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Sphere-derived tumor cells exhibit impaired metastasis by a host-mediated quiescent phenotype

The spread of lung cancer cells to distant sites represents a common event associated with poor prognosis. A fraction of tumor cells named cancer stem cells (CSCs) have the ability to overcome therapeutic stress and remain quiescent. However, whether these CSCs have also the capacity to initiate and...

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Autores principales: Bleau, Anne-Marie, Zandueta, Carolina, Redrado, Miriam, Martínez-Canarias, Susana, Larzábal, Leyre, Montuenga, Luis M., Calvo, Alfonso, Lecanda, Fernando
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694990/
https://www.ncbi.nlm.nih.gov/pubmed/26318423
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author Bleau, Anne-Marie
Zandueta, Carolina
Redrado, Miriam
Martínez-Canarias, Susana
Larzábal, Leyre
Montuenga, Luis M.
Calvo, Alfonso
Lecanda, Fernando
author_facet Bleau, Anne-Marie
Zandueta, Carolina
Redrado, Miriam
Martínez-Canarias, Susana
Larzábal, Leyre
Montuenga, Luis M.
Calvo, Alfonso
Lecanda, Fernando
author_sort Bleau, Anne-Marie
collection PubMed
description The spread of lung cancer cells to distant sites represents a common event associated with poor prognosis. A fraction of tumor cells named cancer stem cells (CSCs) have the ability to overcome therapeutic stress and remain quiescent. However, whether these CSCs have also the capacity to initiate and sustain metastasis remains unclear. Here, we used tumor sphere cultures (TSC) isolated from mouse and human lung cancer models to enrich for CSCs, and assessed their metastatic potential as compared to non-CSCs. As expected, TSC overexpressed a variety of stem cell markers and displayed chemoresistance. The CSC phenotype of TSC was confirmed by their higher growth ability in soft agar and tumorigenic potential in vivo, despite their reduced in vitro cell growth kinetics. Surprisingly, the appearance of spontaneous lung metastases was strongly delayed in mice injected with TSC as compared to non-TSC cells. Similarly, this finding was confirmed in several other models of metastasis, an effect associated with a retarded colonization activity. Interestingly, such delay correlated with a quiescent phenotype whose underlined mechanisms included an increase in p27 protein and lower phospho-ERK1/2 levels. Thus, these data suggest that cells enriched for CSC properties display an impaired metastatic activity, a finding with potential clinical implications.
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spelling pubmed-46949902016-01-20 Sphere-derived tumor cells exhibit impaired metastasis by a host-mediated quiescent phenotype Bleau, Anne-Marie Zandueta, Carolina Redrado, Miriam Martínez-Canarias, Susana Larzábal, Leyre Montuenga, Luis M. Calvo, Alfonso Lecanda, Fernando Oncotarget Research Paper The spread of lung cancer cells to distant sites represents a common event associated with poor prognosis. A fraction of tumor cells named cancer stem cells (CSCs) have the ability to overcome therapeutic stress and remain quiescent. However, whether these CSCs have also the capacity to initiate and sustain metastasis remains unclear. Here, we used tumor sphere cultures (TSC) isolated from mouse and human lung cancer models to enrich for CSCs, and assessed their metastatic potential as compared to non-CSCs. As expected, TSC overexpressed a variety of stem cell markers and displayed chemoresistance. The CSC phenotype of TSC was confirmed by their higher growth ability in soft agar and tumorigenic potential in vivo, despite their reduced in vitro cell growth kinetics. Surprisingly, the appearance of spontaneous lung metastases was strongly delayed in mice injected with TSC as compared to non-TSC cells. Similarly, this finding was confirmed in several other models of metastasis, an effect associated with a retarded colonization activity. Interestingly, such delay correlated with a quiescent phenotype whose underlined mechanisms included an increase in p27 protein and lower phospho-ERK1/2 levels. Thus, these data suggest that cells enriched for CSC properties display an impaired metastatic activity, a finding with potential clinical implications. Impact Journals LLC 2015-08-07 /pmc/articles/PMC4694990/ /pubmed/26318423 Text en Copyright: © 2015 Bleau 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
Bleau, Anne-Marie
Zandueta, Carolina
Redrado, Miriam
Martínez-Canarias, Susana
Larzábal, Leyre
Montuenga, Luis M.
Calvo, Alfonso
Lecanda, Fernando
Sphere-derived tumor cells exhibit impaired metastasis by a host-mediated quiescent phenotype
title Sphere-derived tumor cells exhibit impaired metastasis by a host-mediated quiescent phenotype
title_full Sphere-derived tumor cells exhibit impaired metastasis by a host-mediated quiescent phenotype
title_fullStr Sphere-derived tumor cells exhibit impaired metastasis by a host-mediated quiescent phenotype
title_full_unstemmed Sphere-derived tumor cells exhibit impaired metastasis by a host-mediated quiescent phenotype
title_short Sphere-derived tumor cells exhibit impaired metastasis by a host-mediated quiescent phenotype
title_sort sphere-derived tumor cells exhibit impaired metastasis by a host-mediated quiescent phenotype
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694990/
https://www.ncbi.nlm.nih.gov/pubmed/26318423
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