Cargando…

Characterization of single disseminated prostate cancer cells reveals tumor cell heterogeneity and identifies dormancy associated pathways

Cancer dormancy refers to the prolonged clinical disease-free time between removal of the primary tumor and recurrence, which is common in prostate cancer (PCa), breast cancer, esophageal cancer, and other cancers. PCa disseminated tumor cells (DTC) are detected in both patients with no evidence of...

Descripción completa

Detalles Bibliográficos
Autores principales: Chéry, Lisly, Lam, Hung-Ming, Coleman, Ilsa, Lakely, Bryce, Coleman, Roger, Larson, Sandy, Aguirre-Ghiso, Julio A., Xia, Jing, Gulati, Roman, Nelson, Peter S., Montgomery, Bruce, Lange, Paul, Snyder, Linda A., Vessella, Robert L., Morrissey, Colm
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4259449/
https://www.ncbi.nlm.nih.gov/pubmed/25301725
_version_ 1782348018672992256
author Chéry, Lisly
Lam, Hung-Ming
Coleman, Ilsa
Lakely, Bryce
Coleman, Roger
Larson, Sandy
Aguirre-Ghiso, Julio A.
Xia, Jing
Gulati, Roman
Nelson, Peter S.
Montgomery, Bruce
Lange, Paul
Snyder, Linda A.
Vessella, Robert L.
Morrissey, Colm
author_facet Chéry, Lisly
Lam, Hung-Ming
Coleman, Ilsa
Lakely, Bryce
Coleman, Roger
Larson, Sandy
Aguirre-Ghiso, Julio A.
Xia, Jing
Gulati, Roman
Nelson, Peter S.
Montgomery, Bruce
Lange, Paul
Snyder, Linda A.
Vessella, Robert L.
Morrissey, Colm
author_sort Chéry, Lisly
collection PubMed
description Cancer dormancy refers to the prolonged clinical disease-free time between removal of the primary tumor and recurrence, which is common in prostate cancer (PCa), breast cancer, esophageal cancer, and other cancers. PCa disseminated tumor cells (DTC) are detected in both patients with no evidence of disease (NED) and advanced disease (ADV). However, the molecular and cellular nature of DTC is unknown. We performed a first-in-field study of single DTC transcriptomic analyses in cancer patients to identify a molecular signature associated with cancer dormancy. We profiled eighty-five individual EpCAM(+)/CD45(−) cells from the bone marrow of PCa patients with NED or ADV. We analyzed 44 DTC with high prostate-epithelial signatures, and eliminated 41 cells with high erythroid signatures and low prostate epithelial signatures. DTC were clustered into 3 groups: NED, ADV_1, and ADV_2, in which the ADV_1 group presented a distinct gene expression pattern associated with the p38 stress activated kinase pathway. Additionally, DTC from the NED group were enriched for a tumor dormancy signature associated with head and neck squamous carcinoma and breast cancer. This study provides the first clinical evidence of the p38 pathway as a potential biomarker for early recurrence and an attractive target for therapeutic intervention.
format Online
Article
Text
id pubmed-4259449
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-42594492014-12-10 Characterization of single disseminated prostate cancer cells reveals tumor cell heterogeneity and identifies dormancy associated pathways Chéry, Lisly Lam, Hung-Ming Coleman, Ilsa Lakely, Bryce Coleman, Roger Larson, Sandy Aguirre-Ghiso, Julio A. Xia, Jing Gulati, Roman Nelson, Peter S. Montgomery, Bruce Lange, Paul Snyder, Linda A. Vessella, Robert L. Morrissey, Colm Oncotarget Research Paper Cancer dormancy refers to the prolonged clinical disease-free time between removal of the primary tumor and recurrence, which is common in prostate cancer (PCa), breast cancer, esophageal cancer, and other cancers. PCa disseminated tumor cells (DTC) are detected in both patients with no evidence of disease (NED) and advanced disease (ADV). However, the molecular and cellular nature of DTC is unknown. We performed a first-in-field study of single DTC transcriptomic analyses in cancer patients to identify a molecular signature associated with cancer dormancy. We profiled eighty-five individual EpCAM(+)/CD45(−) cells from the bone marrow of PCa patients with NED or ADV. We analyzed 44 DTC with high prostate-epithelial signatures, and eliminated 41 cells with high erythroid signatures and low prostate epithelial signatures. DTC were clustered into 3 groups: NED, ADV_1, and ADV_2, in which the ADV_1 group presented a distinct gene expression pattern associated with the p38 stress activated kinase pathway. Additionally, DTC from the NED group were enriched for a tumor dormancy signature associated with head and neck squamous carcinoma and breast cancer. This study provides the first clinical evidence of the p38 pathway as a potential biomarker for early recurrence and an attractive target for therapeutic intervention. Impact Journals LLC 2014-09-16 /pmc/articles/PMC4259449/ /pubmed/25301725 Text en Copyright: © 2014 Chéry 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
Chéry, Lisly
Lam, Hung-Ming
Coleman, Ilsa
Lakely, Bryce
Coleman, Roger
Larson, Sandy
Aguirre-Ghiso, Julio A.
Xia, Jing
Gulati, Roman
Nelson, Peter S.
Montgomery, Bruce
Lange, Paul
Snyder, Linda A.
Vessella, Robert L.
Morrissey, Colm
Characterization of single disseminated prostate cancer cells reveals tumor cell heterogeneity and identifies dormancy associated pathways
title Characterization of single disseminated prostate cancer cells reveals tumor cell heterogeneity and identifies dormancy associated pathways
title_full Characterization of single disseminated prostate cancer cells reveals tumor cell heterogeneity and identifies dormancy associated pathways
title_fullStr Characterization of single disseminated prostate cancer cells reveals tumor cell heterogeneity and identifies dormancy associated pathways
title_full_unstemmed Characterization of single disseminated prostate cancer cells reveals tumor cell heterogeneity and identifies dormancy associated pathways
title_short Characterization of single disseminated prostate cancer cells reveals tumor cell heterogeneity and identifies dormancy associated pathways
title_sort characterization of single disseminated prostate cancer cells reveals tumor cell heterogeneity and identifies dormancy associated pathways
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4259449/
https://www.ncbi.nlm.nih.gov/pubmed/25301725
work_keys_str_mv AT cherylisly characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT lamhungming characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT colemanilsa characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT lakelybryce characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT colemanroger characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT larsonsandy characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT aguirreghisojulioa characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT xiajing characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT gulatiroman characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT nelsonpeters characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT montgomerybruce characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT langepaul characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT snyderlindaa characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT vessellarobertl characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways
AT morrisseycolm characterizationofsingledisseminatedprostatecancercellsrevealstumorcellheterogeneityandidentifiesdormancyassociatedpathways