Characterization of cell subpopulations expressing progenitor cell markers in porcine cardiac valves.

Valvular interstitial cells (VICs) are the main population of cells found in cardiac valves. These resident fibroblastic cells play important roles in maintaining proper valve function, and their dysregulation has been linked to disease progression in humans. Despite the critical functions of VICs,...

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Main Authors: Huan Wang, Balaji Sridhar, Leslie A Leinwand, Kristi S Anseth
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3720586?pdf=render
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spelling doaj-17097f381eb54093bed16c19b9eb92d02020-11-25T01:56:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0187e6966710.1371/journal.pone.0069667Characterization of cell subpopulations expressing progenitor cell markers in porcine cardiac valves.Huan WangHuan WangBalaji SridharLeslie A LeinwandKristi S AnsethValvular interstitial cells (VICs) are the main population of cells found in cardiac valves. These resident fibroblastic cells play important roles in maintaining proper valve function, and their dysregulation has been linked to disease progression in humans. Despite the critical functions of VICs, their cellular composition is still not well defined for humans and other mammals. Given the limited availability of healthy human valves and the similarity in valve structure and function between humans and pigs, we characterized porcine VICs (pVICs) based on expression of cell surface proteins and sorted a specific subpopulation of pVICs to study its functions. We found that small percentages of pVICs express the progenitor cell markers ABCG2 (~5%), NG2 (~5%) or SSEA-4 (~7%), whereas another subpopulation (~5%) expresses OB-CDH, a type of cadherin expressed by myofibroblasts or osteo-progenitors. pVICs isolated from either aortic or pulmonary valves express most of these protein markers at similar levels. Interestingly, OB-CDH, NG2 and SSEA-4 all label distinct valvular subpopulations relative to each other; however, NG2 and ABCG2 are co-expressed in the same cells. ABCG2(+) cells were further characterized and found to deposit more calcified matrix than ABCG2(-) cells upon osteogenic induction, suggesting that they may be involved in the development of osteogenic VICs during valve pathology. Cell profiling based on flow cytometry and functional studies with sorted primary cells provide not only new and quantitative information about the cellular composition of porcine cardiac valves, but also contribute to our understanding of how a subpopulation of valvular cells (ABCG2(+) cells) may participate in tissue repair and disease progression.http://europepmc.org/articles/PMC3720586?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Huan Wang
Huan Wang
Balaji Sridhar
Leslie A Leinwand
Kristi S Anseth
spellingShingle Huan Wang
Huan Wang
Balaji Sridhar
Leslie A Leinwand
Kristi S Anseth
Characterization of cell subpopulations expressing progenitor cell markers in porcine cardiac valves.
PLoS ONE
author_facet Huan Wang
Huan Wang
Balaji Sridhar
Leslie A Leinwand
Kristi S Anseth
author_sort Huan Wang
title Characterization of cell subpopulations expressing progenitor cell markers in porcine cardiac valves.
title_short Characterization of cell subpopulations expressing progenitor cell markers in porcine cardiac valves.
title_full Characterization of cell subpopulations expressing progenitor cell markers in porcine cardiac valves.
title_fullStr Characterization of cell subpopulations expressing progenitor cell markers in porcine cardiac valves.
title_full_unstemmed Characterization of cell subpopulations expressing progenitor cell markers in porcine cardiac valves.
title_sort characterization of cell subpopulations expressing progenitor cell markers in porcine cardiac valves.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Valvular interstitial cells (VICs) are the main population of cells found in cardiac valves. These resident fibroblastic cells play important roles in maintaining proper valve function, and their dysregulation has been linked to disease progression in humans. Despite the critical functions of VICs, their cellular composition is still not well defined for humans and other mammals. Given the limited availability of healthy human valves and the similarity in valve structure and function between humans and pigs, we characterized porcine VICs (pVICs) based on expression of cell surface proteins and sorted a specific subpopulation of pVICs to study its functions. We found that small percentages of pVICs express the progenitor cell markers ABCG2 (~5%), NG2 (~5%) or SSEA-4 (~7%), whereas another subpopulation (~5%) expresses OB-CDH, a type of cadherin expressed by myofibroblasts or osteo-progenitors. pVICs isolated from either aortic or pulmonary valves express most of these protein markers at similar levels. Interestingly, OB-CDH, NG2 and SSEA-4 all label distinct valvular subpopulations relative to each other; however, NG2 and ABCG2 are co-expressed in the same cells. ABCG2(+) cells were further characterized and found to deposit more calcified matrix than ABCG2(-) cells upon osteogenic induction, suggesting that they may be involved in the development of osteogenic VICs during valve pathology. Cell profiling based on flow cytometry and functional studies with sorted primary cells provide not only new and quantitative information about the cellular composition of porcine cardiac valves, but also contribute to our understanding of how a subpopulation of valvular cells (ABCG2(+) cells) may participate in tissue repair and disease progression.
url http://europepmc.org/articles/PMC3720586?pdf=render
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