Cargando…

Invading Basement Membrane Matrix Is Sufficient for MDA-MB-231 Breast Cancer Cells to Develop a Stable In Vivo Metastatic Phenotype

INTRODUCTION: The poor efficacy of various anti-cancer treatments against metastatic cells has focused attention on the role of tumor microenvironment in cancer progression. To understand the contribution of the extracellular matrix (ECM) environment to this phenomenon, we isolated ECM surrogate inv...

Descripción completa

Detalles Bibliográficos
Autores principales: Abdelkarim, Mohamed, Vintonenko, Nadejda, Starzec, Anna, Robles, Aniela, Aubert, Julie, Martin, Marie-Laure, Mourah, Samia, Podgorniak, Marie-Pierre, Rodrigues-Ferreira, Sylvie, Nahmias, Clara, Couraud, Pierre-Olivier, Doliger, Christelle, Sainte-Catherine, Odile, Peyri, Nicole, Chen, Lei, Mariau, Jérémie, Etienne, Monique, Perret, Gerard-Yves, Crepin, Michel, Poyet, Jean-Luc, Khatib, Abdel-Majid, Di Benedetto, Mélanie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3156115/
https://www.ncbi.nlm.nih.gov/pubmed/21858074
http://dx.doi.org/10.1371/journal.pone.0023334
_version_ 1782210175899271168
author Abdelkarim, Mohamed
Vintonenko, Nadejda
Starzec, Anna
Robles, Aniela
Aubert, Julie
Martin, Marie-Laure
Mourah, Samia
Podgorniak, Marie-Pierre
Rodrigues-Ferreira, Sylvie
Nahmias, Clara
Couraud, Pierre-Olivier
Doliger, Christelle
Sainte-Catherine, Odile
Peyri, Nicole
Chen, Lei
Mariau, Jérémie
Etienne, Monique
Perret, Gerard-Yves
Crepin, Michel
Poyet, Jean-Luc
Khatib, Abdel-Majid
Di Benedetto, Mélanie
author_facet Abdelkarim, Mohamed
Vintonenko, Nadejda
Starzec, Anna
Robles, Aniela
Aubert, Julie
Martin, Marie-Laure
Mourah, Samia
Podgorniak, Marie-Pierre
Rodrigues-Ferreira, Sylvie
Nahmias, Clara
Couraud, Pierre-Olivier
Doliger, Christelle
Sainte-Catherine, Odile
Peyri, Nicole
Chen, Lei
Mariau, Jérémie
Etienne, Monique
Perret, Gerard-Yves
Crepin, Michel
Poyet, Jean-Luc
Khatib, Abdel-Majid
Di Benedetto, Mélanie
author_sort Abdelkarim, Mohamed
collection PubMed
description INTRODUCTION: The poor efficacy of various anti-cancer treatments against metastatic cells has focused attention on the role of tumor microenvironment in cancer progression. To understand the contribution of the extracellular matrix (ECM) environment to this phenomenon, we isolated ECM surrogate invading cell populations from MDA-MB-231 breast cancer cells and studied their genotype and malignant phenotype. METHODS: We isolated invasive subpopulations (INV) from non invasive populations (REF) using a 2D-Matrigel assay, a surrogate of basal membrane passage. INV and REF populations were investigated by microarray assay and for their capacities to adhere, invade and transmigrate in vitro, and to form metastases in nude mice. RESULTS: REF and INV subpopulations were stable in culture and present different transcriptome profiles. INV cells were characterized by reduced expression of cell adhesion and cell-cell junction genes (44% of down regulated genes) and by a gain in expression of anti-apoptotic and pro-angiogenic gene sets. In line with this observation, in vitro INV cells showed reduced adhesion and increased motility through endothelial monolayers and fibronectin. When injected into the circulation, INV cells induced metastases formation, and reduced injected mice survival by up to 80% as compared to REF cells. In nude mice, INV xenografts grew rapidly inducing vessel formation and displaying resistance to apoptosis. CONCLUSION: Our findings reveal that the in vitro ECM microenvironment per se was sufficient to select for tumor cells with a stable metastatic phenotype in vivo characterized by loss of adhesion molecules expression and induction of pro-angiogenic and survival factors.
format Online
Article
Text
id pubmed-3156115
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31561152011-08-19 Invading Basement Membrane Matrix Is Sufficient for MDA-MB-231 Breast Cancer Cells to Develop a Stable In Vivo Metastatic Phenotype Abdelkarim, Mohamed Vintonenko, Nadejda Starzec, Anna Robles, Aniela Aubert, Julie Martin, Marie-Laure Mourah, Samia Podgorniak, Marie-Pierre Rodrigues-Ferreira, Sylvie Nahmias, Clara Couraud, Pierre-Olivier Doliger, Christelle Sainte-Catherine, Odile Peyri, Nicole Chen, Lei Mariau, Jérémie Etienne, Monique Perret, Gerard-Yves Crepin, Michel Poyet, Jean-Luc Khatib, Abdel-Majid Di Benedetto, Mélanie PLoS One Research Article INTRODUCTION: The poor efficacy of various anti-cancer treatments against metastatic cells has focused attention on the role of tumor microenvironment in cancer progression. To understand the contribution of the extracellular matrix (ECM) environment to this phenomenon, we isolated ECM surrogate invading cell populations from MDA-MB-231 breast cancer cells and studied their genotype