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Myocardial fibrosis and calcification are attenuated by microRNA–129-5p targeting Asporin and Sox9 in cardiac fibroblasts

Myocardial fibrosis and calcification associate with adverse outcomes in nonischemic heart failure. Cardiac fibroblasts (CF) transition into myofibroblasts (MF) and osteogenic fibroblasts (OF) to promote myocardial fibrosis and calcification. However, common upstream mechanisms regulating both CF-to...

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Autores principales: Medzikovic, Lejla, Aryan, Laila, Ruffenach, Grégoire, Li, Min, Savalli, Nicoletta, Sun, Wasila, Sarji, Shervin, Hong, Jason, Sharma, Salil, Olcese, Riccardo, Fishbein, Gregory, Eghbali, Mansoureh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10243800/
https://www.ncbi.nlm.nih.gov/pubmed/37154157
http://dx.doi.org/10.1172/jci.insight.168655
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author Medzikovic, Lejla
Aryan, Laila
Ruffenach, Grégoire
Li, Min
Savalli, Nicoletta
Sun, Wasila
Sarji, Shervin
Hong, Jason
Sharma, Salil
Olcese, Riccardo
Fishbein, Gregory
Eghbali, Mansoureh
author_facet Medzikovic, Lejla
Aryan, Laila
Ruffenach, Grégoire
Li, Min
Savalli, Nicoletta
Sun, Wasila
Sarji, Shervin
Hong, Jason
Sharma, Salil
Olcese, Riccardo
Fishbein, Gregory
Eghbali, Mansoureh
author_sort Medzikovic, Lejla
collection PubMed
description Myocardial fibrosis and calcification associate with adverse outcomes in nonischemic heart failure. Cardiac fibroblasts (CF) transition into myofibroblasts (MF) and osteogenic fibroblasts (OF) to promote myocardial fibrosis and calcification. However, common upstream mechanisms regulating both CF-to-MF transition and CF-to-OF transition remain unknown. microRNAs are promising targets to modulate CF plasticity. Our bioinformatics revealed downregulation of miR–129-5p and upregulation of its targets small leucine–rich proteoglycan Asporin (ASPN) and transcription factor SOX9 as common in mouse and human heart failure (HF). We experimentally confirmed decreased miR–129-5p and enhanced SOX9 and ASPN expression in CF in human hearts with myocardial fibrosis and calcification. miR–129-5p repressed both CF-to-MF and CF-to-OF transition in primary CF, as did knockdown of SOX9 and ASPN. Sox9 and Aspn are direct targets of miR–129-5p that inhibit downstream β-catenin expression. Chronic Angiotensin II infusion downregulated miR–129-5p in CF in WT and TCF21-lineage CF reporter mice, and it was restored by miR–129-5p mimic. Importantly, miR–129-5p mimic not only attenuated progression of myocardial fibrosis, calcification marker expression, and SOX9 and ASPN expression in CF but also restored diastolic and systolic function. Together, we demonstrate miR–129-5p/ASPN and miR–129-5p/SOX9 as potentially novel dysregulated axes in CF-to-MF and CF-to-OF transition in myocardial fibrosis and calcification and the therapeutic relevance of miR–129-5p.
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spelling pubmed-102438002023-06-07 Myocardial fibrosis and calcification are attenuated by microRNA–129-5p targeting Asporin and Sox9 in cardiac fibroblasts Medzikovic, Lejla Aryan, Laila Ruffenach, Grégoire Li, Min Savalli, Nicoletta Sun, Wasila Sarji, Shervin Hong, Jason Sharma, Salil Olcese, Riccardo Fishbein, Gregory Eghbali, Mansoureh JCI Insight Research Article Myocardial fibrosis and calcification associate with adverse outcomes in nonischemic heart failure. Cardiac fibroblasts (CF) transition into myofibroblasts (MF) and osteogenic fibroblasts (OF) to promote myocardial fibrosis and calcification. However, common upstream mechanisms regulating both CF-to-MF transition and CF-to-OF transition remain unknown. microRNAs are promising targets to modulate CF plasticity. Our bioinformatics revealed downregulation of miR–129-5p and upregulation of its targets small leucine–rich proteoglycan Asporin (ASPN) and transcription factor SOX9 as common in mouse and human heart failure (HF). We experimentally confirmed decreased miR–129-5p and enhanced SOX9 and ASPN expression in CF in human hearts with myocardial fibrosis and calcification. miR–129-5p repressed both CF-to-MF and CF-to-OF transition in primary CF, as did knockdown of SOX9 and ASPN. Sox9 and Aspn are direct targets of miR–129-5p that inhibit downstream β-catenin expression. Chronic Angiotensin II infusion downregulated miR–129-5p in CF in WT and TCF21-lineage CF reporter mice, and it was restored by miR–129-5p mimic. Importantly, miR–129-5p mimic not only attenuated progression of myocardial fibrosis, calcification marker expression, and SOX9 and ASPN expression in CF but also restored diastolic and systolic function. Together, we demonstrate miR–129-5p/ASPN and miR–129-5p/SOX9 as potentially novel dysregulated axes in CF-to-MF and CF-to-OF transition in myocardial fibrosis and calcification and the therapeutic relevance of miR–129-5p. American Society for Clinical Investigation 2023-05-08 /pmc/articles/PMC10243800/ /pubmed/37154157 http://dx.doi.org/10.1172/jci.insight.168655 Text en © 2023 Medzikovic et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Medzikovic, Lejla
Aryan, Laila
Ruffenach, Grégoire
Li, Min
Savalli, Nicoletta
Sun, Wasila
Sarji, Shervin
Hong, Jason
Sharma, Salil
Olcese, Riccardo
Fishbein, Gregory
Eghbali, Mansoureh
Myocardial fibrosis and calcification are attenuated by microRNA–129-5p targeting Asporin and Sox9 in cardiac fibroblasts
title Myocardial fibrosis and calcification are attenuated by microRNA–129-5p targeting Asporin and Sox9 in cardiac fibroblasts
title_full Myocardial fibrosis and calcification are attenuated by microRNA–129-5p targeting Asporin and Sox9 in cardiac fibroblasts
title_fullStr Myocardial fibrosis and calcification are attenuated by microRNA–129-5p targeting Asporin and Sox9 in cardiac fibroblasts
title_full_unstemmed Myocardial fibrosis and calcification are attenuated by microRNA–129-5p targeting Asporin and Sox9 in cardiac fibroblasts
title_short Myocardial fibrosis and calcification are attenuated by microRNA–129-5p targeting Asporin and Sox9 in cardiac fibroblasts
title_sort myocardial fibrosis and calcification are attenuated by microrna–129-5p targeting asporin and sox9 in cardiac fibroblasts
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10243800/
https://www.ncbi.nlm.nih.gov/pubmed/37154157
http://dx.doi.org/10.1172/jci.insight.168655
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