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剖析钙化性主动脉瓣疾病——瓣膜纤维化的作用、病因及驱动因素

Dissecting Calcific Aortic Valve Disease-The Role, Etiology, and Drivers of Valvular Fibrosis.

作者信息

Büttner Petra, Feistner Lukas, Lurz Philipp, Thiele Holger, Hutcheson Joshua D, Schlotter Florian

机构信息

Department of Internal Medicine/Cardiology, Heart Center Leipzig at University of Leipzig, Leipzig, Germany.

Department of Biomedical Engineering, Florida International University, Miami, FL, United States.

出版信息

Front Cardiovasc Med. 2021 May 10;8:660797. doi: 10.3389/fcvm.2021.660797. eCollection 2021.

Abstract

Calcific aortic valve disease (CAVD) is a highly prevalent and progressive disorder that ultimately causes gradual narrowing of the left ventricular outflow orifice with ensuing devastating hemodynamic effects on the heart. Calcific mineral accumulation is the hallmark pathology defining this process; however, fibrotic extracellular matrix (ECM) remodeling that leads to extensive deposition of fibrous connective tissue and distortion of the valvular microarchitecture similarly has major biomechanical and functional consequences for heart valve function. Significant advances have been made to unravel the complex mechanisms that govern these active, cell-mediated processes, yet the interplay between fibrosis and calcification and the individual contribution to progressive extracellular matrix stiffening require further clarification. Specifically, we discuss (1) the valvular biomechanics and layered ECM composition, (2) patterns in the cellular contribution, temporal onset, and risk factors for valvular fibrosis, (3) imaging valvular fibrosis, (4) biomechanical implications of valvular fibrosis, and (5) molecular mechanisms promoting fibrotic tissue remodeling and the possibility of reverse remodeling. This review explores our current understanding of the cellular and molecular drivers of fibrogenesis and the pathophysiological role of fibrosis in CAVD.

摘要

钙化性主动脉瓣疾病(CAVD)是一种高度常见且进行性发展的疾病,最终会导致左心室流出道逐渐变窄,进而对心脏产生严重的血流动力学影响。钙化矿物质沉积是定义这一过程的标志性病理特征;然而,导致纤维结缔组织广泛沉积和瓣膜微结构变形的纤维化细胞外基质(ECM)重塑同样对心脏瓣膜功能具有重大的生物力学和功能影响。在揭示控制这些活跃的细胞介导过程的复杂机制方面已经取得了重大进展,然而,纤维化与钙化之间的相互作用以及它们对细胞外基质渐进性硬化的各自贡献仍需进一步阐明。具体而言,我们将讨论:(1)瓣膜生物力学和分层的ECM组成;(2)细胞贡献模式、瓣膜纤维化的时间起始和危险因素;(3)瓣膜纤维化的成像;(4)瓣膜纤维化的生物力学影响;(5)促进纤维化组织重塑的分子机制以及逆向重塑的可能性。本综述探讨了我们目前对CAVD中纤维化形成的细胞和分子驱动因素以及纤维化病理生理作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61bd/8143377/82a8d98ae8a1/fcvm-08-660797-g0001.jpg

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