Ferruzzi J, Bersi M R, Uman S, Yanagisawa H, Humphrey J D
J Biomech Eng. 2015 Mar;137(3):0310071-03100714. doi: 10.1115/1.4029431. Epub 2015 Jan 29.
Central artery stiffness has emerged over the past 15 years as a clinically significant indicator of cardiovascular function and initiator of disease. Loss of elastic fiber integrity is one of the primary contributors to increased arterial stiffening in aging, hypertension, and related conditions. Elastic fibers consist of an elastin core and multiple glycoproteins; hence defects in any of these constituents can adversely affect arterial wall mechanics. In this paper, we focus on mechanical consequences of the loss of fibulin-5, an elastin-associated glycoprotein involved in elastogenesis. Specifically, we compared the biaxial mechanical properties of five central arteries-the ascending thoracic aorta, descending thoracic aorta, suprarenal abdominal aorta, infrarenal abdominal aorta, and common carotid artery-from male and female wild-type and fibulin-5 deficient mice. Results revealed that, independent of sex, all five regions in the fibulin-5 deficient mice manifested a marked increase in structural stiffness but also a marked decrease in elastic energy storage and typically an increase in energy dissipation, with all differences being most dramatic in the ascending and abdominal aortas. Given that the primary function of large arteries is to store elastic energy during systole and to use this energy during diastole to work on the blood, fibulin-5 deficiency results in a widespread diminishment of central artery function that can have significant effects on hemodynamics and cardiac function.
在过去15年里,中心动脉僵硬度已成为心血管功能的一个具有临床意义的指标和疾病的引发因素。弹性纤维完整性的丧失是衰老、高血压及相关病症中动脉僵硬度增加的主要原因之一。弹性纤维由一个弹性蛋白核心和多种糖蛋白组成;因此,这些成分中任何一种的缺陷都会对动脉壁力学产生不利影响。在本文中,我们重点关注纤连蛋白-5缺失的力学后果,纤连蛋白-5是一种参与弹性生成的弹性蛋白相关糖蛋白。具体而言,我们比较了雄性和雌性野生型及纤连蛋白-5缺陷型小鼠的五条中心动脉(升主动脉、降主动脉、肾上腺上腹部主动脉、肾上腺下腹部主动脉和颈总动脉)的双轴力学性能。结果显示,与性别无关,纤连蛋白-5缺陷型小鼠的所有五个区域都表现出结构僵硬度显著增加,但弹性能量储存显著减少,能量耗散通常增加,所有差异在升主动脉和腹主动脉中最为显著。鉴于大动脉的主要功能是在收缩期储存弹性能量,并在舒张期利用这种能量作用于血液,纤连蛋白-5缺乏会导致中心动脉功能广泛减弱,这可能对血流动力学和心脏功能产生重大影响。