Cargando…

Establishment and Characterization of the Reversibly Immortalized Mouse Fetal Heart Progenitors

Objective: Progenitor cell-based cardiomyocyte regeneration holds great promise of repairing an injured heart. Although cardiomyogenic differentiation has been reported for a variety of progenitor cell types, the biological factors that regulate effective cardiomyogenesis remain largely undefined. P...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Mi, Chen, Yuan, Bi, Yang, Jiang, Wei, Luo, Qing, He, Yun, Su, Yuxi, Liu, Xing, Cui, Jing, Zhang, Wenwen, Li, Ruidong, Kong, Yuhan, Zhang, Jiye, Wang, Jinhua, Zhang, Hongyu, Shui, Wei, Wu, Ningning, Zhu, Jing, Tian, Jie, Yi, Qi-Jian, Luu, Hue H., Haydon, Rex C., He, Tong-Chuan, Zhu, Gao-Hui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3691803/
https://www.ncbi.nlm.nih.gov/pubmed/23801891
http://dx.doi.org/10.7150/ijms.6639
_version_ 1782274531212132352
author Li, Mi
Chen, Yuan
Bi, Yang
Jiang, Wei
Luo, Qing
He, Yun
Su, Yuxi
Liu, Xing
Cui, Jing
Zhang, Wenwen
Li, Ruidong
Kong, Yuhan
Zhang, Jiye
Wang, Jinhua
Zhang, Hongyu
Shui, Wei
Wu, Ningning
Zhu, Jing
Tian, Jie
Yi, Qi-Jian
Luu, Hue H.
Haydon, Rex C.
He, Tong-Chuan
Zhu, Gao-Hui
author_facet Li, Mi
Chen, Yuan
Bi, Yang
Jiang, Wei
Luo, Qing
He, Yun
Su, Yuxi
Liu, Xing
Cui, Jing
Zhang, Wenwen
Li, Ruidong
Kong, Yuhan
Zhang, Jiye
Wang, Jinhua
Zhang, Hongyu
Shui, Wei
Wu, Ningning
Zhu, Jing
Tian, Jie
Yi, Qi-Jian
Luu, Hue H.
Haydon, Rex C.
He, Tong-Chuan
Zhu, Gao-Hui
author_sort Li, Mi
collection PubMed
description Objective: Progenitor cell-based cardiomyocyte regeneration holds great promise of repairing an injured heart. Although cardiomyogenic differentiation has been reported for a variety of progenitor cell types, the biological factors that regulate effective cardiomyogenesis remain largely undefined. Primary cardiomyogenic progenitors (CPs) have a limited life span in culture, hampering the CPs' in vitro and in vivo studies. The objective of this study is to investigate if primary CPs isolated from fetal mouse heart can be reversibly immortalized with SV40 large T and maintain long-term cell proliferation without compromising cardiomyogenic differentiation potential. Methods: Primary cardiomyocytes were isolated from mouse E15.5 fetal heart, and immortalized retrovirally with the expression of SV40 large T antigen flanked with loxP sites. Expression of cardiomyogenic markers were determined by quantitative RT-PCR and immunofluorescence staining. The immortalization phenotype was reversed by using an adenovirus-mediated expression of the Cre reconbinase. Cardiomyogenic differentiation induced by retinoids or dexamethasone was assessed by an α-myosin heavy chain (MyHC) promoter-driven reporter. Results: We demonstrate that the CPs derived from mouse E15.5 fetal heart can be efficiently immortalized by SV40 T antigen. The conditionally immortalized CPs (iCP15 clones) exhibit an increased proliferative activity and are able to maintain long-term proliferation, which can be reversed by Cre recombinase. The iCP15 cells express cardiomyogenic markers and retain differentiation potential as they can undergo terminal differentiate into cardiomyctes under appropriate differentiation conditions although the iCP15 clones represent a large repertoire of CPs at various differentiation stages. The removal of SV40 large T increases the iCPs' differentiation potential. Thus, the iCPs not only maintain long-term cell proliferative activity but also retain cardiomyogenic differentiation potential. Conclusions: Our results suggest that the reported reversible SV40 T antigen-mediated immortalization represents an efficient approach for establishing long-term culture of primary cardiomyogenic progenitors for basic and translational research.
