Vascular progenitors generated from tankyrase inhibitor-regulated naïve diabetic human iPSC potentiate efficient revascularization of ischemic retina

hPSCs in culture acquire a more naïve pluripotent state upon tankyrase inhibition. Here, the authors show that tankyrase inhibitor-regulated naïve hiPSCs from diabetic donors generate more vascular progenitors and more efficient engraftment into mouse retina than conventional PSCs.

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Autores principales: Tea Soon Park, Ludovic Zimmerlin, Rebecca Evans-Moses, Justin Thomas, Jeffrey S. Huo, Riya Kanherkar, Alice He, Nensi Ruzgar, Rhonda Grebe, Imran Bhutto, Michael Barbato, Michael A. Koldobskiy, Gerard Lutty, Elias T. Zambidis
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/4cd3936d370a4ba1b02244ee053db93b
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spelling oai:doaj.org-article:4cd3936d370a4ba1b02244ee053db93b2021-12-02T14:42:32ZVascular progenitors generated from tankyrase inhibitor-regulated naïve diabetic human iPSC potentiate efficient revascularization of ischemic retina10.1038/s41467-020-14764-52041-1723https://doaj.org/article/4cd3936d370a4ba1b02244ee053db93b2020-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14764-5https://doaj.org/toc/2041-1723hPSCs in culture acquire a more naïve pluripotent state upon tankyrase inhibition. Here, the authors show that tankyrase inhibitor-regulated naïve hiPSCs from diabetic donors generate more vascular progenitors and more efficient engraftment into mouse retina than conventional PSCs.Tea Soon ParkLudovic ZimmerlinRebecca Evans-MosesJustin ThomasJeffrey S. HuoRiya KanherkarAlice HeNensi RuzgarRhonda GrebeImran BhuttoMichael BarbatoMichael A. KoldobskiyGerard LuttyElias T. ZambidisNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-20 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Tea Soon Park
Ludovic Zimmerlin
Rebecca Evans-Moses
Justin Thomas
Jeffrey S. Huo
Riya Kanherkar
Alice He
Nensi Ruzgar
Rhonda Grebe
Imran Bhutto
Michael Barbato
Michael A. Koldobskiy
Gerard Lutty
Elias T. Zambidis
Vascular progenitors generated from tankyrase inhibitor-regulated naïve diabetic human iPSC potentiate efficient revascularization of ischemic retina
description hPSCs in culture acquire a more naïve pluripotent state upon tankyrase inhibition. Here, the authors show that tankyrase inhibitor-regulated naïve hiPSCs from diabetic donors generate more vascular progenitors and more efficient engraftment into mouse retina than conventional PSCs.
format article
author Tea Soon Park
Ludovic Zimmerlin
Rebecca Evans-Moses
Justin Thomas
Jeffrey S. Huo
Riya Kanherkar
Alice He
Nensi Ruzgar
Rhonda Grebe
Imran Bhutto
Michael Barbato
Michael A. Koldobskiy
Gerard Lutty
Elias T. Zambidis
author_facet Tea Soon Park
Ludovic Zimmerlin
Rebecca Evans-Moses
Justin Thomas
Jeffrey S. Huo
Riya Kanherkar
Alice He
Nensi Ruzgar
Rhonda Grebe
Imran Bhutto
Michael Barbato
Michael A. Koldobskiy
Gerard Lutty
Elias T. Zambidis
author_sort Tea Soon Park
title Vascular progenitors generated from tankyrase inhibitor-regulated naïve diabetic human iPSC potentiate efficient revascularization of ischemic retina
title_short Vascular progenitors generated from tankyrase inhibitor-regulated naïve diabetic human iPSC potentiate efficient revascularization of ischemic retina
title_full Vascular progenitors generated from tankyrase inhibitor-regulated naïve diabetic human iPSC potentiate efficient revascularization of ischemic retina
title_fullStr Vascular progenitors generated from tankyrase inhibitor-regulated naïve diabetic human iPSC potentiate efficient revascularization of ischemic retina
title_full_unstemmed Vascular progenitors generated from tankyrase inhibitor-regulated naïve diabetic human iPSC potentiate efficient revascularization of ischemic retina
title_sort vascular progenitors generated from tankyrase inhibitor-regulated naïve diabetic human ipsc potentiate efficient revascularization of ischemic retina
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/4cd3936d370a4ba1b02244ee053db93b
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