Lung epithelial cells induce both phenotype alteration and senescence in breast cancer cells.

PURPOSE:The lung is one of the most common sites of breast cancer metastasis. While metastatic seeding is often accompanied by a dormancy-promoting mesenchymal to epithelial reverting transitions (MErT), we aimed to determine whether lung epithelial cells can impart this phenotype on aggressive brea...

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Main Authors: Masashi Furukawa, Sarah Wheeler, Amanda M Clark, Alan Wells
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4311980?pdf=render
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spelling doaj-ca49c6f2554c497b85e6848d3532fd9e2020-11-25T01:27:29ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01101e011806010.1371/journal.pone.0118060Lung epithelial cells induce both phenotype alteration and senescence in breast cancer cells.Masashi FurukawaSarah WheelerAmanda M ClarkAlan WellsPURPOSE:The lung is one of the most common sites of breast cancer metastasis. While metastatic seeding is often accompanied by a dormancy-promoting mesenchymal to epithelial reverting transitions (MErT), we aimed to determine whether lung epithelial cells can impart this phenotype on aggressive breast cancer cells. METHODS:Co-culture experiments of normal lung epithelial cell lines (SAEC, NHBE or BEAS-2B) and breast cancer cell lines (MCF-7 or MDA-MB-231) were conducted. Flow cytometry analysis, immunofluorescence staining for E-cadherin or Ki-67 and senescence associated beta-galactosidase assays assessed breast cancer cell outgrowth and phenotype. RESULTS:Co-culture of the breast cancer cells with the normal lung cells had different effects on the epithelial and mesenchymal carcinoma cells. The epithelial MCF-7 cells were increased in number but still clustered even if in a slightly more mesenchymal-spindle morphology. On the other hand, the mesenchymal MDA-MB-231 cells survived but did not progressively grow out in co-culture. These aggressive carcinoma cells underwent an epithelial shift as indicated by cuboidal morphology and increased E-cadherin. Disruption of E-cadherin expressed in MDA-MB-231 using shRNA prevented this phenotypic reversion in co-culture. Lung cells limited cancer cell growth kinetics as noted by both (1) some of the cells becoming larger and positive for senescence markers/negative for proliferation marker Ki-67, and (2) Ki-67 positive cells significantly decreasing in MDA-MB-231 and MCF-7 cells after co-culture. CONCLUSIONS:Our data indicate that normal lung epithelial cells can drive an epithelial phenotype and suppress the growth kinetics of breast cancer cells coincident with changing their phenotypes.http://europepmc.org/articles/PMC4311980?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Masashi Furukawa
Sarah Wheeler
Amanda M Clark
Alan Wells
spellingShingle Masashi Furukawa
Sarah Wheeler
Amanda M Clark
Alan Wells
Lung epithelial cells induce both phenotype alteration and senescence in breast cancer cells.
PLoS ONE
author_facet Masashi Furukawa
Sarah Wheeler
Amanda M Clark
Alan Wells
author_sort Masashi Furukawa
title Lung epithelial cells induce both phenotype alteration and senescence in breast cancer cells.
title_short Lung epithelial cells induce both phenotype alteration and senescence in breast cancer cells.
title_full Lung epithelial cells induce both phenotype alteration and senescence in breast cancer cells.
title_fullStr Lung epithelial cells induce both phenotype alteration and senescence in breast cancer cells.
title_full_unstemmed Lung epithelial cells induce both phenotype alteration and senescence in breast cancer cells.
title_sort lung epithelial cells induce both phenotype alteration and senescence in breast cancer cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description PURPOSE:The lung is one of the most common sites of breast cancer metastasis. While metastatic seeding is often accompanied by a dormancy-promoting mesenchymal to epithelial reverting transitions (MErT), we aimed to determine whether lung epithelial cells can impart this phenotype on aggressive breast cancer cells. METHODS:Co-culture experiments of normal lung epithelial cell lines (SAEC, NHBE or BEAS-2B) and breast cancer cell lines (MCF-7 or MDA-MB-231) were conducted. Flow cytometry analysis, immunofluorescence staining for E-cadherin or Ki-67 and senescence associated beta-galactosidase assays assessed breast cancer cell outgrowth and phenotype. RESULTS:Co-culture of the breast cancer cells with the normal lung cells had different effects on the epithelial and mesenchymal carcinoma cells. The epithelial MCF-7 cells were increased in number but still clustered even if in a slightly more mesenchymal-spindle morphology. On the other hand, the mesenchymal MDA-MB-231 cells survived but did not progressively grow out in co-culture. These aggressive carcinoma cells underwent an epithelial shift as indicated by cuboidal morphology and increased E-cadherin. Disruption of E-cadherin expressed in MDA-MB-231 using shRNA prevented this phenotypic reversion in co-culture. Lung cells limited cancer cell growth kinetics as noted by both (1) some of the cells becoming larger and positive for senescence markers/negative for proliferation marker Ki-67, and (2) Ki-67 positive cells significantly decreasing in MDA-MB-231 and MCF-7 cells after co-culture. CONCLUSIONS:Our data indicate that normal lung epithelial cells can drive an epithelial phenotype and suppress the growth kinetics of breast cancer cells coincident with changing their phenotypes.
url http://europepmc.org/articles/PMC4311980?pdf=render
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