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Detection of somatic variants and EGFR mutations in cell-free DNA from non-small cell lung cancer patients by ultra-deep sequencing using the ion ampliseq cancer hotspot panel and droplet digital polymerase chain reaction

Highly sensitive genotyping assays can detect mutations in cell-free DNA (cfDNA) from cancer patients, reflecting the biology of each patient’s cancer. Because circulating tumor DNA comprises a small, variable fraction of DNA circulating in the blood, sensitive parallel multiplexing tests are requir...

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Autores principales: Sung, Jae Sook, Chong, Hyon Yong, Kwon, Nak-Jung, Kim, Hae Mi, Lee, Jong Won, Kim, Boyeon, Lee, Saet Byeol, Park, Chang Won, Choi, Jung Yoon, Chang, Won Jin, Choi, Yoon Ji, Lee, Sung Yong, Kang, Eun Joo, Park, Kyong Hwa, Kim, Yeul Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5739783/
https://www.ncbi.nlm.nih.gov/pubmed/29290998
http://dx.doi.org/10.18632/oncotarget.22456
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author Sung, Jae Sook
Chong, Hyon Yong
Kwon, Nak-Jung
Kim, Hae Mi
Lee, Jong Won
Kim, Boyeon
Lee, Saet Byeol
Park, Chang Won
Choi, Jung Yoon
Chang, Won Jin
Choi, Yoon Ji
Lee, Sung Yong
Kang, Eun Joo
Park, Kyong Hwa
Kim, Yeul Hong
author_facet Sung, Jae Sook
Chong, Hyon Yong
Kwon, Nak-Jung
Kim, Hae Mi
Lee, Jong Won
Kim, Boyeon
Lee, Saet Byeol
Park, Chang Won
Choi, Jung Yoon
Chang, Won Jin
Choi, Yoon Ji
Lee, Sung Yong
Kang, Eun Joo
Park, Kyong Hwa
Kim, Yeul Hong
author_sort Sung, Jae Sook
collection PubMed
description Highly sensitive genotyping assays can detect mutations in cell-free DNA (cfDNA) from cancer patients, reflecting the biology of each patient’s cancer. Because circulating tumor DNA comprises a small, variable fraction of DNA circulating in the blood, sensitive parallel multiplexing tests are required to determine mutation profiles. We prospectively examined the clinical utility of ultra-deep sequencing analysis of cfDNA from 126 non-small cell lung cancer (NSCLC) patients using the Ion AmpliSeq Cancer Hotspot Panel v2 (ICP) and validated these findings with droplet digital polymerase chain reaction (ddPCR). ICP results were compared with tumor tissue genotyping (TTG) results and clinical outcomes. A total of 853 variants were detected, with a median of four variants per patient. Overall concordance of ICP and TTG analyses was 90% for EGFR exon 19 deletion and 88% for the L858R mutation. Of 34 patients with a well-defined EGFR activating mutation defined based on the results of ICP and TTG, 31 (81.6%) showed long-term disease control with EGFR TKI treatment. Of 56 patients treated with an EGFR tyrosine kinase inhibitor (TKI), the presence of the de novo T790M mutation was confirmed in 28 (50%). Presence of this de novo mutation did not have a negative effect on EGFR TKI treatment. Ultra-deep sequencing analysis of cfDNA using ICP combined with confirmatory ddPCR was effective at defining driver genetic changes in NSCLC patients. Comprehensive analysis of tumor DNA and cfDNA can increase the specificity of molecular diagnosis, which could translate into tailored treatment.
