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Multiplex qPCR for Detection and Absolute Quantification of Malaria

We describe development of an absolute multiplex quantitative real-time PCR for detection of Plasmodium spp., P. falciparum and P. vivax targets in order to produce an assay amenable to high throughput but with reduced costs. Important qPCR experimental details and information that is critical to pe...

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Autores principales: Kamau, Edwin, Alemayehu, Saba, Feghali, Karla C., Saunders, David, Ockenhouse, Christian F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3756973/
https://www.ncbi.nlm.nih.gov/pubmed/24009663
http://dx.doi.org/10.1371/journal.pone.0071539
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author Kamau, Edwin
Alemayehu, Saba
Feghali, Karla C.
Saunders, David
Ockenhouse, Christian F.
author_facet Kamau, Edwin
Alemayehu, Saba
Feghali, Karla C.
Saunders, David
Ockenhouse, Christian F.
author_sort Kamau, Edwin
collection PubMed
description We describe development of an absolute multiplex quantitative real-time PCR for detection of Plasmodium spp., P. falciparum and P. vivax targets in order to produce an assay amenable to high throughput but with reduced costs. Important qPCR experimental details and information that is critical to performance and reliability of assay results were investigated. Inhibition studies were performed to test and compare co-purification of PCR inhibitors in samples extracted from whole blood using either the manual or automated methods. To establish the most optimal qPCR reaction volume, volume titration of the reaction master mix was performed starting at 10 µl to 1 µl reaction master mix with 1 µl of template DNA in each reaction. As the reaction volume decreased, qPCR assays became more efficient with 1 µl reaction master mix being the most efficient. For more accurate quantification of parasites in a sample, we developed plasmid DNAs for all the three assay targets for absolute quantification. All of absolute qPCR assays performed with efficiency of more than 94%, R(2) values greater than 0.99 and the STDEV of each replicate was <0.167. Linear regression plots generated from absolute qPCR assays were used to estimate the corresponding parasite density from relative qPCR in terms of parasite/µl. One copy of plasmid DNA was established to be equivalent to 0.1 parasite/µl for Plasmodium spp. assay, 0.281 parasites for P. falciparum assay and 0.127 parasite/µl for P. vivax assay. This study demonstrates for the first time use of plasmid DNA in absolute quantification of malaria parasite. The use of plasmid DNA standard in quantification of malaria parasite will be critical as efforts are underway to harmonize molecular assays used in diagnosis of malaria.
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spelling pubmed-37569732013-09-05 Multiplex qPCR for Detection and Absolute Quantification of Malaria Kamau, Edwin Alemayehu, Saba Feghali, Karla C. Saunders, David Ockenhouse, Christian F. PLoS One Research Article We describe development of an absolute multiplex quantitative real-time PCR for detection of Plasmodium spp., P. falciparum and P. vivax targets in order to produce an assay amenable to high throughput but with reduced costs. Important qPCR experimental details and information that is critical to performance and reliability of assay results were investigated. Inhibition studies were performed to test and compare co-purification of PCR inhibitors in samples extracted from whole blood using either the manual or automated methods. To establish the most optimal qPCR reaction volume, volume titration of the reaction master mix was performed starting at 10 µl to 1 µl reaction master mix with 1 µl of template DNA in each reaction. As the reaction volume decreased, qPCR assays became more efficient with 1 µl reaction master mix being the most efficient. For more accurate quantification of parasites in a sample, we developed plasmid DNAs for all the three assay targets for absolute quantification. All of absolute qPCR assays performed with efficiency of more than 94%, R(2) values greater than 0.99 and the STDEV of each replicate was <0.167. Linear regression plots generated from absolute qPCR assays were used to estimate the corresponding parasite density from relative qPCR in terms of parasite/µl. One copy of plasmid DNA was established to be equivalent to 0.1 parasite/µl for Plasmodium spp. assay, 0.281 parasites for P. falciparum assay and 0.127 parasite/µl for P. vivax assay. This study demonstrates for the first time use of plasmid DNA in absolute quantification of malaria parasite. The use of plasmid DNA standard in quantification of malaria parasite will be critical as efforts are underway to harmonize molecular assays used in diagnosis of malaria. Public Library of Science 2013-08-29 /pmc/articles/PMC3756973/ /pubmed/24009663 http://dx.doi.org/10.1371/journal.pone.0071539 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Kamau, Edwin
Alemayehu, Saba
Feghali, Karla C.
Saunders, David
Ockenhouse, Christian F.
Multiplex qPCR for Detection and Absolute Quantification of Malaria
title Multiplex qPCR for Detection and Absolute Quantification of Malaria
title_full Multiplex qPCR for Detection and Absolute Quantification of Malaria
title_fullStr Multiplex qPCR for Detection and Absolute Quantification of Malaria
title_full_unstemmed Multiplex qPCR for Detection and Absolute Quantification of Malaria
title_short Multiplex qPCR for Detection and Absolute Quantification of Malaria
title_sort multiplex qpcr for detection and absolute quantification of malaria
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3756973/
https://www.ncbi.nlm.nih.gov/pubmed/24009663
http://dx.doi.org/10.1371/journal.pone.0071539
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