Cargando…

Apelin Enhances Directed Cardiac Differentiation of Mouse and Human Embryonic Stem Cells

Apelin is a peptide ligand for an orphan G-protein coupled receptor (APJ receptor) and serves as a critical gradient for migration of mesodermal cells fated to contribute to the myocardial lineage. The present study was designed to establish a robust cardiac differentiation protocol, specifically, t...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, I-Ning E., Wang, Xiang, Ge, Xiaohu, Anderson, Joshua, Ho, Michael, Ashley, Euan, Liu, Jianwei, Butte, Manish J., Yazawa, Masayuki, Dolmetsch, Ricardo E., Quertermous, Thomas, Yang, Phillip C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3365885/
https://www.ncbi.nlm.nih.gov/pubmed/22675543
http://dx.doi.org/10.1371/journal.pone.0038328
_version_ 1782234698442866688
author Wang, I-Ning E.
Wang, Xiang
Ge, Xiaohu
Anderson, Joshua
Ho, Michael
Ashley, Euan
Liu, Jianwei
Butte, Manish J.
Yazawa, Masayuki
Dolmetsch, Ricardo E.
Quertermous, Thomas
Yang, Phillip C.
author_facet Wang, I-Ning E.
Wang, Xiang
Ge, Xiaohu
Anderson, Joshua
Ho, Michael
Ashley, Euan
Liu, Jianwei
Butte, Manish J.
Yazawa, Masayuki
Dolmetsch, Ricardo E.
Quertermous, Thomas
Yang, Phillip C.
author_sort Wang, I-Ning E.
collection PubMed
description Apelin is a peptide ligand for an orphan G-protein coupled receptor (APJ receptor) and serves as a critical gradient for migration of mesodermal cells fated to contribute to the myocardial lineage. The present study was designed to establish a robust cardiac differentiation protocol, specifically, to evaluate the effect of apelin on directed differentiation of mouse and human embryonic stem cells (mESCs and hESCs) into cardiac lineage. Different concentrations of apelin (50, 100, 500 nM) were evaluated to determine its differentiation potential. The optimized dose of apelin was then combined with mesodermal differentiation factors, including BMP-4, activin-A, and bFGF, in a developmentally specific temporal sequence to examine the synergistic effects on cardiac differentiation. Cellular, molecular, and physiologic characteristics of the apelin-induced contractile embryoid bodies (EBs) were analyzed. It was found that 100 nM apelin resulted in highest percentage of contractile EB for mESCs while 500 nM had the highest effects on hESCs. Functionally, the contractile frequency of mESCs-derived EBs (mEBs) responded appropriately to increasing concentration of isoprenaline and diltiazem. Positive phenotype of cardiac specific markers was confirmed in the apelin-treated groups. The protocol, consisting of apelin and mesodermal differentiation factors, induced contractility in significantly higher percentage of hESC-derived EBs (hEBs), up-regulated cardiac-specific genes and cell surface markers, and increased the contractile force. In conclusion, we have demonstrated that the treatment of apelin enhanced cardiac differentiation of mouse and human ESCs and exhibited synergistic effects with mesodermal differentiation factors.
format Online
Article
Text
id pubmed-3365885
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-33658852012-06-06 Apelin Enhances Directed Cardiac Differentiation of Mouse and Human Embryonic Stem Cells Wang, I-Ning E. Wang, Xiang Ge, Xiaohu Anderson, Joshua Ho, Michael Ashley, Euan Liu, Jianwei Butte, Manish J. Yazawa, Masayuki Dolmetsch, Ricardo E. Quertermous, Thomas Yang, Phillip C. PLoS One Research Article Apelin is a peptide ligand for an orphan G-protein coupled receptor (APJ receptor) and serves as a critical gradient for migration of mesodermal cells fated to contribute to the myocardial lineage. The present study was designed to establish a robust cardiac differentiation protocol, specifically, to evaluate the effect of apelin on directed differentiation of mouse and human embryonic stem cells (mESCs and hESCs) into cardiac lineage. Different concentrations of apelin (50, 100, 500 nM) were evaluated to determine its differentiation potential. The optimized dose of apelin was then combined with mesodermal differentiation factors, including BMP-4, activin-A, and bFGF, in a developmentally specific temporal sequence to examine the synergistic effects on cardiac differentiation. Cellular, molecular, and physiologic characteristics of the apelin-induced contractile embryoid bodies (EBs) were analyzed. It was found that 100 nM apelin resulted in highest percentage of contractile EB for mESCs while 500 nM had the highest effects on hESCs. Functionally, the contractile frequency of mESCs-derived EBs (mEBs) responded appropriately to increasing concentration of isoprenaline and diltiazem. Positive phenotype of cardiac specific markers was confirmed in the apelin-treated groups. The protocol, consisting of apelin and mesodermal differentiation factors, induced contractility in significantly higher percentage of hESC-derived EBs (hEBs), up-regulated cardiac-specific genes and cell surface markers, and increased the contractile force. In conclusion, we have demonstrated that the treatment of apelin enhanced cardiac differentiation of mouse and human ESCs and exhibited synergistic effects with mesodermal differentiation factors. Public Library of Science 2012-06-01 /pmc/articles/PMC3365885/ /pubmed/22675543 http://dx.doi.org/10.1371/journal.pone.0038328 Text en Wang 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
Wang, I-Ning E.
Wang, Xiang
Ge, Xiaohu
Anderson, Joshua
Ho, Michael
Ashley, Euan
Liu, Jianwei
Butte, Manish J.
Yazawa, Masayuki
Dolmetsch, Ricardo E.
Quertermous, Thomas
Yang, Phillip C.
Apelin Enhances Directed Cardiac Differentiation of Mouse and Human Embryonic Stem Cells
title Apelin Enhances Directed Cardiac Differentiation of Mouse and Human Embryonic Stem Cells
title_full Apelin Enhances Directed Cardiac Differentiation of Mouse and Human Embryonic Stem Cells
title_fullStr Apelin Enhances Directed Cardiac Differentiation of Mouse and Human Embryonic Stem Cells
title_full_unstemmed Apelin Enhances Directed Cardiac Differentiation of Mouse and Human Embryonic Stem Cells
title_short Apelin Enhances Directed Cardiac Differentiation of Mouse and Human Embryonic Stem Cells
title_sort apelin enhances directed cardiac differentiation of mouse and human embryonic stem cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3365885/
https://www.ncbi.nlm.nih.gov/pubmed/22675543
http://dx.doi.org/10.1371/journal.pone.0038328
work_keys_str_mv AT wangininge apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT wangxiang apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT gexiaohu apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT andersonjoshua apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT homichael apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT ashleyeuan apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT liujianwei apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT buttemanishj apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT yazawamasayuki apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT dolmetschricardoe apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT quertermousthomas apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells
AT yangphillipc apelinenhancesdirectedcardiacdifferentiationofmouseandhumanembryonicstemcells