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弹性纤维:衰老和疾病过程中的形成、功能和命运。

Elastic fibers: formation, function, and fate during aging and disease.

机构信息

Fraunhofer Institute for Microstructure of Materials and Systems IMWS, Halle (Saale), Germany.

Institute of Pharmacy, Faculty of Natural Sciences I, Martin Luther University Halle-Wittenberg, Halle (Saale), Germany.

出版信息

FEBS J. 2022 Jul;289(13):3704-3730. doi: 10.1111/febs.15899. Epub 2021 May 10.

Abstract

Elastic fibers are extracellular components of higher vertebrates and confer elasticity and resilience to numerous tissues and organs such as large blood vessels, lungs, and skin. Their formation and maturation take place in a complex multistage process called elastogenesis. It requires interactions between very different proteins but also other molecules and leads to the deposition and crosslinking of elastin's precursor on a scaffold of fibrillin-rich microfibrils. Mature fibers are exceptionally resistant to most influences and, under healthy conditions, retain their biomechanical function over the life of the organism. However, due to their longevity, they accumulate damages during aging. These are caused by proteolytic degradation, formation of advanced glycation end products, calcification, oxidative damage, aspartic acid racemization, lipid accumulation, carbamylation, and mechanical fatigue. The resulting changes can lead to diminution or complete loss of elastic fiber function and ultimately affect morbidity and mortality. Particularly, the production of elastokines has been clearly shown to influence several life-threatening diseases. Moreover, the structure, distribution, and abundance of elastic fibers are directly or indirectly influenced by a variety of inherited pathological conditions, which mainly affect organs and tissues such as skin, lungs, or the cardiovascular system. A distinction can be made between microfibril-related inherited diseases that are the result of mutations in diverse microfibril genes and indirectly affect elastogenesis, and elastinopathies that are linked to changes in the elastin gene. This review gives an overview on the formation, structure, and function of elastic fibers and their fate over the human lifespan in health and disease.

摘要

弹性纤维是高等脊椎动物的细胞外成分,为许多组织和器官(如大血管、肺和皮肤)提供弹性和回弹性。它们的形成和成熟发生在一个复杂的多阶段过程中,称为弹性生成。它需要非常不同的蛋白质之间的相互作用,但也需要其他分子的相互作用,并导致弹性蛋白前体在富含原纤维蛋白的微纤维支架上的沉积和交联。成熟的纤维对大多数影响具有极强的抵抗力,在健康条件下,它们在生物体的整个生命周期内保持其生物力学功能。然而,由于它们的寿命长,在衰老过程中会积累损伤。这些损伤是由蛋白水解降解、晚期糖基化终产物的形成、钙化、氧化损伤、天冬氨酸外消旋化、脂质积累、氨甲酰化和机械疲劳引起的。由此产生的变化可导致弹性纤维功能的减弱或完全丧失,并最终影响发病率和死亡率。特别是,弹性蛋白原的产生已被明确证明会影响几种危及生命的疾病。此外,弹性纤维的结构、分布和丰度直接或间接地受到多种遗传性病理状况的影响,这些遗传性病理状况主要影响皮肤、肺或心血管系统等器官和组织。可以区分微纤维相关的遗传性疾病,这些疾病是多种微纤维基因突变的结果,间接影响弹性生成,以及弹性蛋白病,这些疾病与弹性蛋白基因的变化有关。这篇综述概述了弹性纤维的形成、结构和功能,以及它们在健康和疾病状态下人类寿命中的命运。

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