format Online
Article
Text
id pubmed-3691803
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-36918032013-06-25 Establishment and Characterization of the Reversibly Immortalized Mouse Fetal Heart Progenitors Li, Mi Chen, Yuan Bi, Yang Jiang, Wei Luo, Qing He, Yun Su, Yuxi Liu, Xing Cui, Jing Zhang, Wenwen Li, Ruidong Kong, Yuhan Zhang, Jiye Wang, Jinhua Zhang, Hongyu Shui, Wei Wu, Ningning Zhu, Jing Tian, Jie Yi, Qi-Jian Luu, Hue H. Haydon, Rex C. He, Tong-Chuan Zhu, Gao-Hui Int J Med Sci Research Paper Objective: Progenitor cell-based cardiomyocyte regeneration holds great promise of repairing an injured heart. Although cardiomyogenic differentiation has been reported for a variety of progenitor cell types, the biological factors that regulate effective cardiomyogenesis remain largely undefined. Primary cardiomyogenic progenitors (CPs) have a limited life span in culture, hampering the CPs' in vitro and in vivo studies. The objective of this study is to investigate if primary CPs isolated from fetal mouse heart can be reversibly immortalized with SV40 large T and maintain long-term cell proliferation without compromising cardiomyogenic differentiation potential. Methods: Primary cardiomyocytes were isolated from mouse E15.5 fetal heart, and immortalized retrovirally with the expression of SV40 large T antigen flanked with loxP sites. Expression of cardiomyogenic markers were determined by quantitative RT-PCR and immunofluorescence staining. The immortalization phenotype was reversed by using an adenovirus-mediated expression of the Cre reconbinase. Cardiomyogenic differentiation induced by retinoids or dexamethasone was assessed by an α-myosin heavy chain (MyHC) promoter-driven reporter. Results: We demonstrate that the CPs derived from mouse E15.5 fetal heart can be efficiently immortalized by SV40 T antigen. The conditionally immortalized CPs (iCP15 clones) exhibit an increased proliferative activity and are able to maintain long-term proliferation, which can be reversed by Cre recombinase. The iCP15 cells express cardiomyogenic markers and retain differentiation potential as they can undergo terminal differentiate into cardiomyctes under appropriate differentiation conditions although the iCP15 clones represent a large repertoire of CPs at various differentiation stages. The removal of SV40 large T increases the iCPs' differentiation potential. Thus, the iCPs not only maintain long-term cell proliferative activity but also retain cardiomyogenic differentiation potential. Conclusions: Our results suggest that the reported reversible SV40 T antigen-mediated immortalization represents an efficient approach for establishing long-term culture of primary cardiomyogenic progenitors for basic and translational research. Ivyspring International Publisher 2013-06-20 /pmc/articles/PMC3691803/ /pubmed/23801891 http://dx.doi.org/10.7150/ijms.6639 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Li, Mi
Chen, Yuan
Bi, Yang
Jiang, Wei
Luo, Qing
He, Yun
Su, Yuxi
Liu, Xing
Cui, Jing
Zhang, Wenwen
Li, Ruidong
Kong, Yuhan
Zhang, Jiye
Wang, Jinhua
Zhang, Hongyu
Shui, Wei
Wu, Ningning
Zhu, Jing
Tian, Jie
Yi, Qi-Jian
Luu, Hue H.
Haydon, Rex C.
He, Tong-Chuan
Zhu, Gao-Hui
Establishment and Characterization of the Reversibly Immortalized Mouse Fetal Heart Progenitors
title Establishment and Characterization of the Reversibly Immortalized Mouse Fetal Heart Progenitors
title_full Establishment and Characterization of the Reversibly Immortalized Mouse Fetal Heart Progenitors
title_fullStr Establishment and Characterization of the Reversibly Immortalized Mouse Fetal Heart Progenitors
title_full_unstemmed Establishment and Characterization of the Reversibly Immortalized Mouse Fetal Heart Progenitors
title_short Establishment and Characterization of the Reversibly Immortalized Mouse Fetal Heart Progenitors
title_sort establishment and characterization of the reversibly immortalized mouse fetal heart progenitors
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3691803/
https://www.ncbi.nlm.nih.gov/pubmed/23801891
http://dx.doi.org/10.7150/ijms.6639
work_keys_str_mv AT limi establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT chenyuan establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT biyang establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT jiangwei establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT luoqing establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT heyun establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT suyuxi establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT liuxing establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT cuijing establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT zhangwenwen establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT liruidong establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT kongyuhan establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT zhangjiye establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT wangjinhua establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT zhanghongyu establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT shuiwei establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT wuningning establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT zhujing establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT tianjie establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT yiqijian establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT luuhueh establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT haydonrexc establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT hetongchuan establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors
AT zhugaohui establishmentandcharacterizationofthereversiblyimmortalizedmousefetalheartprogenitors