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spelling pubmed-57397832017-12-29 Detection of somatic variants and EGFR mutations in cell-free DNA from non-small cell lung cancer patients by ultra-deep sequencing using the ion ampliseq cancer hotspot panel and droplet digital polymerase chain reaction Sung, Jae Sook Chong, Hyon Yong Kwon, Nak-Jung Kim, Hae Mi Lee, Jong Won Kim, Boyeon Lee, Saet Byeol Park, Chang Won Choi, Jung Yoon Chang, Won Jin Choi, Yoon Ji Lee, Sung Yong Kang, Eun Joo Park, Kyong Hwa Kim, Yeul Hong Oncotarget Research Paper Highly sensitive genotyping assays can detect mutations in cell-free DNA (cfDNA) from cancer patients, reflecting the biology of each patient’s cancer. Because circulating tumor DNA comprises a small, variable fraction of DNA circulating in the blood, sensitive parallel multiplexing tests are required to determine mutation profiles. We prospectively examined the clinical utility of ultra-deep sequencing analysis of cfDNA from 126 non-small cell lung cancer (NSCLC) patients using the Ion AmpliSeq Cancer Hotspot Panel v2 (ICP) and validated these findings with droplet digital polymerase chain reaction (ddPCR). ICP results were compared with tumor tissue genotyping (TTG) results and clinical outcomes. A total of 853 variants were detected, with a median of four variants per patient. Overall concordance of ICP and TTG analyses was 90% for EGFR exon 19 deletion and 88% for the L858R mutation. Of 34 patients with a well-defined EGFR activating mutation defined based on the results of ICP and TTG, 31 (81.6%) showed long-term disease control with EGFR TKI treatment. Of 56 patients treated with an EGFR tyrosine kinase inhibitor (TKI), the presence of the de novo T790M mutation was confirmed in 28 (50%). Presence of this de novo mutation did not have a negative effect on EGFR TKI treatment. Ultra-deep sequencing analysis of cfDNA using ICP combined with confirmatory ddPCR was effective at defining driver genetic changes in NSCLC patients. Comprehensive analysis of tumor DNA and cfDNA can increase the specificity of molecular diagnosis, which could translate into tailored treatment. Impact Journals LLC 2017-11-15 /pmc/articles/PMC5739783/ /pubmed/29290998 http://dx.doi.org/10.18632/oncotarget.22456 Text en Copyright: © 2017 Sung et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Sung, Jae Sook
Chong, Hyon Yong
Kwon, Nak-Jung
Kim, Hae Mi
Lee, Jong Won
Kim, Boyeon
Lee, Saet Byeol
Park, Chang Won
Choi, Jung Yoon
Chang, Won Jin
Choi, Yoon Ji
Lee, Sung Yong
Kang, Eun Joo
Park, Kyong Hwa
Kim, Yeul Hong
Detection of somatic variants and EGFR mutations in cell-free DNA from non-small cell lung cancer patients by ultra-deep sequencing using the ion ampliseq cancer hotspot panel and droplet digital polymerase chain reaction
title Detection of somatic variants and EGFR mutations in cell-free DNA from non-small cell lung cancer patients by ultra-deep sequencing using the ion ampliseq cancer hotspot panel and droplet digital polymerase chain reaction
title_full Detection of somatic variants and EGFR mutations in cell-free DNA from non-small cell lung cancer patients by ultra-deep sequencing using the ion ampliseq cancer hotspot panel and droplet digital polymerase chain reaction
title_fullStr Detection of somatic variants and EGFR mutations in cell-free DNA from non-small cell lung cancer patients by ultra-deep sequencing using the ion ampliseq cancer hotspot panel and droplet digital polymerase chain reaction
title_full_unstemmed Detection of somatic variants and EGFR mutations in cell-free DNA from non-small cell lung cancer patients by ultra-deep sequencing using the ion ampliseq cancer hotspot panel and droplet digital polymerase chain reaction
title_short Detection of somatic variants and EGFR mutations in cell-free DNA from non-small cell lung cancer patients by ultra-deep sequencing using the ion ampliseq cancer hotspot panel and droplet digital polymerase chain reaction
title_sort detection of somatic variants and egfr mutations in cell-free dna from non-small cell lung cancer patients by ultra-deep sequencing using the ion ampliseq cancer hotspot panel and droplet digital polymerase chain reaction
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5739783/
https://www.ncbi.nlm.nih.gov/pubmed/29290998
http://dx.doi.org/10.18632/oncotarget.22456
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