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Engineered Macroscale Cardiac Constructs Elicit Human Myocardial Tissue-like Functionality

In vitro surrogate models of human cardiac tissue hold great promise in disease modeling, cardiotoxicity testing, and future applications in regenerative medicine. However, the generation of engineered human cardiac constructs with tissue-like functionality is currently thwarted by difficulties in a...

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Autores principales: Valls-Margarit, Maria, Iglesias-García, Olalla, Di Guglielmo, Claudia, Sarlabous, Leonardo, Tadevosyan, Karine, Paoli, Roberto, Comelles, Jordi, Blanco-Almazán, Dolores, Jiménez-Delgado, Senda, Castillo-Fernández, Oscar, Samitier, Josep, Jané, Raimon, Martínez, Elena, Raya, Ángel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6626888/
https://www.ncbi.nlm.nih.gov/pubmed/31231023
http://dx.doi.org/10.1016/j.stemcr.2019.05.024
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author Valls-Margarit, Maria
Iglesias-García, Olalla
Di Guglielmo, Claudia
Sarlabous, Leonardo
Tadevosyan, Karine
Paoli, Roberto
Comelles, Jordi
Blanco-Almazán, Dolores
Jiménez-Delgado, Senda
Castillo-Fernández, Oscar
Samitier, Josep
Jané, Raimon
Martínez, Elena
Raya, Ángel
author_facet Valls-Margarit, Maria
Iglesias-García, Olalla
Di Guglielmo, Claudia
Sarlabous, Leonardo
Tadevosyan, Karine
Paoli, Roberto
Comelles, Jordi
Blanco-Almazán, Dolores
Jiménez-Delgado, Senda
Castillo-Fernández, Oscar
Samitier, Josep
Jané, Raimon
Martínez, Elena
Raya, Ángel
author_sort Valls-Margarit, Maria
collection PubMed
description In vitro surrogate models of human cardiac tissue hold great promise in disease modeling, cardiotoxicity testing, and future applications in regenerative medicine. However, the generation of engineered human cardiac constructs with tissue-like functionality is currently thwarted by difficulties in achieving efficient maturation at the cellular and/or tissular level. Here, we report on the design and implementation of a platform for the production of engineered cardiac macrotissues from human pluripotent stem cells (PSCs), which we term “CardioSlice.” PSC-derived cardiomyocytes, together with human fibroblasts, are seeded into large 3D porous scaffolds and cultured using a parallelized perfusion bioreactor with custom-made culture chambers. Continuous electrical stimulation for 2 weeks promotes cardiomyocyte alignment and synchronization, and the emergence of cardiac tissue-like properties. These include electrocardiogram-like signals that can be readily measured on the surface of CardioSlice constructs, and a response to proarrhythmic drugs that is predictive of their effect in human patients.
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spelling pubmed-66268882019-07-23 Engineered Macroscale Cardiac Constructs Elicit Human Myocardial Tissue-like Functionality Valls-Margarit, Maria Iglesias-García, Olalla Di Guglielmo, Claudia Sarlabous, Leonardo Tadevosyan, Karine Paoli, Roberto Comelles, Jordi Blanco-Almazán, Dolores Jiménez-Delgado, Senda Castillo-Fernández, Oscar Samitier, Josep Jané, Raimon Martínez, Elena Raya, Ángel Stem Cell Reports Article In vitro surrogate models of human cardiac tissue hold great promise in disease modeling, cardiotoxicity testing, and future applications in regenerative medicine. However, the generation of engineered human cardiac constructs with tissue-like functionality is currently thwarted by difficulties in achieving efficient maturation at the cellular and/or tissular level. Here, we report on the design and implementation of a platform for the production of engineered cardiac macrotissues from human pluripotent stem cells (PSCs), which we term “CardioSlice.” PSC-derived cardiomyocytes, together with human fibroblasts, are seeded into large 3D porous scaffolds and cultured using a parallelized perfusion bioreactor with custom-made culture chambers. Continuous electrical stimulation for 2 weeks promotes cardiomyocyte alignment and synchronization, and the emergence of cardiac tissue-like properties. These include electrocardiogram-like signals that can be readily measured on the surface of CardioSlice constructs, and a response to proarrhythmic drugs that is predictive of their effect in human patients. Elsevier 2019-06-20 /pmc/articles/PMC6626888/ /pubmed/31231023 http://dx.doi.org/10.1016/j.stemcr.2019.05.024 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Valls-Margarit, Maria
Iglesias-García, Olalla
Di Guglielmo, Claudia
Sarlabous, Leonardo
Tadevosyan, Karine
Paoli, Roberto
Comelles, Jordi
Blanco-Almazán, Dolores
Jiménez-Delgado, Senda
Castillo-Fernández, Oscar
Samitier, Josep
Jané, Raimon
Martínez, Elena
Raya, Ángel
Engineered Macroscale Cardiac Constructs Elicit Human Myocardial Tissue-like Functionality
title Engineered Macroscale Cardiac Constructs Elicit Human Myocardial Tissue-like Functionality
title_full Engineered Macroscale Cardiac Constructs Elicit Human Myocardial Tissue-like Functionality
title_fullStr Engineered Macroscale Cardiac Constructs Elicit Human Myocardial Tissue-like Functionality
title_full_unstemmed Engineered Macroscale Cardiac Constructs Elicit Human Myocardial Tissue-like Functionality
title_short Engineered Macroscale Cardiac Constructs Elicit Human Myocardial Tissue-like Functionality
title_sort engineered macroscale cardiac constructs elicit human myocardial tissue-like functionality
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6626888/
https://www.ncbi.nlm.nih.gov/pubmed/31231023
http://dx.doi.org/10.1016/j.stemcr.2019.05.024
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