Differentiation-Associated MicroRNA Alterations in Mouse Heart-Derived Sca-1+CD31− and Sca-1+CD31+ Cells

Cardiac resident stem/progenitor cells (CSC/CPCs) are critical to the cellular and functional integrity of the heart because they maintain myocardial cell homeostasis. Several populations of CSC/CPCs have been identified based on expression of different stem cell-associated antigens. Sca-1+ cells in...

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Main Authors: Qiong Wu, Jinxi Zhan, Yun Li, Xiaoxia Wang, Lu Xu, Juan Yu, Shiming Pu, Zuping Zhou
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:Stem Cells International
Online Access:http://dx.doi.org/10.1155/2016/9586751
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spelling doaj-3998987a1e2f468f830afe60650a130e2020-11-25T02:20:17ZengHindawi LimitedStem Cells International1687-966X1687-96782016-01-01201610.1155/2016/95867519586751Differentiation-Associated MicroRNA Alterations in Mouse Heart-Derived Sca-1+CD31− and Sca-1+CD31+ CellsQiong Wu0Jinxi Zhan1Yun Li2Xiaoxia Wang3Lu Xu4Juan Yu5Shiming Pu6Zuping Zhou7School of Life Sciences, Guangxi Normal University, Guilin 541004, ChinaSchool of Life Sciences, Guangxi Normal University, Guilin 541004, ChinaSchool of Life Sciences, Guangxi Normal University, Guilin 541004, ChinaSchool of Life Sciences, Guangxi Normal University, Guilin 541004, ChinaJilin Medical College, Jilin 132013, ChinaSchool of Life Sciences, Guangxi Normal University, Guilin 541004, ChinaSchool of Life Sciences, Guangxi Normal University, Guilin 541004, ChinaSchool of Life Sciences, Guangxi Normal University, Guilin 541004, ChinaCardiac resident stem/progenitor cells (CSC/CPCs) are critical to the cellular and functional integrity of the heart because they maintain myocardial cell homeostasis. Several populations of CSC/CPCs have been identified based on expression of different stem cell-associated antigens. Sca-1+ cells in the cardiac tissue may be the most common CSC/CPCs. However, they are a heterogeneous cell population and, in transplants, clinicians might transplant more endothelial cells, cardiomyocytes, or other cells than stem cells. The purposes of this study were to (1) isolate CSC/CPCs with Lin−CD45−Sca-1+CD31− and Lin−CD45−Sca-1+CD31+ surface antigens using flow-activated cell sorting; (2) investigate their differentiation potential; and (3) determine the molecular basis for differences in stemness characteristics between cell subtypes. The results indicated that mouse heart-derived Sca-1+CD31− cells were multipotent and retained the ability to differentiate into different cardiac cell lineages, but Sca-1+CD31+ cells did not. Integrated analysis of microRNA and mRNA expression indicated that 20 microRNAs and 49 mRNAs were inversely associated with Sca-1+CD31− and Sca-1+CD31+ subtype stemness characteristics. In particular, mmu-miR-322-5p had more targeted and inversely associated genes and transcription factors and might have higher potential for CSC/CPCs differentiation.http://dx.doi.org/10.1155/2016/9586751
collection DOAJ
language English
format Article
sources DOAJ
author Qiong Wu
Jinxi Zhan
Yun Li
Xiaoxia Wang
Lu Xu
Juan Yu
Shiming Pu
Zuping Zhou
spellingShingle Qiong Wu
Jinxi Zhan
Yun Li
Xiaoxia Wang
Lu Xu
Juan Yu
Shiming Pu
Zuping Zhou
Differentiation-Associated MicroRNA Alterations in Mouse Heart-Derived Sca-1+CD31− and Sca-1+CD31+ Cells
Stem Cells International
author_facet Qiong Wu
Jinxi Zhan
Yun Li
Xiaoxia Wang
Lu Xu
Juan Yu
Shiming Pu
Zuping Zhou
author_sort Qiong Wu
title Differentiation-Associated MicroRNA Alterations in Mouse Heart-Derived Sca-1+CD31− and Sca-1+CD31+ Cells
title_short Differentiation-Associated MicroRNA Alterations in Mouse Heart-Derived Sca-1+CD31− and Sca-1+CD31+ Cells
title_full Differentiation-Associated MicroRNA Alterations in Mouse Heart-Derived Sca-1+CD31− and Sca-1+CD31+ Cells
title_fullStr Differentiation-Associated MicroRNA Alterations in Mouse Heart-Derived Sca-1+CD31− and Sca-1+CD31+ Cells
title_full_unstemmed Differentiation-Associated MicroRNA Alterations in Mouse Heart-Derived Sca-1+CD31− and Sca-1+CD31+ Cells
title_sort differentiation-associated microrna alterations in mouse heart-derived sca-1+cd31− and sca-1+cd31+ cells
publisher Hindawi Limited
series Stem Cells International
issn 1687-966X
1687-9678
publishDate 2016-01-01
description Cardiac resident stem/progenitor cells (CSC/CPCs) are critical to the cellular and functional integrity of the heart because they maintain myocardial cell homeostasis. Several populations of CSC/CPCs have been identified based on expression of different stem cell-associated antigens. Sca-1+ cells in the cardiac tissue may be the most common CSC/CPCs. However, they are a heterogeneous cell population and, in transplants, clinicians might transplant more endothelial cells, cardiomyocytes, or other cells than stem cells. The purposes of this study were to (1) isolate CSC/CPCs with Lin−CD45−Sca-1+CD31− and Lin−CD45−Sca-1+CD31+ surface antigens using flow-activated cell sorting; (2) investigate their differentiation potential; and (3) determine the molecular basis for differences in stemness characteristics between cell subtypes. The results indicated that mouse heart-derived Sca-1+CD31− cells were multipotent and retained the ability to differentiate into different cardiac cell lineages, but Sca-1+CD31+ cells did not. Integrated analysis of microRNA and mRNA expression indicated that 20 microRNAs and 49 mRNAs were inversely associated with Sca-1+CD31− and Sca-1+CD31+ subtype stemness characteristics. In particular, mmu-miR-322-5p had more targeted and inversely associated genes and transcription factors and might have higher potential for CSC/CPCs differentiation.
url http://dx.doi.org/10.1155/2016/9586751
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