Cargando…

FACS-Based Isolation, Propagation and Characterization of Mouse Embryonic Cardiomyocytes Based on VCAM-1 Surface Marker Expression

Purification of cardiomyocytes from the embryonic mouse heart, embryonic stem (ES) or induced pluripotent stem cells (iPS) is a challenging task and will require specific isolation procedures. Lately the significance of surface markers for the isolation of cardiac cell populations with fluorescence...

Descripción completa

Detalles Bibliográficos
Autores principales: Pontén, Annica, Walsh, Stuart, Malan, Daniela, Xian, Xiaojie, Schéele, Susanne, Tarnawski, Laura, Fleischmann, Bernd K., Jovinge, Stefan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3875414/
https://www.ncbi.nlm.nih.gov/pubmed/24386094
http://dx.doi.org/10.1371/journal.pone.0082403
_version_ 1782297345295122432
author Pontén, Annica
Walsh, Stuart
Malan, Daniela
Xian, Xiaojie
Schéele, Susanne
Tarnawski, Laura
Fleischmann, Bernd K.
Jovinge, Stefan
author_facet Pontén, Annica
Walsh, Stuart
Malan, Daniela
Xian, Xiaojie
Schéele, Susanne
Tarnawski, Laura
Fleischmann, Bernd K.
Jovinge, Stefan
author_sort Pontén, Annica
collection PubMed
description Purification of cardiomyocytes from the embryonic mouse heart, embryonic stem (ES) or induced pluripotent stem cells (iPS) is a challenging task and will require specific isolation procedures. Lately the significance of surface markers for the isolation of cardiac cell populations with fluorescence activated cell sorting (FACS) has been acknowledged, and the hunt for cardiac specific markers has intensified. As cardiomyocytes have traditionally been characterized by their expression of specific transcription factors and structural proteins, and not by specific surface markers, this constitutes a significant bottleneck. Lately, Flk-1, c-kit and the cellular prion protein have been reported to specify cardiac progenitors, however, no surface markers have so far been reported to specify a committed cardiomyocyte. Herein show for the first time, that embryonic cardiomyocytes can be isolated with 98% purity, based on their expression of vascular cell adhesion molecule-1 (VCAM-1). The FACS-isolated cells express phenotypic markers for embryonic committed cardiomyocytes but not cardiac progenitors. An important aspect of FACS is to provide viable cells with retention of functionality. We show that VCAM-1 positive cardiomyocytes can be isolated with 95% viability suitable for in vitro culture, functional assays or expression analysis. In patch-clamp experiments we provide evidence of functionally intact cardiomyocytes of both atrial and ventricular subtypes. This work establishes that cardiomyocytes can be isolated with a high degree of purity and viability through FACS, based on specific surface marker expression as has been done in the hematopoietic field for decades. Our FACS protocol represents a significant advance in which purified populations of cardiomyocytes may be isolated and utilized for downstream applications, such as purification of ES-cell derived cardiomyocytes.
format Online
Article
Text
id pubmed-3875414
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-38754142014-01-02 FACS-Based Isolation, Propagation and Characterization of Mouse Embryonic Cardiomyocytes Based on VCAM-1 Surface Marker Expression Pontén, Annica Walsh, Stuart Malan, Daniela Xian, Xiaojie Schéele, Susanne Tarnawski, Laura Fleischmann, Bernd K. Jovinge, Stefan PLoS One Research Article Purification of cardiomyocytes from the embryonic mouse heart, embryonic stem (ES) or induced pluripotent stem cells (iPS) is a challenging task and will require specific isolation procedures. Lately the significance of surface markers for the isolation of cardiac cell populations with fluorescence activated cell sorting (FACS) has been acknowledged, and the hunt for cardiac specific markers has intensified. As cardiomyocytes have traditionally been characterized by their expression