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Evaluation of canine 2D cell cultures as models of myxomatous mitral valve degeneration

The utility of cells cultured from the mitral valve as models of myxomatous diseases needs to be properly validated. In this study valve interstitial cells (VICs) and valve endothelial cells (VECs) were cultured from normal and diseased canine mitral valves in 2% (v/v) or 10% FBS media, in the prese...

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Autores principales: Tan, Karen, Markby, Greg, Muirhead, Rhona, Blake, Rachel, Bergeron, Lisa, Fici, Greg, Summers, Kim, Macrae, Vicky, Corcoran, Brendan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6695117/
https://www.ncbi.nlm.nih.gov/pubmed/31415646
http://dx.doi.org/10.1371/journal.pone.0221126
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author Tan, Karen
Markby, Greg
Muirhead, Rhona
Blake, Rachel
Bergeron, Lisa
Fici, Greg
Summers, Kim
Macrae, Vicky
Corcoran, Brendan
author_facet Tan, Karen
Markby, Greg
Muirhead, Rhona
Blake, Rachel
Bergeron, Lisa
Fici, Greg
Summers, Kim
Macrae, Vicky
Corcoran, Brendan
author_sort Tan, Karen
collection PubMed
description The utility of cells cultured from the mitral valve as models of myxomatous diseases needs to be properly validated. In this study valve interstitial cells (VICs) and valve endothelial cells (VECs) were cultured from normal and diseased canine mitral valves in 2% (v/v) or 10% FBS media, in the presence of TGFβ1, 2 and 3, the TGFβ RI kinase inhibitor SB431542 and TGFβ neutralising antibodies, 5HT and the 5HT2RB antagonist LY272015. Cultures were examined by morphology, transcriptomic profiling, protein expression of the cell specific markers αSMA and SM22α (VICs), and CD31 (VECs), deposition of proteoglycans (PG), the PG versican, and the TGFβs themselves. VECs derived from normal valves were CD31+/αSMA-, but those from diseased valves were αSMA+, indicating endothelial-to-mesenchymal (EndoMT) transition had occurred. The TGFβs induced EndoMT in normal VECs, and this was abolished by SB431542, with significant changes in αSMA, CD31 and HAS2 expression (P<0.05). Normal VICs cultured in 10% FBS media were αSMA+ (activated myofibroblast (disease) phenotype), but were αSMA- when grown in 2% FBS. VICs from diseased dogs were αSMA+ in 2% FBS (retention of the activated myofibroblast disease phenotype), with significantly increased TGFβ1 expression (P<0.05) compared to normal cells. Treatment of normal and diseased VICs with the TGFβs significantly increased expression of αSMA, SM22α, versican, the TGFβs themselves, and deposition of PGs (P<0.05), with TGFβ1 being the most potent activator. These effects were either abolished or markedly reduced by SB431542 and a pan-TGFβ neutralizing antibody (P<0.05). SB431542 also markedly reduced αSMA expression in VICs from diseased valves, but 5HT and LY272015 had no effect on VIC phenotype. Transcriptomic profiling identified clear differences in gene expression for the different conditions and treatments that partially matched that seen in native diseased valve tissue, including changes in expression of ACTA2 (αSMA), 5HTR2B, TAGLN (SM22α) and MYH10 (SMemb), gene ontology terms and canonical signalling pathways. Normal and diseased VICs and normal VECs from canine mitral valves can be successfully grown in culture with retention of phenotype, which can be manipulated using TGFβ1 and the TGFβ RI kinase inhibitor SB431542. This optimized cell system can now be used to model MMVD to elucidate disease mechanisms and identify key regulators of disease progression.
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spelling pubmed-66951172019-08-16 Evaluation of canine 2D cell cultures as models of myxomatous mitral valve degeneration Tan, Karen Markby, Greg Muirhead, Rhona Blake, Rachel Bergeron, Lisa Fici, Greg Summers, Kim Macrae, Vicky Corcoran, Brendan PLoS One Research Article The utility of cells cultured from the mitral valve as models of myxomatous diseases needs to be properly validated. In this study valve interstitial cells (VICs) and valve endothelial cells (VECs) were cultured from normal and diseased canine mitral valves in 2% (v/v) or 10% FBS media, in the presence of TGFβ1, 2 and 3, the TGFβ RI kinase inhibitor SB431542 and TGFβ neutralising antibodies, 5HT and the 5HT2RB antagonist LY272015. Cultures were examined by morphology, transcriptomic profiling, protein expression of the cell specific markers αSMA and SM22α (VICs), and CD31 (VECs), deposition of proteoglycans (PG), the PG versican, and the TGFβs themselves. VECs derived from normal valves were CD31+/αSMA-, but those from diseased valves were αSMA+, indicating endothelial-to-mesenchymal (EndoMT) transition had occurred. The TGFβs induced EndoMT in normal VECs, and this was abolished by SB431542, with significant changes in αSMA, CD31 and HAS2 expression (P<0.05). Normal VICs cultured in 10% FBS media were αSMA+ (activated myofibroblast (disease) phenotype), but were αSMA- when grown in 2% FBS. VICs from diseased dogs were αSMA+ in 2% FBS (retention of the activated myofibroblast disease phenotype), with significantly increased TGFβ1 expression (P<0.05) compared to normal cells. Treatment of normal and diseased VICs with the TGFβs significantly increased expression of αSMA, SM22α, versican, the TGFβs themselves, and deposition of PGs (P<0.05), with TGFβ1 being the most potent activator. These effects were either abolished or markedly reduced by SB431542 and a pan-TGFβ neutralizing antibody (P<0.05). SB431542 also markedly reduced αSMA expression in VICs from diseased valves, but 5HT and LY272015 had no effect on VIC phenotype. Transcriptomic profiling identified clear differences in gene expression for the different conditions and treatments that partially matched that seen in native diseased valve tissue, including changes in expression of ACTA2 (αSMA), 5HTR2B, TAGLN (SM22α) and MYH10 (SMemb), gene ontology terms and canonical signalling pathways. Normal and diseased VICs and normal VECs from canine mitral valves can be successfully grown in culture with retention of phenotype, which can be manipulated using TGFβ1 and the TGFβ RI kinase inhibitor SB431542. This optimized cell system can now be used to model MMVD to elucidate disease mechanisms and identify key regulators of disease progression. Public Library of Science 2019-08-15 /pmc/articles/PMC6695117/ /pubmed/31415646 http://dx.doi.org/10.1371/journal.pone.0221126 Text en © 2019 Tan 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Tan, Karen
Markby, Greg
Muirhead, Rhona
Blake, Rachel
Bergeron, Lisa
Fici, Greg
Summers, Kim
Macrae, Vicky
Corcoran, Brendan
Evaluation of canine 2D cell cultures as models of myxomatous mitral valve degeneration
title Evaluation of canine 2D cell cultures as models of myxomatous mitral valve degeneration
title_full Evaluation of canine 2D cell cultures as models of myxomatous mitral valve degeneration
title_fullStr Evaluation of canine 2D cell cultures as models of myxomatous mitral valve degeneration
title_full_unstemmed Evaluation of canine 2D cell cultures as models of myxomatous mitral valve degeneration
title_short Evaluation of canine 2D cell cultures as models of myxomatous mitral valve degeneration
title_sort evaluation of canine 2d cell cultures as models of myxomatous mitral valve degeneration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6695117/
https://www.ncbi.nlm.nih.gov/pubmed/31415646
http://dx.doi.org/10.1371/journal.pone.0221126
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