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Expansion of CTCs from early stage lung cancer patients using a microfluidic co-culture model

The potential utility of circulating tumor cells (CTCs) to guide clinical care in oncology patients has gained momentum with emerging micro- and nanotechnologies. Establishing the role of CTCs in tumor progression and metastasis depends both on enumeration and on obtaining sufficient numbers of CTCs...

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Autores principales: Zhang, Zhuo, Shiratsuchi, Hiroe, Lin, Jules, Chen, Guoan, Reddy, Rishindra M., Azizi, Ebrahim, Fouladdel, Shamileh, Chang, Andrew C., Lin, Lin, Jiang, Hui, Waghray, Meghna, Luker, Gary, Simeone, Diane M., Wicha, Max S., Beer, David G., Ramnath, Nithya, Nagrath, Sunitha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4323004/
https://www.ncbi.nlm.nih.gov/pubmed/25474037
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author Zhang, Zhuo
Shiratsuchi, Hiroe
Lin, Jules
Chen, Guoan
Reddy, Rishindra M.
Azizi, Ebrahim
Fouladdel, Shamileh
Chang, Andrew C.
Lin, Lin
Jiang, Hui
Waghray, Meghna
Luker, Gary
Simeone, Diane M.
Wicha, Max S.
Beer, David G.
Ramnath, Nithya
Nagrath, Sunitha
author_facet Zhang, Zhuo
Shiratsuchi, Hiroe
Lin, Jules
Chen, Guoan
Reddy, Rishindra M.
Azizi, Ebrahim
Fouladdel, Shamileh
Chang, Andrew C.
Lin, Lin
Jiang, Hui
Waghray, Meghna
Luker, Gary
Simeone, Diane M.
Wicha, Max S.
Beer, David G.
Ramnath, Nithya
Nagrath, Sunitha
author_sort Zhang, Zhuo
collection PubMed
description The potential utility of circulating tumor cells (CTCs) to guide clinical care in oncology patients has gained momentum with emerging micro- and nanotechnologies. Establishing the role of CTCs in tumor progression and metastasis depends both on enumeration and on obtaining sufficient numbers of CTCs for downstream assays. The numbers of CTCs are few in early stages of cancer, limiting detailed molecular characterization. Recent attempts in the literature to culture CTCs isolated from metastatic patients using monoculture have had limited success rates of less than 20%. Herein, we have developed a novel in-situ capture and culture methodology for ex-vivo expansion of CTCs using a three dimensional co-culture model, simulating a tumor microenvironment to support tumor development. We have successfully expanded CTCs isolated from 14 of 19 early stage lung cancer patients. Expanded lung CTCs carried mutations of the TP53 gene identical to those observed in the matched primary tumors. Next-generation sequencing further revealed additional matched mutations between primary tumor and CTCs of cancer-related genes. This strategy sets the stage to further characterize the biology of CTCs derived from patients with early lung cancers, thereby leading to a better understanding of these putative drivers of metastasis.
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spelling pubmed-43230042015-02-10 Expansion of CTCs from early stage lung cancer patients using a microfluidic co-culture model Zhang, Zhuo Shiratsuchi, Hiroe Lin, Jules Chen, Guoan Reddy, Rishindra M. Azizi, Ebrahim Fouladdel, Shamileh Chang, Andrew C. Lin, Lin Jiang, Hui Waghray, Meghna Luker, Gary Simeone, Diane M. Wicha, Max S. Beer, David G. Ramnath, Nithya Nagrath, Sunitha Oncotarget Research Paper The potential utility of circulating tumor cells (CTCs) to guide clinical care in oncology patients has gained momentum with emerging micro- and nanotechnologies. Establishing the role of CTCs in tumor progression and metastasis depends both on enumeration and on obtaining sufficient numbers of CTCs for downstream assays. The numbers of CTCs are few in early stages of cancer, limiting detailed molecular characterization. Recent attempts in the literature to culture CTCs isolated from metastatic patients using monoculture have had limited success rates of less than 20%. Herein, we have developed a novel in-situ capture and culture methodology for ex-vivo expansion of CTCs using a three dimensional co-culture model, simulating a tumor microenvironment to support tumor development. We have successfully expanded CTCs isolated from 14 of 19 early stage lung cancer patients. Expanded lung CTCs carried mutations of the TP53 gene identical to those observed in the matched primary tumors. Next-generation sequencing further revealed additional matched mutations between primary tumor and CTCs of cancer-related genes. This strategy sets the stage to further characterize the biology of CTCs derived from patients with early lung cancers, thereby leading to a better understanding of these putative drivers of metastasis. Impact Journals LLC 2014-12-01 /pmc/articles/PMC4323004/ /pubmed/25474037 Text en Copyright: © 2014 Zhang et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited
spellingShingle Research Paper
Zhang, Zhuo
Shiratsuchi, Hiroe
Lin, Jules
Chen, Guoan
Reddy, Rishindra M.
Azizi, Ebrahim
Fouladdel, Shamileh
Chang, Andrew C.
Lin, Lin
Jiang, Hui
Waghray, Meghna
Luker, Gary
Simeone, Diane M.
Wicha, Max S.
Beer, David G.
Ramnath, Nithya
Nagrath, Sunitha
Expansion of CTCs from early stage lung cancer patients using a microfluidic co-culture model
title Expansion of CTCs from early stage lung cancer patients using a microfluidic co-culture model
title_full Expansion of CTCs from early stage lung cancer patients using a microfluidic co-culture model
title_fullStr Expansion of CTCs from early stage lung cancer patients using a microfluidic co-culture model
title_full_unstemmed Expansion of CTCs from early stage lung cancer patients using a microfluidic co-culture model
title_short Expansion of CTCs from early stage lung cancer patients using a microfluidic co-culture model
title_sort expansion of ctcs from early stage lung cancer patients using a microfluidic co-culture model
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4323004/
https://www.ncbi.nlm.nih.gov/pubmed/25474037
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