and malignant phenotype. METHODS: We isolated invasive subpopulations (INV) from non invasive populations (REF) using a 2D-Matrigel assay, a surrogate of basal membrane passage. INV and REF populations were investigated by microarray assay and for their capacities to adhere, invade and transmigrate in vitro, and to form metastases in nude mice. RESULTS: REF and INV subpopulations were stable in culture and present different transcriptome profiles. INV cells were characterized by reduced expression of cell adhesion and cell-cell junction genes (44% of down regulated genes) and by a gain in expression of anti-apoptotic and pro-angiogenic gene sets. In line with this observation, in vitro INV cells showed reduced adhesion and increased motility through endothelial monolayers and fibronectin. When injected into the circulation, INV cells induced metastases formation, and reduced injected mice survival by up to 80% as compared to REF cells. In nude mice, INV xenografts grew rapidly inducing vessel formation and displaying resistance to apoptosis. CONCLUSION: Our findings reveal that the in vitro ECM microenvironment per se was sufficient to select for tumor cells with a stable metastatic phenotype in vivo characterized by loss of adhesion molecules expression and induction of pro-angiogenic and survival factors. Public Library of Science 2011-08-15 /pmc/articles/PMC3156115/ /pubmed/21858074 http://dx.doi.org/10.1371/journal.pone.0023334 Text en Abdelkarim et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Abdelkarim, Mohamed
Vintonenko, Nadejda
Starzec, Anna
Robles, Aniela
Aubert, Julie
Martin, Marie-Laure
Mourah, Samia
Podgorniak, Marie-Pierre
Rodrigues-Ferreira, Sylvie
Nahmias, Clara
Couraud, Pierre-Olivier
Doliger, Christelle
Sainte-Catherine, Odile
Peyri, Nicole
Chen, Lei
Mariau, Jérémie
Etienne, Monique
Perret, Gerard-Yves
Crepin, Michel
Poyet, Jean-Luc
Khatib, Abdel-Majid
Di Benedetto, Mélanie
Invading Basement Membrane Matrix Is Sufficient for MDA-MB-231 Breast Cancer Cells to Develop a Stable In Vivo Metastatic Phenotype
title Invading Basement Membrane Matrix Is Sufficient for MDA-MB-231 Breast Cancer Cells to Develop a Stable In Vivo Metastatic Phenotype
title_full Invading Basement Membrane Matrix Is Sufficient for MDA-MB-231 Breast Cancer Cells to Develop a Stable In Vivo Metastatic Phenotype
title_fullStr Invading Basement Membrane Matrix Is Sufficient for MDA-MB-231 Breast Cancer Cells to Develop a Stable In Vivo Metastatic Phenotype
title_full_unstemmed Invading Basement Membrane Matrix Is Sufficient for MDA-MB-231 Breast Cancer Cells to Develop a Stable In Vivo Metastatic Phenotype
title_short Invading Basement Membrane Matrix Is Sufficient for MDA-MB-231 Breast Cancer Cells to Develop a Stable In Vivo Metastatic Phenotype
title_sort invading basement membrane matrix is sufficient for mda-mb-231 breast cancer cells to develop a stable in vivo metastatic phenotype
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3156115/
https://www.ncbi.nlm.nih.gov/pubmed/21858074
http://dx.doi.org/10.1371/journal.pone.0023334
work_keys_str_mv AT abdelkarimmohamed invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT vintonenkonadejda invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT starzecanna invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT roblesaniela invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT aubertjulie invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT martinmarielaure invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT mourahsamia invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT podgorniakmariepierre invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT rodriguesferreirasylvie invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT nahmiasclara invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT couraudpierreolivier invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT doligerchristelle invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT saintecatherineodile invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT peyrinicole invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT chenlei invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT mariaujeremie invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT etiennemonique invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT perretgerardyves invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT crepinmichel invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT poyetjeanluc invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT khatibabdelmajid invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype
AT dibenedettomelanie invadingbasementmembranematrixissufficientformdamb231breastcancercellstodevelopastableinvivometastaticphenotype