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Real-Time fast PCR amplification using designated and conventional real time thermal cycler systems: COVID-19 perspective

The study aimed to shorten multiplex RT-PCR run time for detection of SARS CoV-2 N1 and N2 sequences and human RNase P (RP) sequence as internal mRNA control using conventional and designated real time thermal cycler systems. Optimization of Fast PCR protocol using plasmid-based N1 and N2 positive c...

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Autores principales: Hossain, Md. Walid, Hossain, Mohabbat, Arafath, Khalid, Ety, Subarna Sayed, Shetu, Md. Mahade Hasan, Kabir, Mazbahul, Noor, Farjana Akther, Mannoor, Kaiissar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9584428/
https://www.ncbi.nlm.nih.gov/pubmed/36265002
http://dx.doi.org/10.1371/journal.pone.0276464
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author Hossain, Md. Walid
Hossain, Mohabbat
Arafath, Khalid
Ety, Subarna Sayed
Shetu, Md. Mahade Hasan
Kabir, Mazbahul
Noor, Farjana Akther
Mannoor, Kaiissar
author_facet Hossain, Md. Walid
Hossain, Mohabbat
Arafath, Khalid
Ety, Subarna Sayed
Shetu, Md. Mahade Hasan
Kabir, Mazbahul
Noor, Farjana Akther
Mannoor, Kaiissar
author_sort Hossain, Md. Walid
collection PubMed
description The study aimed to shorten multiplex RT-PCR run time for detection of SARS CoV-2 N1 and N2 sequences and human RNase P (RP) sequence as internal mRNA control using conventional and designated real time thermal cycler systems. Optimization of Fast PCR protocol using plasmid-based N1 and N2 positive control and synthetic version of human RP was done on Applied Biosystems (ABI) QuantStudio(TM)5 (conventional), ABI 7500 Fast Dx (designated), and CFX96 Touch Real Time Detection System, Bio-Rad (conventional). Finally, a performance evaluation of Fast PCR was performed in terms of sensitivity, specificity, and precision. For a 40-cycle PCR with optimized Fast PCR protocols on QuantStudio(TM)5, ABI 7500 Fast Dx, and CFX96 Touch (conventional), standard/regular versus Fast PCR run times (min) were 84 vs. 49, 96 vs. 48, and 103 vs. 61, thereby saving 35, 48, and 43 min, respectively. For each thermal cycler, Standard and Fast PCR generated identical shapes of fluorescence curves, Ct values, and (3) R(2) (0.95 to 0.99) for 5 10-log dilution panels of each positive control. The fast PCR approach generated results with 100% sensitivity and specificity. Median test comparisons between standard PCR and Fast PCR Cts of COVID-19 samples did not produce significance (p>0.5), suggesting that Fast PCR and Standard PCR were comparable. Also, the median and mean of each target had closely-related values, further suggesting that the two approaches were comparable. That is, there is an equivalency between Conventional and Fast PCR instruments for detection of COVID-19.
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spelling pubmed-95844282022-10-21 Real-Time fast PCR amplification using designated and conventional real time thermal cycler systems: COVID-19 perspective Hossain, Md. Walid Hossain, Mohabbat Arafath, Khalid Ety, Subarna Sayed Shetu, Md. Mahade Hasan Kabir, Mazbahul Noor, Farjana Akther Mannoor, Kaiissar PLoS One Research Article The study aimed to shorten multiplex RT-PCR run time for detection of SARS CoV-2 N1 and N2 sequences and human RNase P (RP) sequence as internal mRNA control using conventional and designated real time thermal cycler systems. Optimization of Fast PCR protocol using plasmid-based N1 and N2 positive control and synthetic version of human RP was done on Applied Biosystems (ABI) QuantStudio(TM)5 (conventional), ABI 7500 Fast Dx (designated), and CFX96 Touch Real Time Detection System, Bio-Rad (conventional). Finally, a performance evaluation of Fast PCR was performed in terms of sensitivity, specificity, and precision. For a 40-cycle PCR with optimized Fast PCR protocols on QuantStudio(TM)5, ABI 7500 Fast Dx, and CFX96 Touch (conventional), standard/regular versus Fast PCR run times (min) were 84 vs. 49, 96 vs. 48, and 103 vs. 61, thereby saving 35, 48, and 43 min, respectively. For each thermal cycler, Standard and Fast PCR generated identical shapes of fluorescence curves, Ct values, and (3) R(2) (0.95 to 0.99) for 5 10-log dilution panels of each positive control. The fast PCR approach generated results with 100% sensitivity and specificity. Median test comparisons between standard PCR and Fast PCR Cts of COVID-19 samples did not produce significance (p>0.5), suggesting that Fast PCR and Standard PCR were comparable. Also, the median and mean of each target had closely-related values, further suggesting that the two approaches were comparable. That is, there is an equivalency between Conventional and Fast PCR instruments for detection of COVID-19. Public Library of Science 2022-10-20 /pmc/articles/PMC9584428/ /pubmed/36265002 http://dx.doi.org/10.1371/journal.pone.0276464 Text en © 2022 Hossain et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Hossain, Md. Walid
Hossain, Mohabbat
Arafath, Khalid
Ety, Subarna Sayed
Shetu, Md. Mahade Hasan
Kabir, Mazbahul
Noor, Farjana Akther
Mannoor, Kaiissar
Real-Time fast PCR amplification using designated and conventional real time thermal cycler systems: COVID-19 perspective
title Real-Time fast PCR amplification using designated and conventional real time thermal cycler systems: COVID-19 perspective
title_full Real-Time fast PCR amplification using designated and conventional real time thermal cycler systems: COVID-19 perspective
title_fullStr Real-Time fast PCR amplification using designated and conventional real time thermal cycler systems: COVID-19 perspective
title_full_unstemmed Real-Time fast PCR amplification using designated and conventional real time thermal cycler systems: COVID-19 perspective
title_short Real-Time fast PCR amplification using designated and conventional real time thermal cycler systems: COVID-19 perspective
title_sort real-time fast pcr amplification using designated and conventional real time thermal cycler systems: covid-19 perspective
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9584428/
https://www.ncbi.nlm.nih.gov/pubmed/36265002
http://dx.doi.org/10.1371/journal.pone.0276464
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