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FOXF1 mediates mesenchymal stem cell fusion-induced reprogramming of lung cancer cells

Several reports suggest that malignant cells generate phenotypic diversity through fusion with various types of stromal cells within the tumor microenvironment. Mesenchymal stem cell (MSC) is one of the critical components in the tumor microenvironment and a promising fusogenic candidate, but the un...

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Autores principales: Wei, Hong-Jian, Nickoloff, Jac A., Chen, Wei-Hong, Liu, Hen-Yu, Lo, Wen-Cheng, Chang, Ya-Ting, Yang, Pan-Chyr, Wu, Cheng-Wen, Williams, David F., Gelovani, Juri G., Deng, Win-Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4253450/
https://www.ncbi.nlm.nih.gov/pubmed/25237908
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author Wei, Hong-Jian
Nickoloff, Jac A.
Chen, Wei-Hong
Liu, Hen-Yu
Lo, Wen-Cheng
Chang, Ya-Ting
Yang, Pan-Chyr
Wu, Cheng-Wen
Williams, David F.
Gelovani, Juri G.
Deng, Win-Ping
author_facet Wei, Hong-Jian
Nickoloff, Jac A.
Chen, Wei-Hong
Liu, Hen-Yu
Lo, Wen-Cheng
Chang, Ya-Ting
Yang, Pan-Chyr
Wu, Cheng-Wen
Williams, David F.
Gelovani, Juri G.
Deng, Win-Ping
author_sort Wei, Hong-Jian
collection PubMed
description Several reports suggest that malignant cells generate phenotypic diversity through fusion with various types of stromal cells within the tumor microenvironment. Mesenchymal stem cell (MSC) is one of the critical components in the tumor microenvironment and a promising fusogenic candidate, but the underlying functions of MSC fusion with malignant cell have not been fully examined. Here, we demonstrate that MSCs fuse spontaneously with lung cancer cells, and the latter is reprogrammed to slow growth and stem-like state. Transcriptome profiles reveal that lung cancer cells are reprogrammed to a more benign state upon MSC fusion. We further identified FOXF1 as a reprogramming mediator that contributes not only to the reprogramming toward stemness but also to the p21-regulated growth suppression in fusion progeny. Collectively, MSC fusion does not enhance the intrinsic malignancy of lung cancer cells. The anti-malignant effects of MSC fusion-induced reprogramming on lung cancer cells were accomplished by complementation of tumorigenic defects, including restoration of p21 function and normal terminal differentiation pathways as well as up-regulation of FOXF1, a putative tumor suppressor. Such fusion process raises the therapeutic potential that MSC fusion can be utilized to reverse cellular phenotypes in cancer.
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spelling pubmed-42534502014-12-03 FOXF1 mediates mesenchymal stem cell fusion-induced reprogramming of lung cancer cells Wei, Hong-Jian Nickoloff, Jac A. Chen, Wei-Hong Liu, Hen-Yu Lo, Wen-Cheng Chang, Ya-Ting Yang, Pan-Chyr Wu, Cheng-Wen Williams, David F. Gelovani, Juri G. Deng, Win-Ping Oncotarget Research Paper Several reports suggest that malignant cells generate phenotypic diversity through fusion with various types of stromal cells within the tumor microenvironment. Mesenchymal stem cell (MSC) is one of the critical components in the tumor microenvironment and a promising fusogenic candidate, but the underlying functions of MSC fusion with malignant cell have not been fully examined. Here, we demonstrate that MSCs fuse spontaneously with lung cancer cells, and the latter is reprogrammed to slow growth and stem-like state. Transcriptome profiles reveal that lung cancer cells are reprogrammed to a more benign state upon MSC fusion. We further identified FOXF1 as a reprogramming mediator that contributes not only to the reprogramming toward stemness but also to the p21-regulated growth suppression in fusion progeny. Collectively, MSC fusion does not enhance the intrinsic malignancy of lung cancer cells. The anti-malignant effects of MSC fusion-induced reprogramming on lung cancer cells were accomplished by complementation of tumorigenic defects, including restoration of p21 function and normal terminal differentiation pathways as well as up-regulation of FOXF1, a putative tumor suppressor. Such fusion process raises the therapeutic potential that MSC fusion can be utilized to reverse cellular phenotypes in cancer. Impact Journals LLC 2014-09-09 /pmc/articles/PMC4253450/ /pubmed/25237908 Text en Copyright: © 2014 Wei 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
Wei, Hong-Jian
Nickoloff, Jac A.
Chen, Wei-Hong
Liu, Hen-Yu
Lo, Wen-Cheng
Chang, Ya-Ting
Yang, Pan-Chyr
Wu, Cheng-Wen
Williams, David F.
Gelovani, Juri G.
Deng, Win-Ping
FOXF1 mediates mesenchymal stem cell fusion-induced reprogramming of lung cancer cells
title FOXF1 mediates mesenchymal stem cell fusion-induced reprogramming of lung cancer cells
title_full FOXF1 mediates mesenchymal stem cell fusion-induced reprogramming of lung cancer cells
title_fullStr FOXF1 mediates mesenchymal stem cell fusion-induced reprogramming of lung cancer cells
title_full_unstemmed FOXF1 mediates mesenchymal stem cell fusion-induced reprogramming of lung cancer cells
title_short FOXF1 mediates mesenchymal stem cell fusion-induced reprogramming of lung cancer cells
title_sort foxf1 mediates mesenchymal stem cell fusion-induced reprogramming of lung cancer cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4253450/
https://www.ncbi.nlm.nih.gov/pubmed/25237908
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