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Molecular characterization of circulating colorectal tumor cells defines genetic signatures for individualized cancer care

Studies on circulating tumor cells (CTCs) have largely focused on platform development and CTC enumeration rather than on the genomic characterization of CTCs. To address this, we performed targeted sequencing of CTCs of colorectal cancer patients and compared the mutations with the matched primary...

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Autores principales: Kong, Say Li, Liu, Xingliang, Suhaimi, Nur-Afidah Mohamed, Koh, Kenneth Jia Hao, Hu, Min, Lee, Daniel Yoke San, Cima, Igor, Phyo, Wai Min, Lee, Esther Xing Wei, Tai, Joyce A., Foong, Yu Miin, Vo, Jess Honganh, Koh, Poh Koon, Zhang, Tong, Ying, Jackie Y., Lim, Bing, Tan, Min-Han, Hillmer, Axel M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5620233/
https://www.ncbi.nlm.nih.gov/pubmed/28978093
http://dx.doi.org/10.18632/oncotarget.19138
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author Kong, Say Li
Liu, Xingliang
Suhaimi, Nur-Afidah Mohamed
Koh, Kenneth Jia Hao
Hu, Min
Lee, Daniel Yoke San
Cima, Igor
Phyo, Wai Min
Lee, Esther Xing Wei
Tai, Joyce A.
Foong, Yu Miin
Vo, Jess Honganh
Koh, Poh Koon
Zhang, Tong
Ying, Jackie Y.
Lim, Bing
Tan, Min-Han
Hillmer, Axel M.
author_facet Kong, Say Li
Liu, Xingliang
Suhaimi, Nur-Afidah Mohamed
Koh, Kenneth Jia Hao
Hu, Min
Lee, Daniel Yoke San
Cima, Igor
Phyo, Wai Min
Lee, Esther Xing Wei
Tai, Joyce A.
Foong, Yu Miin
Vo, Jess Honganh
Koh, Poh Koon
Zhang, Tong
Ying, Jackie Y.
Lim, Bing
Tan, Min-Han
Hillmer, Axel M.
author_sort Kong, Say Li
collection PubMed
description Studies on circulating tumor cells (CTCs) have largely focused on platform development and CTC enumeration rather than on the genomic characterization of CTCs. To address this, we performed targeted sequencing of CTCs of colorectal cancer patients and compared the mutations with the matched primary tumors. We collected preoperative blood and matched primary tumor samples from 48 colorectal cancer patients. CTCs were isolated using a label-free microfiltration device on a silicon microsieve. Upon whole genome amplification, we performed amplicon-based targeted sequencing on a panel of 39 druggable and frequently mutated genes on both CTCs and fresh-frozen tumor samples. We developed an analysis pipeline to minimize false-positive detection of somatic mutations in amplified DNA. In 60% of the CTC-enriched blood samples, we detected primary tumor matching mutations. We found a significant positive correlation between the allele frequencies of somatic mutations detected in CTCs and abnormal CEA serum level. Strikingly, we found driver mutations and amplifications in cancer and druggable genes such as APC, KRAS, TP53, ERBB3, FBXW7 and ERBB2. In addition, we found that CTCs carried mutation signatures that resembled the signatures of their primary tumors. Cumulatively, our study defined genetic signatures and somatic mutation frequency of colorectal CTCs. The identification of druggable mutations in CTCs of preoperative colorectal cancer patients could lead to more timely and focused therapeutic interventions.
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spelling pubmed-56202332017-10-03 Molecular characterization of circulating colorectal tumor cells defines genetic signatures for individualized cancer care Kong, Say Li Liu, Xingliang Suhaimi, Nur-Afidah Mohamed Koh, Kenneth Jia Hao Hu, Min Lee, Daniel Yoke San Cima, Igor Phyo, Wai Min Lee, Esther Xing Wei Tai, Joyce A. Foong, Yu Miin Vo, Jess Honganh Koh, Poh Koon Zhang, Tong Ying, Jackie Y. Lim, Bing Tan, Min-Han Hillmer, Axel M. Oncotarget Research Paper Studies on circulating tumor cells (CTCs) have largely focused on platform development and CTC enumeration rather than on the genomic characterization of CTCs. To address this, we performed targeted sequencing of CTCs of colorectal cancer patients and compared the mutations with the matched primary tumors. We collected preoperative blood and matched primary tumor samples from 48 colorectal cancer patients. CTCs were isolated using a label-free microfiltration device on a silicon microsieve. Upon whole genome amplification, we performed amplicon-based targeted sequencing on a panel of 39 druggable and frequently mutated genes on both CTCs and fresh-frozen tumor samples. We developed an analysis pipeline to minimize false-positive detection of somatic mutations in amplified DNA. In 60% of the CTC-enriched blood samples, we detected primary tumor matching mutations. We found a significant positive correlation between the allele frequencies of somatic mutations detected in CTCs and abnormal CEA serum level. Strikingly, we found driver mutations and amplifications in cancer and druggable genes such as APC, KRAS, TP53, ERBB3, FBXW7 and ERBB2. In addition, we found that CTCs carried mutation signatures that resembled the signatures of their primary tumors. Cumulatively, our study defined genetic signatures and somatic mutation frequency of colorectal CTCs. The identification of druggable mutations in CTCs of preoperative colorectal cancer patients could lead to more timely and focused therapeutic interventions. Impact Journals LLC 2017-07-10 /pmc/articles/PMC5620233/ /pubmed/28978093 http://dx.doi.org/10.18632/oncotarget.19138 Text en Copyright: © 2017 Kong 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
Kong, Say Li
Liu, Xingliang
Suhaimi, Nur-Afidah Mohamed
Koh, Kenneth Jia Hao
Hu, Min
Lee, Daniel Yoke San
Cima, Igor
Phyo, Wai Min
Lee, Esther Xing Wei
Tai, Joyce A.
Foong, Yu Miin
Vo, Jess Honganh
Koh, Poh Koon
Zhang, Tong
Ying, Jackie Y.
Lim, Bing
Tan, Min-Han
Hillmer, Axel M.
Molecular characterization of circulating colorectal tumor cells defines genetic signatures for individualized cancer care
title Molecular characterization of circulating colorectal tumor cells defines genetic signatures for individualized cancer care
title_full Molecular characterization of circulating colorectal tumor cells defines genetic signatures for individualized cancer care
title_fullStr Molecular characterization of circulating colorectal tumor cells defines genetic signatures for individualized cancer care
title_full_unstemmed Molecular characterization of circulating colorectal tumor cells defines genetic signatures for individualized cancer care
title_short Molecular characterization of circulating colorectal tumor cells defines genetic signatures for individualized cancer care
title_sort molecular characterization of circulating colorectal tumor cells defines genetic signatures for individualized cancer care
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5620233/
https://www.ncbi.nlm.nih.gov/pubmed/28978093
http://dx.doi.org/10.18632/oncotarget.19138
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