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弹性成分的钙化:对心血管系统的影响。

Calcification of the elastic component: the impact on the cardiovascular system.

作者信息

Lofaro Francesco Demetrio, Mazzilli Alessia, Bonacorsi Susanna, Quaglino Daniela, Boraldi Federica

机构信息

Department of Life Sciences, University of Modena and Reggio Emilia, Modena, Italy.

出版信息

Front Cardiovasc Med. 2025 Aug 25;12:1636812. doi: 10.3389/fcvm.2025.1636812. eCollection 2025.

Abstract

In the cardiovascular system, elastic fibres exert a fundamental role providing the long-range elasticity required for physiological functions. Elastic fibres are complex in composition and structure containing, in addition to elastin, a wide range of matrix components, such as microfibrillar proteins, calcium-binding proteins and glycosaminoglycans. Changes in composition and/or structure can affect the biomechanics of the tissue as well as the intrinsic affinity of elastin for Ca ions. Mineralization of elastic fibres can occur in genetic as well as in age-related chronic diseases. In cardiovascular diseases, for instance, calcification represents an integral part of the pathogenetic process, although the regulatory mechanisms are not completely understood. Therefore, a focus is given on elastin synthesis and assembly, on elastic fibre components and on elastin degradation. Moreover, the role and the impact of altered composition and supramolecular organization of elastic fibres are described in the context of the calcified cardiovascular system. Finally, some and models of elastic fibres calcification are presented and discussed.

摘要

在心血管系统中,弹性纤维发挥着重要作用,为生理功能提供所需的远距离弹性。弹性纤维的组成和结构复杂,除了弹性蛋白外,还包含多种基质成分,如微原纤维蛋白、钙结合蛋白和糖胺聚糖。组成和/或结构的变化会影响组织的生物力学以及弹性蛋白对钙离子的内在亲和力。弹性纤维的矿化可发生在遗传性疾病以及与年龄相关的慢性疾病中。例如,在心血管疾病中,钙化是致病过程的一个组成部分,尽管其调节机制尚未完全明确。因此,重点关注弹性蛋白的合成与组装、弹性纤维成分以及弹性蛋白降解。此外,还在钙化心血管系统的背景下描述了弹性纤维组成和超分子组织改变的作用及影响。最后,介绍并讨论了一些弹性纤维钙化的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e40b/12414956/c4d8adb2b9bd/fcvm-12-1636812-g001.jpg

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