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Mouse HSA(+) immature cardiomyocytes persist in the adult heart and expand after ischemic injury

The assessment of the regenerative capacity of the heart has been compromised by the lack of surface signatures to characterize cardiomyocytes (CMs). Here, combined multiparametric surface marker analysis with single-cell transcriptional profiling and in vivo transplantation identify the main mouse...

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Autores principales: Valente, Mariana, Resende, Tatiana Pinho, Nascimento, Diana Santos, Burlen-Defranoux, Odile, Soares-da-Silva, Francisca, Dupont, Benoit, Cumano, Ana, Pinto-do-Ó, Perpétua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6619826/
https://www.ncbi.nlm.nih.gov/pubmed/31246945
http://dx.doi.org/10.1371/journal.pbio.3000335
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author Valente, Mariana
Resende, Tatiana Pinho
Nascimento, Diana Santos
Burlen-Defranoux, Odile
Soares-da-Silva, Francisca
Dupont, Benoit
Cumano, Ana
Pinto-do-Ó, Perpétua
author_facet Valente, Mariana
Resende, Tatiana Pinho
Nascimento, Diana Santos
Burlen-Defranoux, Odile
Soares-da-Silva, Francisca
Dupont, Benoit
Cumano, Ana
Pinto-do-Ó, Perpétua
author_sort Valente, Mariana
collection PubMed
description The assessment of the regenerative capacity of the heart has been compromised by the lack of surface signatures to characterize cardiomyocytes (CMs). Here, combined multiparametric surface marker analysis with single-cell transcriptional profiling and in vivo transplantation identify the main mouse fetal cardiac populations and their progenitors (PRGs). We found that CMs at different stages of differentiation coexist during development. We identified a population of immature heat stable antigen (HSA)/ cluster of differentiation 24 (CD24)(+) CMs that persists throughout life and that, unlike other CM subsets, actively proliferates up to 1 week of age and engrafts cardiac tissue upon transplantation. In the adult heart, a discrete population of HSA/CD24(+) CMs appears as mononucleated cells that increase in frequency after infarction. Our work identified cell surface signatures that allow the prospective isolation of CMs at all developmental stages and the detection of a subset of immature CMs throughout life that, although at reduced frequencies, are poised for activation in response to ischemic stimuli. This work opens new perspectives in the understanding and treatment of heart pathologies.
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spelling pubmed-66198262019-07-25 Mouse HSA(+) immature cardiomyocytes persist in the adult heart and expand after ischemic injury Valente, Mariana Resende, Tatiana Pinho Nascimento, Diana Santos Burlen-Defranoux, Odile Soares-da-Silva, Francisca Dupont, Benoit Cumano, Ana Pinto-do-Ó, Perpétua PLoS Biol Research Article The assessment of the regenerative capacity of the heart has been compromised by the lack of surface signatures to characterize cardiomyocytes (CMs). Here, combined multiparametric surface marker analysis with single-cell transcriptional profiling and in vivo transplantation identify the main mouse fetal cardiac populations and their progenitors (PRGs). We found that CMs at different stages of differentiation coexist during development. We identified a population of immature heat stable antigen (HSA)/ cluster of differentiation 24 (CD24)(+) CMs that persists throughout life and that, unlike other CM subsets, actively proliferates up to 1 week of age and engrafts cardiac tissue upon transplantation. In the adult heart, a discrete population of HSA/CD24(+) CMs appears as mononucleated cells that increase in frequency after infarction. Our work identified cell surface signatures that allow the prospective isolation of CMs at all developmental stages and the detection of a subset of immature CMs throughout life that, although at reduced frequencies, are poised for activation in response to ischemic stimuli. This work opens new perspectives in the understanding and treatment of heart pathologies. Public Library of Science 2019-06-27 /pmc/articles/PMC6619826/ /pubmed/31246945 http://dx.doi.org/10.1371/journal.pbio.3000335 Text en © 2019 Valente et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Valente, Mariana
Resende, Tatiana Pinho
Nascimento, Diana Santos
Burlen-Defranoux, Odile
Soares-da-Silva, Francisca
Dupont, Benoit
Cumano, Ana
Pinto-do-Ó, Perpétua
Mouse HSA(+) immature cardiomyocytes persist in the adult heart and expand after ischemic injury
title Mouse HSA(+) immature cardiomyocytes persist in the adult heart and expand after ischemic injury
title_full Mouse HSA(+) immature cardiomyocytes persist in the adult heart and expand after ischemic injury
title_fullStr Mouse HSA(+) immature cardiomyocytes persist in the adult heart and expand after ischemic injury
title_full_unstemmed Mouse HSA(+) immature cardiomyocytes persist in the adult heart and expand after ischemic injury
title_short Mouse HSA(+) immature cardiomyocytes persist in the adult heart and expand after ischemic injury
title_sort mouse hsa(+) immature cardiomyocytes persist in the adult heart and expand after ischemic injury
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6619826/
https://www.ncbi.nlm.nih.gov/pubmed/31246945
http://dx.doi.org/10.1371/journal.pbio.3000335
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