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Heterotypic paracrine signaling drives fibroblast senescence and tumor progression of large cell carcinoma of the lung

Senescence in cancer cells acts as a tumor suppressor, whereas in fibroblasts enhances tumor growth. Senescence has been reported in tumor associated fibroblasts (TAFs) from a growing list of cancer subtypes. However, the presence of senescent TAFs in lung cancer remains undefined. We examined senes...

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Autores principales: Lugo, Roberto, Gabasa, Marta, Andriani, Francesca, Puig, Marta, Facchinetti, Federica, Ramírez, Josep, Gómez-Caro, Abel, Pastorino, Ugo, Fuster, Gemma, Almendros, Isaac, Gascón, Pere, Davalos, Albert, Reguart, Noemí, Roz, Luca, Alcaraz, Jordi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5347694/
https://www.ncbi.nlm.nih.gov/pubmed/27384989
http://dx.doi.org/10.18632/oncotarget.10327
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author Lugo, Roberto
Gabasa, Marta
Andriani, Francesca
Puig, Marta
Facchinetti, Federica
Ramírez, Josep
Gómez-Caro, Abel
Pastorino, Ugo
Fuster, Gemma
Almendros, Isaac
Gascón, Pere
Davalos, Albert
Reguart, Noemí
Roz, Luca
Alcaraz, Jordi
author_facet Lugo, Roberto
Gabasa, Marta
Andriani, Francesca
Puig, Marta
Facchinetti, Federica
Ramírez, Josep
Gómez-Caro, Abel
Pastorino, Ugo
Fuster, Gemma
Almendros, Isaac
Gascón, Pere
Davalos, Albert
Reguart, Noemí
Roz, Luca
Alcaraz, Jordi
author_sort Lugo, Roberto
collection PubMed
description Senescence in cancer cells acts as a tumor suppressor, whereas in fibroblasts enhances tumor growth. Senescence has been reported in tumor associated fibroblasts (TAFs) from a growing list of cancer subtypes. However, the presence of senescent TAFs in lung cancer remains undefined. We examined senescence in TAFs from primary lung cancer and paired control fibroblasts from unaffected tissue in three major histologic subtypes: adenocarcinoma (ADC), squamous cell carcinoma (SCC) and large cell carcinoma (LCC). Three independent senescence markers (senescence-associated beta-galactosidase, permanent growth arrest and spreading) were consistently observed in cultured LCC-TAFs only, revealing a selective premature senescence. Intriguingly, SCC-TAFs exhibited a poor growth response in the absence of senescence markers, indicating a dysfunctional phenotype rather than senescence. Co-culturing normal fibroblasts with LCC (but not ADC or SCC) cancer cells was sufficient to render fibroblasts senescent through oxidative stress, indicating that senescence in LCC-TAFs is driven by heterotypic signaling. In addition, senescent fibroblasts provided selective growth and invasive advantages to LCC cells in culture compared to normal fibroblasts. Likewise, senescent fibroblasts enhanced tumor growth and lung dissemination of tumor cells when co-injected with LCC cells in nude mice beyond the effects induced by control fibroblasts. These results define the subtype-specific aberrant phenotypes of lung TAFs, thereby challenging the common assumption that lung TAFs are a heterogeneous myofibroblast-like cell population regardless of their subtype. Importantly, because LCC often distinguishes itself in the clinic by its aggressive nature, we argue that senescent TAFs may contribute to the selective aggressive behavior of LCC tumors.
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spelling pubmed-53476942017-03-31 Heterotypic paracrine signaling drives fibroblast senescence and tumor progression of large cell carcinoma of the lung Lugo, Roberto Gabasa, Marta Andriani, Francesca Puig, Marta Facchinetti, Federica Ramírez, Josep Gómez-Caro, Abel Pastorino, Ugo Fuster, Gemma Almendros, Isaac Gascón, Pere Davalos, Albert Reguart, Noemí Roz, Luca Alcaraz, Jordi Oncotarget Research Paper Senescence in cancer cells acts as a tumor suppressor, whereas in fibroblasts enhances tumor growth. Senescence has been reported in tumor associated fibroblasts (TAFs) from a growing list of cancer subtypes. However, the presence of senescent TAFs in lung cancer remains undefined. We examined senescence in TAFs from primary lung cancer and paired control fibroblasts from unaffected tissue in three major histologic subtypes: adenocarcinoma (ADC), squamous cell carcinoma (SCC) and large cell carcinoma (LCC). Three independent senescence markers (senescence-associated beta-galactosidase, permanent growth arrest and spreading) were consistently observed in cultured LCC-TAFs only, revealing a selective premature senescence. Intriguingly, SCC-TAFs exhibited a poor growth response in the absence of senescence markers, indicating a dysfunctional phenotype rather than senescence. Co-culturing normal fibroblasts with LCC (but not ADC or SCC) cancer cells was sufficient to render fibroblasts senescent through oxidative stress, indicating that senescence in LCC-TAFs is driven by heterotypic signaling. In addition, senescent fibroblasts provided selective growth and invasive advantages to LCC cells in culture compared to normal fibroblasts. Likewise, senescent fibroblasts enhanced tumor growth and lung dissemination of tumor cells when co-injected with LCC cells in nude mice beyond the effects induced by control fibroblasts. These results define the subtype-specific aberrant phenotypes of lung TAFs, thereby challenging the common assumption that lung TAFs are a heterogeneous myofibroblast-like cell population regardless of their subtype. Importantly, because LCC often distinguishes itself in the clinic by its aggressive nature, we argue that senescent TAFs may contribute to the selective aggressive behavior of LCC tumors. Impact Journals LLC 2016-06-30 /pmc/articles/PMC5347694/ /pubmed/27384989 http://dx.doi.org/10.18632/oncotarget.10327 Text en Copyright: © 2016 Lugo et al. http://creativecommons.org/licenses/by/3.0/ 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 credited.
spellingShingle Research Paper
Lugo, Roberto
Gabasa, Marta
Andriani, Francesca
Puig, Marta
Facchinetti, Federica
Ramírez, Josep
Gómez-Caro, Abel
Pastorino, Ugo
Fuster, Gemma
Almendros, Isaac
Gascón, Pere
Davalos, Albert
Reguart, Noemí
Roz, Luca
Alcaraz, Jordi
Heterotypic paracrine signaling drives fibroblast senescence and tumor progression of large cell carcinoma of the lung
title Heterotypic paracrine signaling drives fibroblast senescence and tumor progression of large cell carcinoma of the lung
title_full Heterotypic paracrine signaling drives fibroblast senescence and tumor progression of large cell carcinoma of the lung
title_fullStr Heterotypic paracrine signaling drives fibroblast senescence and tumor progression of large cell carcinoma of the lung
title_full_unstemmed Heterotypic paracrine signaling drives fibroblast senescence and tumor progression of large cell carcinoma of the lung
title_short Heterotypic paracrine signaling drives fibroblast senescence and tumor progression of large cell carcinoma of the lung
title_sort heterotypic paracrine signaling drives fibroblast senescence and tumor progression of large cell carcinoma of the lung
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5347694/
https://www.ncbi.nlm.nih.gov/pubmed/27384989
http://dx.doi.org/10.18632/oncotarget.10327
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