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Radiation response of mesenchymal stem cells derived from bone marrow and human pluripotent stem cells

Mesenchymal stem cells (MSCs) isolated from human pluripotent stem cells are comparable with bone marrow-derived MSCs in their function and immunophenotype. The purpose of this exploratory study was comparative evaluation of the radiation responses of mesenchymal stem cells derived from bone marrow-...

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Autores principales: Islam, Mohammad S., Stemig, Melissa E., Takahashi, Yutaka, Hui, Susanta K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4380046/
https://www.ncbi.nlm.nih.gov/pubmed/25425005
http://dx.doi.org/10.1093/jrr/rru098
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author Islam, Mohammad S.
Stemig, Melissa E.
Takahashi, Yutaka
Hui, Susanta K.
author_facet Islam, Mohammad S.
Stemig, Melissa E.
Takahashi, Yutaka
Hui, Susanta K.
author_sort Islam, Mohammad S.
collection PubMed
description Mesenchymal stem cells (MSCs) isolated from human pluripotent stem cells are comparable with bone marrow-derived MSCs in their function and immunophenotype. The purpose of this exploratory study was comparative evaluation of the radiation responses of mesenchymal stem cells derived from bone marrow- (BMMSCs) and from human embryonic stem cells (hESMSCs). BMMSCs and hESMSCs were irradiated at 0 Gy (control) to 16 Gy using a linear accelerator commonly used for cancer treatment. Cells were harvested immediately after irradiation, and at 1 and 5 days after irradiation. Cell cycle analysis, colony forming ability (CFU-F), differentiation ability, and expression of osteogenic-specific runt-related transcription factor 2 (RUNX2), adipogenic peroxisome proliferator-activated receptor gamma (PPARγ), oxidative stress-specific dismutase-1 (SOD1) and Glutathione peroxidase (GPX1) were analyzed. Irradiation arrested cell cycle progression in BMMSCs and hESMSCs. Colony formation ability of irradiated MSCs decreased in a dose-dependent manner. Irradiated hESMSCs showed higher adipogenic differentiation compared with BMMSCs, together with an increase in the adipogenic PPARγ expression. PPARγ expression was upregulated as early as 4 h after irradiation, along with the expression of SOD1. More than 70% downregulation was found in Wnt3A, Wnt4, Wnt 7A, Wnt10A and Wnt11 in BMMSCs, but not in hESMSCs. hESMSCs are highly proliferative but radiosensitive compared with BMMSCs. Increased PPARγ expression relative to RUNX2 and downregulation of Wnt ligands in irradiated MSCs suggest Wnt mediated the fate determination of irradiated MSCs.
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spelling pubmed-43800462015-04-15 Radiation response of mesenchymal stem cells derived from bone marrow and human pluripotent stem cells Islam, Mohammad S. Stemig, Melissa E. Takahashi, Yutaka Hui, Susanta K. J Radiat Res Biology Mesenchymal stem cells (MSCs) isolated from human pluripotent stem cells are comparable with bone marrow-derived MSCs in their function and immunophenotype. The purpose of this exploratory study was comparative evaluation of the radiation responses of mesenchymal stem cells derived from bone marrow- (BMMSCs) and from human embryonic stem cells (hESMSCs). BMMSCs and hESMSCs were irradiated at 0 Gy (control) to 16 Gy using a linear accelerator commonly used for cancer treatment. Cells were harvested immediately after irradiation, and at 1 and 5 days after irradiation. Cell cycle analysis, colony forming ability (CFU-F), differentiation ability, and expression of osteogenic-specific runt-related transcription factor 2 (RUNX2), adipogenic peroxisome proliferator-activated receptor gamma (PPARγ), oxidative stress-specific dismutase-1 (SOD1) and Glutathione peroxidase (GPX1) were analyzed. Irradiation arrested cell cycle progression in BMMSCs and hESMSCs. Colony formation ability of irradiated MSCs decreased in a dose-dependent manner. Irradiated hESMSCs showed higher adipogenic differentiation compared with BMMSCs, together with an increase in the adipogenic PPARγ expression. PPARγ expression was upregulated as early as 4 h after irradiation, along with the expression of SOD1. More than 70% downregulation was found in Wnt3A, Wnt4, Wnt 7A, Wnt10A and Wnt11 in BMMSCs, but not in hESMSCs. hESMSCs are highly proliferative but radiosensitive compared with BMMSCs. Increased PPARγ expression relative to RUNX2 and downregulation of Wnt ligands in irradiated MSCs suggest Wnt mediated the fate determination of irradiated MSCs. Oxford University Press 2015-03 2014-11-24 /pmc/articles/PMC4380046/ /pubmed/25425005 http://dx.doi.org/10.1093/jrr/rru098 Text en © The Author 2014. Published by Oxford University Press on behalf of The Japan Radiation Research Society and Japanese Society for Radiation Oncology.
spellingShingle Biology
Islam, Mohammad S.
Stemig, Melissa E.
Takahashi, Yutaka
Hui, Susanta K.
Radiation response of mesenchymal stem cells derived from bone marrow and human pluripotent stem cells
title Radiation response of mesenchymal stem cells derived from bone marrow and human pluripotent stem cells
title_full Radiation response of mesenchymal stem cells derived from bone marrow and human pluripotent stem cells
title_fullStr Radiation response of mesenchymal stem cells derived from bone marrow and human pluripotent stem cells
title_full_unstemmed Radiation response of mesenchymal stem cells derived from bone marrow and human pluripotent stem cells
title_short Radiation response of mesenchymal stem cells derived from bone marrow and human pluripotent stem cells
title_sort radiation response of mesenchymal stem cells derived from bone marrow and human pluripotent stem cells
topic Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4380046/
https://www.ncbi.nlm.nih.gov/pubmed/25425005
http://dx.doi.org/10.1093/jrr/rru098
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