盐皮质激素受体
醛固酮
间质细胞
纤维化
内科学
内分泌学
医学
蛋白多糖
二尖瓣脱垂
细胞生物学
二尖瓣
生物
细胞外基质
作者
Jaime Ibarrola,Amaia García-Peña,Lara Matilla,Benjamin Bonnard,Rafael Sádaba,Vanessa Arrieta,Virginia Álvarez,Amaya Fernández‐Celis,Alicia Gainza,Adela Navarro,Diego Álvarez de la Rosa,Patrick Rossignol,Frédéric Jaisser,Natalia López‐Andrés
出处
期刊:Circulation Research
[Lippincott Williams & Wilkins]
日期:2020-04-24
卷期号:127 (3): e80-e93
被引量:26
标识
DOI:10.1161/circresaha.119.316427
摘要
Rationale: Mitral valve prolapse (MVP) is one of the most common valvular disorders. However, the molecular and cellular mechanisms involved in fibromyxomatous changes in the mitral leaflet tissue have not been elucidated. Aldosterone (Aldo) promotes fibrosis in myocardium, and MR (mineralocorticoid receptor) antagonists (MRAs) improve cardiac function by decreasing cardiac fibrosis. Objective: We investigated the role of the Aldo/MR in the fibromyxomatous modifications associated with MVP. Methods and Results: Aldo enhanced valvular interstitial cell activation markers and induced endothelial-mesenchymal transition in valvular endothelial cells, resulting in increased proteoglycan secretion. MRA blocked all the above effects. Cytokine arrays showed CT-1 (cardiotrophin-1) to be a mediator of Aldo-induced valvular interstitial cell activation and proteoglycan secretion and CD (cluster of differentiation) 14 to be a mediator of Aldo-induced endothelial-mesenchymal transition and proteoglycan secretion in valvular endothelial cells. In an experimental mouse model of MVP generated by nordexfenfluramine administration, MRA treatment reduced mitral valve thickness and proteoglycan content. Endothelial-specific MR deletion prevented fibromyxomatous changes induced by nordexfenfluramine administration. Moreover, proteoglycan expression was slightly lower in the mitral valves of MVP patients treated with MRA. Conclusions: These findings demonstrate, for the first time, that the Aldo/MR pathway regulates the phenotypic, molecular, and histological changes of valvular interstitial cells and valvular endothelial cells associated with MVP development. MRA treatment appears to be a promising option to reduce fibromyxomatous alterations in MVP.
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