小鼠动脉的组成模型表明,定向耦合和细胞外基质重塑的变化取决于动脉类型、年龄、性别和弹性蛋白量。

IF 1.7 4区 医学 Q4 BIOPHYSICS
Keshav A Kailash, Jie Z Hawes, Austin J Cocciolone, Matthew R Bersi, Robert P Mecham, Jessica E Wagenseil
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引用次数: 0

摘要

动脉僵化发生在自然衰老过程中,与不良心血管事件风险的增加有关,而且男性和女性的发生时间不同。动脉僵化的一个机制包括细胞外基质(ECM)的重塑,这改变了动脉壁的材料特性。我们使用弹性蛋白单倍体不足(Eln+/-)和野生型(Eln+/+)小鼠来研究两种不同动脉(升主动脉和颈动脉)的材料特性如何随年龄、性别和 ECM 组成而变化。我们使用了由 Dong 和 Sun 设计的构成模型,该模型基于 Holzapfel-Gasser-Ogden (HGO) 模型,但不需要离散数量的纤维 ECM 家族,而且允许不同的变形耦合。我们发现,最佳拟合模型的变形耦合量取决于动脉类型。我们还发现,重塑以保持生物力学参数的同态(即年轻、野生型)值与年龄、性别和 ECM 成分有关,这取决于动脉类型,升主动脉比颈动脉的适应性更强。拟合材料常数表明重塑与性别有关,这对于确定男性和女性动脉僵化的时间进程可能很重要。我们将拟合材料常数与通过生化(升主动脉)或组织学(颈动脉)方法测量的 ECM 成分相关联。我们发现 ECM 成分与各组平均值的材料参数之间存在明显的相关性,生化测量结果比组织学测量结果的相关性更强。了解动脉僵化如何取决于年龄、性别、ECM 成分和动脉类型,有助于设计有效的个性化临床治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Constitutive Modeling of Mouse Arteries Suggests Changes in Directional Coupling and Extracellular Matrix Remodeling That Depend on Artery Type, Age, Sex, and Elastin Amounts.

Arterial stiffening occurs during natural aging, is associated with an increased risk of adverse cardiovascular events, and can follow different timelines in males and females. One mechanism of arterial stiffening includes remodeling of the extracellular matrix (ECM), which alters the wall material properties. We used elastin haploinsufficient (Eln+/-) and wildtype (Eln+/+) mice to investigate how material properties of two different arteries (ascending aorta and carotid artery) change with age, sex, and ECM composition. We used a constitutive model by Dong and Sun that is based on the Holzapfel-Gasser-Ogden (HGO) type, but does not require a discrete number of fibrous ECM families and allows varied deformation coupling. We find that the amount of deformation coupling for the best fit model depends on the artery type. We also find that remodeling to maintain homeostatic (i.e., young, wildtype) values of biomechanical parameters with age, sex, and ECM composition depends on the artery type, with ascending aorta being more adaptable than carotid artery. Fitted material constants indicate sex-dependent remodeling that may be important for determining the time course of arterial stiffening in males and females. We correlated fitted material constants with ECM composition measured by biochemical (ascending aorta) or histological (carotid artery) methods. We show significant correlations between ECM composition and material parameters for the mean values for each group, with biochemical measurements correlating more strongly than histological measurements. Understanding how arterial stiffening depends on age, sex, ECM composition, and artery type may help design effective, personalized clinical treatment strategies.

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来源期刊
CiteScore
3.40
自引率
5.90%
发文量
169
审稿时长
4-8 weeks
期刊介绍: Artificial Organs and Prostheses; Bioinstrumentation and Measurements; Bioheat Transfer; Biomaterials; Biomechanics; Bioprocess Engineering; Cellular Mechanics; Design and Control of Biological Systems; Physiological Systems.
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