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Validation of a redesigned pan-poliovirus assay and real-time PCR platforms for the global poliovirus laboratory network

Surveillance and detection of polioviruses (PV) remain crucial to monitoring eradication progress. Intratypic differentiation (ITD) using the real-time RT-PCR kit is key to the surveillance workflow, where viruses are screened after cell culture isolation before a subset are verified by sequencing....

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Autores principales: Sun, Hong, Harrington, Chelsea, Gerloff, Nancy, Mandelbaum, Mark, Jeffries-Miles, Stacey, Apostol, Lea Necitas G., Valencia, Ma. Anne-Lesley D., Shaukat, Shahzad, Angez, Mehar, Sharma, Deepa K., Nalavade, Uma P., Pawar, Shailesh D., Pukuta Simbu, Elisabeth, Andriamamonjy, Seta, Razafindratsimandresy, Richter, Vega, Everardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8345876/
https://www.ncbi.nlm.nih.gov/pubmed/34358268
http://dx.doi.org/10.1371/journal.pone.0255795
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author Sun, Hong
Harrington, Chelsea
Gerloff, Nancy
Mandelbaum, Mark
Jeffries-Miles, Stacey
Apostol, Lea Necitas G.
Valencia, Ma. Anne-Lesley D.
Shaukat, Shahzad
Angez, Mehar
Sharma, Deepa K.
Nalavade, Uma P.
Pawar, Shailesh D.
Pukuta Simbu, Elisabeth
Andriamamonjy, Seta
Razafindratsimandresy, Richter
Vega, Everardo
author_facet Sun, Hong
Harrington, Chelsea
Gerloff, Nancy
Mandelbaum, Mark
Jeffries-Miles, Stacey
Apostol, Lea Necitas G.
Valencia, Ma. Anne-Lesley D.
Shaukat, Shahzad
Angez, Mehar
Sharma, Deepa K.
Nalavade, Uma P.
Pawar, Shailesh D.
Pukuta Simbu, Elisabeth
Andriamamonjy, Seta
Razafindratsimandresy, Richter
Vega, Everardo
author_sort Sun, Hong
collection PubMed
description Surveillance and detection of polioviruses (PV) remain crucial to monitoring eradication progress. Intratypic differentiation (ITD) using the real-time RT-PCR kit is key to the surveillance workflow, where viruses are screened after cell culture isolation before a subset are verified by sequencing. The ITD kit is a series of real-time RT-PCR assays that screens cytopathic effect (CPE)-positive cell cultures using the standard WHO method for virus isolation. Because ITD screening is a critical procedure in the poliovirus identification workflow, validation of performance of real-time PCR platforms is a core requirement for the detection of poliovirus using the ITD kit. In addition, the continual update and improvement of the ITD assays to simplify interpretation in all platforms is necessary to ensure that all real-time machines are capable of detecting positive real-time signals. Four platforms (ABI7500 real-time systems, Bio-Rad CFX96, Stratagene MX3000P, and the Qiagen Rotor-Gene Q) were validated with the ITD kit and a redesigned poliovirus probe. The poliovirus probe in the real-time RT-PCR pan-poliovirus (PanPV) assay was re-designed with a double-quencher (Zen(™)) to reduce background fluorescence and potential false negatives. The updated PanPV probe was evaluated with a panel consisting of 184 polioviruses and non-polio enteroviruses. To further validate the updated PanPV probe, the new assay was pilot tested in five Global Polio Laboratory Network (GPLN) laboratories (Madagascar, India, Philippines, Pakistan, and Democratic Republic of Congo). The updated PanPV probe performance was shown to reduce background fluorescence and decrease the number of false positives compared to the standard PanPV probe.
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spelling pubmed-83458762021-08-07 Validation of a redesigned pan-poliovirus assay and real-time PCR platforms for the global poliovirus laboratory network Sun, Hong Harrington, Chelsea Gerloff, Nancy Mandelbaum, Mark Jeffries-Miles, Stacey Apostol, Lea Necitas G. Valencia, Ma. Anne-Lesley D. Shaukat, Shahzad Angez, Mehar Sharma, Deepa K. Nalavade, Uma P. Pawar, Shailesh D. Pukuta Simbu, Elisabeth Andriamamonjy, Seta Razafindratsimandresy, Richter Vega, Everardo PLoS One Research Article Surveillance and detection of polioviruses (PV) remain crucial to monitoring eradication progress. Intratypic differentiation (ITD) using the real-time RT-PCR kit is key to the surveillance workflow, where viruses are screened after cell culture isolation before a subset are verified by sequencing. The ITD kit is a series of real-time RT-PCR assays that screens cytopathic effect (CPE)-positive cell cultures using the standard WHO method for virus isolation. Because ITD screening is a critical procedure in the poliovirus identification workflow, validation of performance of real-time PCR platforms is a core requirement for the detection of poliovirus using the ITD kit. In addition, the continual update and improvement of the ITD assays to simplify interpretation in all platforms is necessary to ensure that all real-time machines are capable of detecting positive real-time signals. Four platforms (ABI7500 real-time systems, Bio-Rad CFX96, Stratagene MX3000P, and the Qiagen Rotor-Gene Q) were validated with the ITD kit and a redesigned poliovirus probe. The poliovirus probe in the real-time RT-PCR pan-poliovirus (PanPV) assay was re-designed with a double-quencher (Zen(™)) to reduce background fluorescence and potential false negatives. The updated PanPV probe was evaluated with a panel consisting of 184 polioviruses and non-polio enteroviruses. To further validate the updated PanPV probe, the new assay was pilot tested in five Global Polio Laboratory Network (GPLN) laboratories (Madagascar, India, Philippines, Pakistan, and Democratic Republic of Congo). The updated PanPV probe performance was shown to reduce background fluorescence and decrease the number of false positives compared to the standard PanPV probe. Public Library of Science 2021-08-06 /pmc/articles/PMC8345876/ /pubmed/34358268 http://dx.doi.org/10.1371/journal.pone.0255795 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Sun, Hong
Harrington, Chelsea
Gerloff, Nancy
Mandelbaum, Mark
Jeffries-Miles, Stacey
Apostol, Lea Necitas G.
Valencia, Ma. Anne-Lesley D.
Shaukat, Shahzad
Angez, Mehar
Sharma, Deepa K.
Nalavade, Uma P.
Pawar, Shailesh D.
Pukuta Simbu, Elisabeth
Andriamamonjy, Seta
Razafindratsimandresy, Richter
Vega, Everardo
Validation of a redesigned pan-poliovirus assay and real-time PCR platforms for the global poliovirus laboratory network
title Validation of a redesigned pan-poliovirus assay and real-time PCR platforms for the global poliovirus laboratory network
title_full Validation of a redesigned pan-poliovirus assay and real-time PCR platforms for the global poliovirus laboratory network
title_fullStr Validation of a redesigned pan-poliovirus assay and real-time PCR platforms for the global poliovirus laboratory network
title_full_unstemmed Validation of a redesigned pan-poliovirus assay and real-time PCR platforms for the global poliovirus laboratory network
title_short Validation of a redesigned pan-poliovirus assay and real-time PCR platforms for the global poliovirus laboratory network
title_sort validation of a redesigned pan-poliovirus assay and real-time pcr platforms for the global poliovirus laboratory network
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8345876/
https://www.ncbi.nlm.nih.gov/pubmed/34358268
http://dx.doi.org/10.1371/journal.pone.0255795
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