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Efficient differentiation of cardiomyocytes and generation of calcium-sensor reporter lines from nonhuman primate iPSCs
Nonhuman primate (NHP) models are more predictive than rodent models for developing induced pluripotent stem cell (iPSC)-based cell therapy, but robust and reproducible NHP iPSC-cardiomyocyte differentiation protocols are lacking for cardiomyopathies research. We developed a method to differentiate...
Autores principales: | , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group UK
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5897327/ https://www.ncbi.nlm.nih.gov/pubmed/29651156 http://dx.doi.org/10.1038/s41598-018-24074-y |
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author | Lin, Yongshun Liu, Huimin Klein, Michael Ostrominski, John Hong, So Gun Yada, Ravi Chandra Chen, Guibin Navarengom, Keron Schwartzbeck, Robin San, Hong Yu, Zu-Xi Liu, Chengyu Linask, Kaari Beers, Jeanette Qiu, Lugui Dunbar, Cynthia E. Boehm, Manfred Zou, Jizhong |
author_facet | Lin, Yongshun Liu, Huimin Klein, Michael Ostrominski, John Hong, So Gun Yada, Ravi Chandra Chen, Guibin Navarengom, Keron Schwartzbeck, Robin San, Hong Yu, Zu-Xi Liu, Chengyu Linask, Kaari Beers, Jeanette Qiu, Lugui Dunbar, Cynthia E. Boehm, Manfred Zou, Jizhong |
author_sort | Lin, Yongshun |
collection | PubMed |
description | Nonhuman primate (NHP) models are more predictive than rodent models for developing induced pluripotent stem cell (iPSC)-based cell therapy, but robust and reproducible NHP iPSC-cardiomyocyte differentiation protocols are lacking for cardiomyopathies research. We developed a method to differentiate integration-free rhesus macaque iPSCs (RhiPSCs) into cardiomyocytes with >85% purity in 10 days, using fully chemically defined conditions. To enable visualization of intracellular calcium flux in beating cardiomyocytes, we used CRISPR/Cas9 to stably knock-in genetically encoded calcium indicators at the rhesus AAVS1 safe harbor locus. Rhesus cardiomyocytes derived by our stepwise differentiation method express signature cardiac markers and show normal electrochemical coupling. They are responsive to cardiorelevant drugs and can be successfully engrafted in a mouse myocardial infarction model. Our approach provides a powerful tool for generation of NHP iPSC-derived cardiomyocytes amenable to utilization in basic research and preclinical studies, including in vivo tissue regeneration models and drug screening. |
format | Online Article Text |
id | pubmed-5897327 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Nature Publishing Group UK |
record_format | MEDLINE/PubMed |
spelling | pubmed-58973272018-04-20 Efficient differentiation of cardiomyocytes and generation of calcium-sensor reporter lines from nonhuman primate iPSCs Lin, Yongshun Liu, Huimin Klein, Michael Ostrominski, John Hong, So Gun Yada, Ravi Chandra Chen, Guibin Navarengom, Keron Schwartzbeck, Robin San, Hong Yu, Zu-Xi Liu, Chengyu Linask, Kaari Beers, Jeanette Qiu, Lugui Dunbar, Cynthia E. Boehm, Manfred Zou, Jizhong Sci Rep Article Nonhuman primate (NHP) models are more predictive than rodent models for developing induced pluripotent stem cell (iPSC)-based cell therapy, but robust and reproducible NHP iPSC-cardiomyocyte differentiation protocols are lacking for cardiomyopathies research. We developed a method to differentiate integration-free rhesus macaque iPSCs (RhiPSCs) into cardiomyocytes with >85% purity in 10 days, using fully chemically defined conditions. To enable visualization of intracellular calcium flux in beating cardiomyocytes, we used CRISPR/Cas9 to stably knock-in genetically encoded calcium indicators at the rhesus AAVS1 safe harbor locus. Rhesus cardiomyocytes derived by our stepwise differentiation method express signature cardiac markers and show normal electrochemical coupling. They are responsive to cardiorelevant drugs and can be successfully engrafted in a mouse myocardial infarction model. Our approach provides a powerful tool for generation of NHP iPSC-derived cardiomyocytes amenable to utilization in basic research and preclinical studies, including in vivo tissue regeneration models and drug screening. Nature Publishing Group UK 2018-04-12 /pmc/articles/PMC5897327/ /pubmed/29651156 http://dx.doi.org/10.1038/s41598-018-24074-y Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/. |
spellingShingle | Article Lin, Yongshun Liu, Huimin Klein, Michael Ostrominski, John Hong, So Gun Yada, Ravi Chandra Chen, Guibin Navarengom, Keron Schwartzbeck, Robin San, Hong Yu, Zu-Xi Liu, Chengyu Linask, Kaari Beers, Jeanette Qiu, Lugui Dunbar, Cynthia E. Boehm, Manfred Zou, Jizhong Efficient differentiation of cardiomyocytes and generation of calcium-sensor reporter lines from nonhuman primate iPSCs |
title | Efficient differentiation of cardiomyocytes and generation of calcium-sensor reporter lines from nonhuman primate iPSCs |
title_full | Efficient differentiation of cardiomyocytes and generation of calcium-sensor reporter lines from nonhuman primate iPSCs |
title_fullStr | Efficient differentiation of cardiomyocytes and generation of calcium-sensor reporter lines from nonhuman primate iPSCs |
title_full_unstemmed | Efficient differentiation of cardiomyocytes and generation of calcium-sensor reporter lines from nonhuman primate iPSCs |
title_short | Efficient differentiation of cardiomyocytes and generation of calcium-sensor reporter lines from nonhuman primate iPSCs |
title_sort | efficient differentiation of cardiomyocytes and generation of calcium-sensor reporter lines from nonhuman primate ipscs |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5897327/ https://www.ncbi.nlm.nih.gov/pubmed/29651156 http://dx.doi.org/10.1038/s41598-018-24074-y |
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