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Evaluation of pre-analytical conditions and comparison of the performance of several digital PCR assays for the detection of major EGFR mutations in circulating DNA from non-small cell lung cancers: the CIRCAN_0 study

Non invasive somatic detection assays are suitable for repetitive tumor characterization or for detecting the appearance of somatic resistance during lung cancer. Molecular diagnosis based on circulating free DNA (cfDNA) offers the opportunity to track the genomic evolution of the tumor, and was cho...

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Autores principales: Garcia, Jessica, Dusserre, Eric, Cheynet, Valérie, Bringuier, Pierre Paul, Brengle-Pesce, Karen, Wozny, Anne-Sophie, Rodriguez-Lafrasse, Claire, Freyer, Gilles, Brevet, Marie, Payen, Léa, Couraud, Sébastien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5675687/
https://www.ncbi.nlm.nih.gov/pubmed/29152135
http://dx.doi.org/10.18632/oncotarget.21256
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author Garcia, Jessica
Dusserre, Eric
Cheynet, Valérie
Bringuier, Pierre Paul
Brengle-Pesce, Karen
Wozny, Anne-Sophie
Rodriguez-Lafrasse, Claire
Freyer, Gilles
Brevet, Marie
Payen, Léa
Couraud, Sébastien
author_facet Garcia, Jessica
Dusserre, Eric
Cheynet, Valérie
Bringuier, Pierre Paul
Brengle-Pesce, Karen
Wozny, Anne-Sophie
Rodriguez-Lafrasse, Claire
Freyer, Gilles
Brevet, Marie
Payen, Léa
Couraud, Sébastien
author_sort Garcia, Jessica
collection PubMed
description Non invasive somatic detection assays are suitable for repetitive tumor characterization or for detecting the appearance of somatic resistance during lung cancer. Molecular diagnosis based on circulating free DNA (cfDNA) offers the opportunity to track the genomic evolution of the tumor, and was chosen to assess the molecular profile of several EGFR alterations, including deletions in exon 19 (delEX19), the L858R substitution on exon 21 and the EGFR resistance mutation T790M on exon 20. Our study aimed at determining optimal pre-analytical conditions and EGFR mutation detection assays for analyzing cfDNA using the picoliter-droplet digital polymerase chain reaction (ddPCR) assay. Within the framework of the CIRCAN project set-up at the Lyon University Hospital, plasma samples were collected to establish a pre-analytical and analytical workflow of cfDNA analysis. We evaluated all of the steps from blood sampling to mutation detection output, including shipping conditions (4H versus 24H in EDTA tubes), the reproducibility of cfDNA extraction, the specificity/sensitivity of ddPCR (using external controls), and the comparison of different PCR assays for the detection of the three most important EGFR hotspots, which highlighted the increased sensitivity of our in-house primers/probes. Hence, we have described a new protocol facilitating the molecular detection of somatic mutations in cancer patients from liquid biopsies, improving their diagnosis and introducing a less traumatic monitoring system during tumor progression.
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spelling pubmed-56756872017-11-18 Evaluation of pre-analytical conditions and comparison of the performance of several digital PCR assays for the detection of major EGFR mutations in circulating DNA from non-small cell lung cancers: the CIRCAN_0 study Garcia, Jessica Dusserre, Eric Cheynet, Valérie Bringuier, Pierre Paul Brengle-Pesce, Karen Wozny, Anne-Sophie Rodriguez-Lafrasse, Claire Freyer, Gilles Brevet, Marie Payen, Léa Couraud, Sébastien Oncotarget Research Paper Non invasive somatic detection assays are suitable for repetitive tumor characterization or for detecting the appearance of somatic resistance during lung cancer. Molecular diagnosis based on circulating free DNA (cfDNA) offers the opportunity to track the genomic evolution of the tumor, and was chosen to assess the molecular profile of several EGFR alterations, including deletions in exon 19 (delEX19), the L858R substitution on exon 21 and the EGFR resistance mutation T790M on exon 20. Our study aimed at determining optimal pre-analytical conditions and EGFR mutation detection assays for analyzing cfDNA using the picoliter-droplet digital polymerase chain reaction (ddPCR) assay. Within the framework of the CIRCAN project set-up at the Lyon University Hospital, plasma samples were collected to establish a pre-analytical and analytical workflow of cfDNA analysis. We evaluated all of the steps from blood sampling to mutation detection output, including shipping conditions (4H versus 24H in EDTA tubes), the reproducibility of cfDNA extraction, the specificity/sensitivity of ddPCR (using external controls), and the comparison of different PCR assays for the detection of the three most important EGFR hotspots, which highlighted the increased sensitivity of our in-house primers/probes. Hence, we have described a new protocol facilitating the molecular detection of somatic mutations in cancer patients from liquid biopsies, improving their diagnosis and introducing a less traumatic monitoring system during tumor progression. Impact Journals LLC 2017-09-21 /pmc/articles/PMC5675687/ /pubmed/29152135 http://dx.doi.org/10.18632/oncotarget.21256 Text en Copyright: © 2017 Garcia et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Garcia, Jessica
Dusserre, Eric
Cheynet, Valérie
Bringuier, Pierre Paul
Brengle-Pesce, Karen
Wozny, Anne-Sophie
Rodriguez-Lafrasse, Claire
Freyer, Gilles
Brevet, Marie
Payen, Léa
Couraud, Sébastien
Evaluation of pre-analytical conditions and comparison of the performance of several digital PCR assays for the detection of major EGFR mutations in circulating DNA from non-small cell lung cancers: the CIRCAN_0 study
title Evaluation of pre-analytical conditions and comparison of the performance of several digital PCR assays for the detection of major EGFR mutations in circulating DNA from non-small cell lung cancers: the CIRCAN_0 study
title_full Evaluation of pre-analytical conditions and comparison of the performance of several digital PCR assays for the detection of major EGFR mutations in circulating DNA from non-small cell lung cancers: the CIRCAN_0 study
title_fullStr Evaluation of pre-analytical conditions and comparison of the performance of several digital PCR assays for the detection of major EGFR mutations in circulating DNA from non-small cell lung cancers: the CIRCAN_0 study
title_full_unstemmed Evaluation of pre-analytical conditions and comparison of the performance of several digital PCR assays for the detection of major EGFR mutations in circulating DNA from non-small cell lung cancers: the CIRCAN_0 study
title_short Evaluation of pre-analytical conditions and comparison of the performance of several digital PCR assays for the detection of major EGFR mutations in circulating DNA from non-small cell lung cancers: the CIRCAN_0 study
title_sort evaluation of pre-analytical conditions and comparison of the performance of several digital pcr assays for the detection of major egfr mutations in circulating dna from non-small cell lung cancers: the circan_0 study
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5675687/
https://www.ncbi.nlm.nih.gov/pubmed/29152135
http://dx.doi.org/10.18632/oncotarget.21256
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