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Enhanced Hemangioblast Generation and Improved Vascular Repair and Regeneration from Embryonic Stem Cells by Defined Transcription Factors

The fetal liver kinase 1 (FLK-1)(+) hemangioblast can generate hematopoietic, endothelial, and smooth muscle cells (SMCs). ER71/ETV2, GATA2, and SCL form a core transcriptional network in hemangioblast development. Transient coexpression of these three factors during mesoderm formation stage in mous...

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Autores principales: Liu, Fang, Bhang, Suk Ho, Arentson, Elizabeth, Sawada, Atsushi, Kim, Chan Kyu, Kang, Inyoung, Yu, Jinsheng, Sakurai, Nagisa, Kim, Suk Hyung, Yoo, Judy Ji Woon, Kim, Paul, Pahng, Seong Ho, Xia, Younan, Solnica-Krezel, Lilianna, Choi, Kyunghee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3757752/
https://www.ncbi.nlm.nih.gov/pubmed/24052951
http://dx.doi.org/10.1016/j.stemcr.2013.06.005
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author Liu, Fang
Bhang, Suk Ho
Arentson, Elizabeth
Sawada, Atsushi
Kim, Chan Kyu
Kang, Inyoung
Yu, Jinsheng
Sakurai, Nagisa
Kim, Suk Hyung
Yoo, Judy Ji Woon
Kim, Paul
Pahng, Seong Ho
Xia, Younan
Solnica-Krezel, Lilianna
Choi, Kyunghee
author_facet Liu, Fang
Bhang, Suk Ho
Arentson, Elizabeth
Sawada, Atsushi
Kim, Chan Kyu
Kang, Inyoung
Yu, Jinsheng
Sakurai, Nagisa
Kim, Suk Hyung
Yoo, Judy Ji Woon
Kim, Paul
Pahng, Seong Ho
Xia, Younan
Solnica-Krezel, Lilianna
Choi, Kyunghee
author_sort Liu, Fang
collection PubMed
description The fetal liver kinase 1 (FLK-1)(+) hemangioblast can generate hematopoietic, endothelial, and smooth muscle cells (SMCs). ER71/ETV2, GATA2, and SCL form a core transcriptional network in hemangioblast development. Transient coexpression of these three factors during mesoderm formation stage in mouse embryonic stem cells (ESCs) robustly enhanced hemangioblast generation by activating bone morphogenetic protein (BMP) and FLK-1 signaling while inhibiting phosphatidylinositol 3-kinase, WNT signaling, and cardiac output. Moreover, etsrp, gata2, and scl inhibition converted hematopoietic field of the zebrafish anterior lateral plate mesoderm to cardiac. FLK-1(+) hemangioblasts generated by transient coexpression of the three factors (ER71-GATA2-SCL [EGS]-induced FLK-1(+)) effectively produced hematopoietic, endothelial, and SMCs in culture and in vivo. Importantly, EGS-induced FLK-1(+) hemangioblasts, when codelivered with mesenchymal stem cells as spheroids, were protected from apoptosis and generated functional endothelial cells and SMCs in ischemic mouse hindlimbs, resulting in improved blood perfusion and limb salvage. ESC-derived, EGS-induced FLK-1(+) hemangioblasts could provide an attractive cell source for future hematopoietic and vascular repair and regeneration.
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spelling pubmed-37577522013-09-17 Enhanced Hemangioblast Generation and Improved Vascular Repair and Regeneration from Embryonic Stem Cells by Defined Transcription Factors Liu, Fang Bhang, Suk Ho Arentson, Elizabeth Sawada, Atsushi Kim, Chan Kyu Kang, Inyoung Yu, Jinsheng Sakurai, Nagisa Kim, Suk Hyung Yoo, Judy Ji Woon Kim, Paul Pahng, Seong Ho Xia, Younan Solnica-Krezel, Lilianna Choi, Kyunghee Stem Cell Reports Article The fetal liver kinase 1 (FLK-1)(+) hemangioblast can generate hematopoietic, endothelial, and smooth muscle cells (SMCs). ER71/ETV2, GATA2, and SCL form a core transcriptional network in hemangioblast development. Transient coexpression of these three factors during mesoderm formation stage in mouse embryonic stem cells (ESCs) robustly enhanced hemangioblast generation by activating bone morphogenetic protein (BMP) and FLK-1 signaling while inhibiting phosphatidylinositol 3-kinase, WNT signaling, and cardiac output. Moreover, etsrp, gata2, and scl inhibition converted hematopoietic field of the zebrafish anterior lateral plate mesoderm to cardiac. FLK-1(+) hemangioblasts generated by transient coexpression of the three factors (ER71-GATA2-SCL [EGS]-induced FLK-1(+)) effectively produced hematopoietic, endothelial, and SMCs in culture and in vivo. Importantly, EGS-induced FLK-1(+) hemangioblasts, when codelivered with mesenchymal stem cells as spheroids, were protected from apoptosis and generated functional endothelial cells and SMCs in ischemic mouse hindlimbs, resulting in improved blood perfusion and limb salvage. ESC-derived, EGS-induced FLK-1(+) hemangioblasts could provide an attractive cell source for future hematopoietic and vascular repair and regeneration. Elsevier 2013-07-25 /pmc/articles/PMC3757752/ /pubmed/24052951 http://dx.doi.org/10.1016/j.stemcr.2013.06.005 Text en © 2013 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-No Derivative Works License, which permits non-commercial use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Article
Liu, Fang
Bhang, Suk Ho
Arentson, Elizabeth
Sawada, Atsushi
Kim, Chan Kyu
Kang, Inyoung
Yu, Jinsheng
Sakurai, Nagisa
Kim, Suk Hyung
Yoo, Judy Ji Woon
Kim, Paul
Pahng, Seong Ho
Xia, Younan
Solnica-Krezel, Lilianna
Choi, Kyunghee
Enhanced Hemangioblast Generation and Improved Vascular Repair and Regeneration from Embryonic Stem Cells by Defined Transcription Factors
title Enhanced Hemangioblast Generation and Improved Vascular Repair and Regeneration from Embryonic Stem Cells by Defined Transcription Factors
title_full Enhanced Hemangioblast Generation and Improved Vascular Repair and Regeneration from Embryonic Stem Cells by Defined Transcription Factors
title_fullStr Enhanced Hemangioblast Generation and Improved Vascular Repair and Regeneration from Embryonic Stem Cells by Defined Transcription Factors
title_full_unstemmed Enhanced Hemangioblast Generation and Improved Vascular Repair and Regeneration from Embryonic Stem Cells by Defined Transcription Factors
title_short Enhanced Hemangioblast Generation and Improved Vascular Repair and Regeneration from Embryonic Stem Cells by Defined Transcription Factors
title_sort enhanced hemangioblast generation and improved vascular repair and regeneration from embryonic stem cells by defined transcription factors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3757752/
https://www.ncbi.nlm.nih.gov/pubmed/24052951
http://dx.doi.org/10.1016/j.stemcr.2013.06.005
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