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EpCAM based capture detects and recovers circulating tumor cells from all subtypes of breast cancer except claudin-low

PURPOSE: The potential utility of circulating tumor cells (CTCs) as liquid biopsies is of great interest. We hypothesized that CTC capture using EpCAM based gating is feasible for most breast cancer subtypes. RESULTS: Cancer cells could be recovered from all intrinsic subtypes of breast cancer with...

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Autores principales: Ring, Alexander, Mineyev, Neal, Zhu, Weizhu, Park, Emily, Lomas, Chip, Punj, Vasu, Yu, Min, Barrak, Dany, Forte, Victoria, Porras, Tania, Tripathy, Debu, Lang, Julie E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4792580/
https://www.ncbi.nlm.nih.gov/pubmed/26556851
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author Ring, Alexander
Mineyev, Neal
Zhu, Weizhu
Park, Emily
Lomas, Chip
Punj, Vasu
Yu, Min
Barrak, Dany
Forte, Victoria
Porras, Tania
Tripathy, Debu
Lang, Julie E.
author_facet Ring, Alexander
Mineyev, Neal
Zhu, Weizhu
Park, Emily
Lomas, Chip
Punj, Vasu
Yu, Min
Barrak, Dany
Forte, Victoria
Porras, Tania
Tripathy, Debu
Lang, Julie E.
author_sort Ring, Alexander
collection PubMed
description PURPOSE: The potential utility of circulating tumor cells (CTCs) as liquid biopsies is of great interest. We hypothesized that CTC capture using EpCAM based gating is feasible for most breast cancer subtypes. RESULTS: Cancer cells could be recovered from all intrinsic subtypes of breast cancer with IE/FACS, however, claudin-low cell lines showed very low capture rates compared to the four other groups (p = 0.03). IE/FACS detection of CTC mimic cells was time sensitive, emphasizing controlling for pre-analytic variables in CTC studies. Median fluorescent intensity for flow cytometry and RNA flow cell type characterization were highly correlated, predicting for CTC isolation across molecular subtypes. RNA-Seq of IE/FACS sorted single cell equivalents showed high correlation compared to bulk cell lines, and distinct gene expression signatures compared to PB. MATERIALS AND METHODS: Ten cell lines representing all major subtypes of breast cancer were spiked (as CTC mimics) into and recovered from peripheral blood (PB) using immunomagnetic enrichment followed by fluorescence-activated cell sorting (IE/FACS). Flow cytometry and RNA flow were used to quantify the expression of multiple breast cancer related markers of interest. Two different RNA-Seq technologies were used to analyze global gene expression of recovered sorted cells compared to bulk cell lines and PB. CONCLUSIONS: EpCAM based IE/FACS detected and captured a portion of spiked cells from each of the 10 cell lines representing all breast cancer subtypes, including basal-like but not claudin-low cancers. The assay allows for the isolation of high quality RNA suitable for accurate RNA-Seq of heterogeneous rare cell populations.
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spelling pubmed-47925802016-03-29 EpCAM based capture detects and recovers circulating tumor cells from all subtypes of breast cancer except claudin-low Ring, Alexander Mineyev, Neal Zhu, Weizhu Park, Emily Lomas, Chip Punj, Vasu Yu, Min Barrak, Dany Forte, Victoria Porras, Tania Tripathy, Debu Lang, Julie E. Oncotarget Research Paper PURPOSE: The potential utility of circulating tumor cells (CTCs) as liquid biopsies is of great interest. We hypothesized that CTC capture using EpCAM based gating is feasible for most breast cancer subtypes. RESULTS: Cancer cells could be recovered from all intrinsic subtypes of breast cancer with IE/FACS, however, claudin-low cell lines showed very low capture rates compared to the four other groups (p = 0.03). IE/FACS detection of CTC mimic cells was time sensitive, emphasizing controlling for pre-analytic variables in CTC studies. Median fluorescent intensity for flow cytometry and RNA flow cell type characterization were highly correlated, predicting for CTC isolation across molecular subtypes. RNA-Seq of IE/FACS sorted single cell equivalents showed high correlation compared to bulk cell lines, and distinct gene expression signatures compared to PB. MATERIALS AND METHODS: Ten cell lines representing all major subtypes of breast cancer were spiked (as CTC mimics) into and recovered from peripheral blood (PB) using immunomagnetic enrichment followed by fluorescence-activated cell sorting (IE/FACS). Flow cytometry and RNA flow were used to quantify the expression of multiple breast cancer related markers of interest. Two different RNA-Seq technologies were used to analyze global gene expression of recovered sorted cells compared to bulk cell lines and PB. CONCLUSIONS: EpCAM based IE/FACS detected and captured a portion of spiked cells from each of the 10 cell lines representing all breast cancer subtypes, including basal-like but not claudin-low cancers. The assay allows for the isolation of high quality RNA suitable for accurate RNA-Seq of heterogeneous rare cell populations. Impact Journals LLC 2015-10-19 /pmc/articles/PMC4792580/ /pubmed/26556851 Text en Copyright: © 2015 Ring 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
Ring, Alexander
Mineyev, Neal
Zhu, Weizhu
Park, Emily
Lomas, Chip
Punj, Vasu
Yu, Min
Barrak, Dany
Forte, Victoria
Porras, Tania
Tripathy, Debu
Lang, Julie E.
EpCAM based capture detects and recovers circulating tumor cells from all subtypes of breast cancer except claudin-low
title EpCAM based capture detects and recovers circulating tumor cells from all subtypes of breast cancer except claudin-low
title_full EpCAM based capture detects and recovers circulating tumor cells from all subtypes of breast cancer except claudin-low
title_fullStr EpCAM based capture detects and recovers circulating tumor cells from all subtypes of breast cancer except claudin-low
title_full_unstemmed EpCAM based capture detects and recovers circulating tumor cells from all subtypes of breast cancer except claudin-low
title_short EpCAM based capture detects and recovers circulating tumor cells from all subtypes of breast cancer except claudin-low
title_sort epcam based capture detects and recovers circulating tumor cells from all subtypes of breast cancer except claudin-low
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4792580/
https://www.ncbi.nlm.nih.gov/pubmed/26556851
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