Genomic comparison of early-passage conditionally reprogrammed breast cancer cells to their corresponding primary tumors.

Conditionally reprogrammed cells (CRCs) are epithelial cells that are directly isolated from patients' specimens and propagated in vitro with feeder cells and a Rho kinase inhibitor. A number of these cells have been generated from biopsies of breast cancer patients, including ductal carcinoma...

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Main Authors: Akanksha S Mahajan, Bruna M Sugita, Anju N Duttargi, Francisco Saenz, Ewa Krawczyk, Justine N McCutcheon, Aline S Fonseca, Bhaskar Kallakury, Paula Pohlmann, Yuriy Gusev, Luciane R Cavalli
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5648156?pdf=render
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spelling doaj-975c4cbbb10c42228bd5e3dae6f4cf332020-11-24T20:50:00ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-011210e018619010.1371/journal.pone.0186190Genomic comparison of early-passage conditionally reprogrammed breast cancer cells to their corresponding primary tumors.Akanksha S MahajanBruna M SugitaAnju N DuttargiFrancisco SaenzEwa KrawczykJustine N McCutcheonAline S FonsecaBhaskar KallakuryPaula PohlmannYuriy GusevLuciane R CavalliConditionally reprogrammed cells (CRCs) are epithelial cells that are directly isolated from patients' specimens and propagated in vitro with feeder cells and a Rho kinase inhibitor. A number of these cells have been generated from biopsies of breast cancer patients, including ductal carcinoma in situ and invasive carcinomas. The characterization of their genomic signatures is essential to determine their ability to reflect the natural biology of their tumors of origin. In this study, we performed the genomic characterization of six newly established invasive breast cancer CRC cultures in comparison to the original patients' primary breast tumors (PBT) from which they derived. The CRCs and corresponding PBTs were simultaneously profiled by genome-wide array-CGH, targeted next generation sequencing and global miRNA expression to determine their molecular similarities in the patterns of copy number alterations (CNAs), gene mutations and miRNA expression levels, respectively. The CRCs' epithelial cells content and ploidy levels were also evaluated by flow cytometry. A similar level of CNAs was observed in the pairs of CRCs/PBTs analyzed by array-CGH, with >95% of overlap for the most frequently affected cytobands. Consistently, targeted next generation sequencing analysis showed the retention of specific somatic variants in the CRCs as present in their original PBTs. Global miRNA profiling closely clustered the CRCs with their PBTs (Pearson Correlation, ANOVA paired test, P<0.05), indicating also similarity at the miRNA expression level; the retention of tumor-specific alterations in a subset of miRNAs in the CRCs was further confirmed by qRT-PCR. These data demonstrated that the human breast cancer CRCs of this study maintained at early passages the overall copy number, gene mutations and miRNA expression patterns of their original tumors. The further characterization of these cells by other molecular and cellular phenotypes at late cell passages, are required to further expand their use as a unique and representative ex-vivo tumor model for basic science and translational breast cancer studies.http://europepmc.org/articles/PMC5648156?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Akanksha S Mahajan
Bruna M Sugita
Anju N Duttargi
Francisco Saenz
Ewa Krawczyk
Justine N McCutcheon
Aline S Fonseca
Bhaskar Kallakury
Paula Pohlmann
Yuriy Gusev
Luciane R Cavalli
spellingShingle Akanksha S Mahajan
Bruna M Sugita
Anju N Duttargi
Francisco Saenz
Ewa Krawczyk
Justine N McCutcheon
Aline S Fonseca
Bhaskar Kallakury
Paula Pohlmann
Yuriy Gusev
Luciane R Cavalli
Genomic comparison of early-passage conditionally reprogrammed breast cancer cells to their corresponding primary tumors.
PLoS ONE
author_facet Akanksha S Mahajan
Bruna M Sugita
Anju N Duttargi
Francisco Saenz
Ewa Krawczyk
Justine N McCutcheon
Aline S Fonseca
Bhaskar Kallakury
Paula Pohlmann
Yuriy Gusev
Luciane R Cavalli
author_sort Akanksha S Mahajan
title Genomic comparison of early-passage conditionally reprogrammed breast cancer cells to their corresponding primary tumors.
title_short Genomic comparison of early-passage conditionally reprogrammed breast cancer cells to their corresponding primary tumors.
title_full Genomic comparison of early-passage conditionally reprogrammed breast cancer cells to their corresponding primary tumors.
title_fullStr Genomic comparison of early-passage conditionally reprogrammed breast cancer cells to their corresponding primary tumors.
title_full_unstemmed Genomic comparison of early-passage conditionally reprogrammed breast cancer cells to their corresponding primary tumors.
title_sort genomic comparison of early-passage conditionally reprogrammed breast cancer cells to their corresponding primary tumors.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Conditionally reprogrammed cells (CRCs) are epithelial cells that are directly isolated from patients' specimens and propagated in vitro with feeder cells and a Rho kinase inhibitor. A number of these cells have been generated from biopsies of breast cancer patients, including ductal carcinoma in situ and invasive carcinomas. The characterization of their genomic signatures is essential to determine their ability to reflect the natural biology of their tumors of origin. In this study, we performed the genomic characterization of six newly established invasive breast cancer CRC cultures in comparison to the original patients' primary breast tumors (PBT) from which they derived. The CRCs and corresponding PBTs were simultaneously profiled by genome-wide array-CGH, targeted next generation sequencing and global miRNA expression to determine their molecular similarities in the patterns of copy number alterations (CNAs), gene mutations and miRNA expression levels, respectively. The CRCs' epithelial cells content and ploidy levels were also evaluated by flow cytometry. A similar level of CNAs was observed in the pairs of CRCs/PBTs analyzed by array-CGH, with >95% of overlap for the most frequently affected cytobands. Consistently, targeted next generation sequencing analysis showed the retention of specific somatic variants in the CRCs as present in their original PBTs. Global miRNA profiling closely clustered the CRCs with their PBTs (Pearson Correlation, ANOVA paired test, P<0.05), indicating also similarity at the miRNA expression level; the retention of tumor-specific alterations in a subset of miRNAs in the CRCs was further confirmed by qRT-PCR. These data demonstrated that the human breast cancer CRCs of this study maintained at early passages the overall copy number, gene mutations and miRNA expression patterns of their original tumors. The further characterization of these cells by other molecular and cellular phenotypes at late cell passages, are required to further expand their use as a unique and representative ex-vivo tumor model for basic science and translational breast cancer studies.
url http://europepmc.org/articles/PMC5648156?pdf=render
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