019/2750472
_version_ 1783422851885301760
author Li, Qiuchen
Zhang, Yubiao
Meng, Fanfeng
Jiang, Hui
Xu, Guanlong
Ding, Jiabo
Zhang, Yawen
Dong, Guiwei
Tian, Sibao
Chang, Shuang
Zhao, Peng
author_facet Li, Qiuchen
Zhang, Yubiao
Meng, Fanfeng
Jiang, Hui
Xu, Guanlong
Ding, Jiabo
Zhang, Yawen
Dong, Guiwei
Tian, Sibao
Chang, Shuang
Zhao, Peng
author_sort Li, Qiuchen
collection PubMed
description Chicken infectious anemia virus (CIAV) causes the atrophy of bone marrow hematopoietic and lymphoid tissues in chicks, leading to huge economic losses all over the world. The using of attenuated vaccine contaminated with CIAV increased the mortality and the pathogenicity of other diseases in many farms. However, it is difficult to detect the CIAV contamination by general detection technology due to the extremely low dose of CIAV in vaccines. In this study, we established a new method called droplet digital Polymerase Chain Reaction (ddPCR) to detect CIAV contamination of vaccines more sensitively and accurately. The lowest detection limitation of this method is 2.4 copies of CIAV plasmid or CIAV contamination at 0.1 EID(50)/1000 feathers in vaccines without any positive signals of other viruses. Besides, the sensitivity of ddPCR is 100 times greater than that of conventional PCR and 10 times greater than that of real-time PCR. The ddPCR technique is more sensitive and more intuitive. Therefore, it could be valuable for the detection of CIAV contamination in vaccines.
format Online
Article
Text
id pubmed-6541982
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-65419822019-06-20 A New Strategy for the Detection of Chicken Infectious Anemia Virus Contamination in Attenuated Live Vaccine by Droplet Digital PCR Li, Qiuchen Zhang, Yubiao Meng, Fanfeng Jiang, Hui Xu, Guanlong Ding, Jiabo Zhang, Yawen Dong, Guiwei Tian, Sibao Chang, Shuang Zhao, Peng Biomed Res Int Research Article Chicken infectious anemia virus (CIAV) causes the atrophy of bone marrow hematopoietic and lymphoid tissues in chicks, leading to huge economic losses all over the world. The using of attenuated vaccine contaminated with CIAV increased the mortality and the pathogenicity of other diseases in many farms. However, it is difficult to detect the CIAV contamination by general detection technology due to the extremely low dose of CIAV in vaccines. In this study, we established a new method called droplet digital Polymerase Chain Reaction (ddPCR) to detect CIAV contamination of vaccines more sensitively and accurately. The lowest detection limitation of this method is 2.4 copies of CIAV plasmid or CIAV contamination at 0.1 EID(50)/1000 feathers in vaccines without any positive signals of other viruses. Besides, the sensitivity of ddPCR is 100 times greater than that of conventional PCR and 10 times greater than that of real-time PCR. The ddPCR technique is more sensitive and more intuitive. Therefore, it could be valuable for the detection of CIAV contamination in vaccines. Hindawi 2019-05-16 /pmc/articles/PMC6541982/ /pubmed/31223613 http://dx.doi.org/10.1155/2019/2750472 Text en Copyright © 2019 Qiuchen Li et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Li, Qiuchen
Zhang, Yubiao
Meng, Fanfeng
Jiang, Hui
Xu, Guanlong
Ding, Jiabo
Zhang, Yawen
Dong, Guiwei
Tian, Sibao
Chang, Shuang
Zhao, Peng
A New Strategy for the Detection of Chicken Infectious Anemia Virus Contamination in Attenuated Live Vaccine by Droplet Digital PCR
title A New Strategy for the Detection of Chicken Infectious Anemia Virus Contamination in Attenuated Live Vaccine by Droplet Digital PCR
title_full A New Strategy for the Detection of Chicken Infectious Anemia Virus Contamination in Attenuated Live Vaccine by Droplet Digital PCR
title_fullStr A New Strategy for the Detection of Chicken Infectious Anemia Virus Contamination in Attenuated Live Vaccine by Droplet Digital PCR
title_full_unstemmed A New Strategy for the Detection of Chicken Infectious Anemia Virus Contamination in Attenuated Live Vaccine by Droplet Digital PCR
title_short A New Strategy for the Detection of Chicken Infectious Anemia Virus Contamination in Attenuated Live Vaccine by Droplet Digital PCR
title_sort new strategy for the detection of chicken infectious anemia virus contamination in attenuated live vaccine by droplet digital pcr
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6541982/
https://www.ncbi.nlm.nih.gov/pubmed/31223613
http://dx.doi.org/10.1155/2019/2750472
work_keys_str_mv AT liqiuchen anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT zhangyubiao anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT mengfanfeng anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT jianghui anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT xuguanlong anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT dingjiabo anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT zhangyawen anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT dongguiwei anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT tiansibao anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT changshuang anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT zhaopeng anewstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT liqiuchen newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT zhangyubiao newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT mengfanfeng newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT jianghui newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT xuguanlong newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT dingjiabo newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT zhangyawen newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT dongguiwei newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT tiansibao newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT changshuang newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr
AT zhaopeng newstrategyforthedetectionofchickeninfectiousanemiaviruscontaminationinattenuatedlivevaccinebydropletdigitalpcr