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Inducible HGF-secreting Human Umbilical Cord Blood-derived MSCs Produced via TALEN-mediated Genome Editing Promoted Angiogenesis

Mesenchymal stem cells (MSCs) promote therapeutic angiogenesis to cure serious vascular disorders. However, their survival period and cytokine-secretory capacity are limited. Although hepatocyte growth factor (HGF) can accelerate the rate of angiogenesis, recombinant HGF is limited because of its ve...

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Autores principales: Chang, Hyun-Kyung, Kim, Pyung-Hwan, Cho, Hyun-Min, Yum, Soo-Young, Choi, Young-Jin, Son, YeonSung, Lee, DaBin, Kang, InSung, Kang, Kyung-Sun, Jang, Goo, Cho, Je-Yoel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5113099/
https://www.ncbi.nlm.nih.gov/pubmed/27434585
http://dx.doi.org/10.1038/mt.2016.120
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author Chang, Hyun-Kyung
Kim, Pyung-Hwan
Cho, Hyun-Min
Yum, Soo-Young
Choi, Young-Jin
Son, YeonSung
Lee, DaBin
Kang, InSung
Kang, Kyung-Sun
Jang, Goo
Cho, Je-Yoel
author_facet Chang, Hyun-Kyung
Kim, Pyung-Hwan
Cho, Hyun-Min
Yum, Soo-Young
Choi, Young-Jin
Son, YeonSung
Lee, DaBin
Kang, InSung
Kang, Kyung-Sun
Jang, Goo
Cho, Je-Yoel
author_sort Chang, Hyun-Kyung
collection PubMed
description Mesenchymal stem cells (MSCs) promote therapeutic angiogenesis to cure serious vascular disorders. However, their survival period and cytokine-secretory capacity are limited. Although hepatocyte growth factor (HGF) can accelerate the rate of angiogenesis, recombinant HGF is limited because of its very short half-life (<3–5 minutes). Thus, continuous treatment with HGF is required to obtain an effective therapeutic response. To overcome these limitations, we produced genome-edited MSCs that secreted HGF upon drug-specific induction. The inducible HGF expression cassette was integrated into a safe harbor site in an MSC chromosome using the TALEN system, resulting in the production of TetOn-HGF/human umbilical cord blood-derived (hUCB)-MSCs. Functional assessment of the TetOn-HGF/hUCB-MSCs showed that they had enhanced mobility upon the induction of HGF expression. Moreover, long-term exposure by doxycycline (Dox)-treated TetOn-HGF/hUCB-MSCs enhanced the anti-apoptotic responses of genome-edited MSCs subjected to oxidative stress and improved the tube-formation ability. Furthermore, TetOn-HGF/hUCB-MSCs encapsulated by arginine-glycine-aspartic acid (RGD)-alginate microgel induced to express HGF improved in vivo angiogenesis in a mouse hindlimb ischemia model. This study showed that the inducible HGF-expressing hUCB-MSCs are competent to continuously express and secrete HGF in a controlled manner. Thus, the MSCs that express HGF in an inducible manner are a useful therapeutic modality for the treatment of vascular diseases requiring angiogenesis.
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spelling pubmed-51130992016-11-28 Inducible HGF-secreting Human Umbilical Cord Blood-derived MSCs Produced via TALEN-mediated Genome Editing Promoted Angiogenesis Chang, Hyun-Kyung Kim, Pyung-Hwan Cho, Hyun-Min Yum, Soo-Young Choi, Young-Jin Son, YeonSung Lee, DaBin Kang, InSung Kang, Kyung-Sun Jang, Goo Cho, Je-Yoel Mol Ther Original Article Mesenchymal stem cells (MSCs) promote therapeutic angiogenesis to cure serious vascular disorders. However, their survival period and cytokine-secretory capacity are limited. Although hepatocyte growth factor (HGF) can accelerate the rate of angiogenesis, recombinant HGF is limited because of its very short half-life (<3–5 minutes). Thus, continuous treatment with HGF is required to obtain an effective therapeutic response. To overcome these limitations, we produced genome-edited MSCs that secreted HGF upon drug-specific induction. The inducible HGF expression cassette was integrated into a safe harbor site in an MSC chromosome using the TALEN system, resulting in the production of TetOn-HGF/human umbilical cord blood-derived (hUCB)-MSCs. Functional assessment of the TetOn-HGF/hUCB-MSCs showed that they had enhanced mobility upon the induction of HGF expression. Moreover, long-term exposure by doxycycline (Dox)-treated TetOn-HGF/hUCB-MSCs enhanced the anti-apoptotic responses of genome-edited MSCs subjected to oxidative stress and improved the tube-formation ability. Furthermore, TetOn-HGF/hUCB-MSCs encapsulated by arginine-glycine-aspartic acid (RGD)-alginate microgel induced to express HGF improved in vivo angiogenesis in a mouse hindlimb ischemia model. This study showed that the inducible HGF-expressing hUCB-MSCs are competent to continuously express and secrete HGF in a controlled manner. Thus, the MSCs that express HGF in an inducible manner are a useful therapeutic modality for the treatment of vascular diseases requiring angiogenesis. Nature Publishing Group 2016-09 2016-07-19 /pmc/articles/PMC5113099/ /pubmed/27434585 http://dx.doi.org/10.1038/mt.2016.120 Text en Copyright © 2016 Official journal of the American Society of Gene & Cell Therapy http://creativecommons.org/licenses/by-nc-sa/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/4.0/
spellingShingle Original Article
Chang, Hyun-Kyung
Kim, Pyung-Hwan
Cho, Hyun-Min
Yum, Soo-Young
Choi, Young-Jin
Son, YeonSung
Lee, DaBin
Kang, InSung
Kang, Kyung-Sun
Jang, Goo
Cho, Je-Yoel
Inducible HGF-secreting Human Umbilical Cord Blood-derived MSCs Produced via TALEN-mediated Genome Editing Promoted Angiogenesis
title Inducible HGF-secreting Human Umbilical Cord Blood-derived MSCs Produced via TALEN-mediated Genome Editing Promoted Angiogenesis
title_full Inducible HGF-secreting Human Umbilical Cord Blood-derived MSCs Produced via TALEN-mediated Genome Editing Promoted Angiogenesis
title_fullStr Inducible HGF-secreting Human Umbilical Cord Blood-derived MSCs Produced via TALEN-mediated Genome Editing Promoted Angiogenesis
title_full_unstemmed Inducible HGF-secreting Human Umbilical Cord Blood-derived MSCs Produced via TALEN-mediated Genome Editing Promoted Angiogenesis
title_short Inducible HGF-secreting Human Umbilical Cord Blood-derived MSCs Produced via TALEN-mediated Genome Editing Promoted Angiogenesis
title_sort inducible hgf-secreting human umbilical cord blood-derived mscs produced via talen-mediated genome editing promoted angiogenesis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5113099/
https://www.ncbi.nlm.nih.gov/pubmed/27434585
http://dx.doi.org/10.1038/mt.2016.120
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