of specific transcription factors and structural proteins, and not by specific surface markers, this constitutes a significant bottleneck. Lately, Flk-1, c-kit and the cellular prion protein have been reported to specify cardiac progenitors, however, no surface markers have so far been reported to specify a committed cardiomyocyte. Herein show for the first time, that embryonic cardiomyocytes can be isolated with 98% purity, based on their expression of vascular cell adhesion molecule-1 (VCAM-1). The FACS-isolated cells express phenotypic markers for embryonic committed cardiomyocytes but not cardiac progenitors. An important aspect of FACS is to provide viable cells with retention of functionality. We show that VCAM-1 positive cardiomyocytes can be isolated with 95% viability suitable for in vitro culture, functional assays or expression analysis. In patch-clamp experiments we provide evidence of functionally intact cardiomyocytes of both atrial and ventricular subtypes. This work establishes that cardiomyocytes can be isolated with a high degree of purity and viability through FACS, based on specific surface marker expression as has been done in the hematopoietic field for decades. Our FACS protocol represents a significant advance in which purified populations of cardiomyocytes may be isolated and utilized for downstream applications, such as purification of ES-cell derived cardiomyocytes. Public Library of Science 2013-12-30 /pmc/articles/PMC3875414/ /pubmed/24386094 http://dx.doi.org/10.1371/journal.pone.0082403 Text en © 2013 Pontén 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Pontén, Annica
Walsh, Stuart
Malan, Daniela
Xian, Xiaojie
Schéele, Susanne
Tarnawski, Laura
Fleischmann, Bernd K.
Jovinge, Stefan
FACS-Based Isolation, Propagation and Characterization of Mouse Embryonic Cardiomyocytes Based on VCAM-1 Surface Marker Expression
title FACS-Based Isolation, Propagation and Characterization of Mouse Embryonic Cardiomyocytes Based on VCAM-1 Surface Marker Expression
title_full FACS-Based Isolation, Propagation and Characterization of Mouse Embryonic Cardiomyocytes Based on VCAM-1 Surface Marker Expression
title_fullStr FACS-Based Isolation, Propagation and Characterization of Mouse Embryonic Cardiomyocytes Based on VCAM-1 Surface Marker Expression
title_full_unstemmed FACS-Based Isolation, Propagation and Characterization of Mouse Embryonic Cardiomyocytes Based on VCAM-1 Surface Marker Expression
title_short FACS-Based Isolation, Propagation and Characterization of Mouse Embryonic Cardiomyocytes Based on VCAM-1 Surface Marker Expression
title_sort facs-based isolation, propagation and characterization of mouse embryonic cardiomyocytes based on vcam-1 surface marker expression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3875414/
https://www.ncbi.nlm.nih.gov/pubmed/24386094
http://dx.doi.org/10.1371/journal.pone.0082403
work_keys_str_mv AT pontenannica facsbasedisolationpropagationandcharacterizationofmouseembryoniccardiomyocytesbasedonvcam1surfacemarkerexpression
AT walshstuart facsbasedisolationpropagationandcharacterizationofmouseembryoniccardiomyocytesbasedonvcam1surfacemarkerexpression
AT malandaniela facsbasedisolationpropagationandcharacterizationofmouseembryoniccardiomyocytesbasedonvcam1surfacemarkerexpression
AT xianxiaojie facsbasedisolationpropagationandcharacterizationofmouseembryoniccardiomyocytesbasedonvcam1surfacemarkerexpression
AT scheelesusanne facsbasedisolationpropagationandcharacterizationofmouseembryoniccardiomyocytesbasedonvcam1surfacemarkerexpression
AT tarnawskilaura facsbasedisolationpropagationandcharacterizationofmouseembryoniccardiomyocytesbasedonvcam1surfacemarkerexpression
AT fleischmannberndk facsbasedisolationpropagationandcharacterizationofmouseembryoniccardiomyocytesbasedonvcam1surfacemarkerexpression
AT jovingestefan facsbasedisolationpropagationandcharacterizationofmouseembryoniccardiomyocytesbasedonvcam1surfacemarkerexpression