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小动脉弹性蛋白的分布与结构——聚焦三维组织结构

Small Artery Elastin Distribution and Architecture-Focus on Three Dimensional Organization.

作者信息

Hill Michael A, Nourian Zahra, Ho I-Lin, Clifford Philip S, Martinez-Lemus Luis, Meininger Gerald A

机构信息

Dalton Cardiovascular Research Center, University of Missouri, Columbia, Missouri, USA.

Department of Medical Pharmacology and Physiology, University of Missouri, Columbia, Missouri, USA.

出版信息

Microcirculation. 2016 Nov;23(8):614-620. doi: 10.1111/micc.12294.

DOI:10.1111/micc.12294
PMID:27362628
Abstract

The distribution of ECM proteins within the walls of resistance vessels is complex both in variety of proteins and structural arrangement. In particular, elastin exists as discrete fibers varying in orientation across the adventitia and media as well as often resembling a sheet-like structure in the case of the IEL. Adding to the complexity is the tissue heterogeneity that exists in these structural arrangements. For example, small intracranial cerebral arteries lack adventitial elastin while similar sized arteries from skeletal muscle and intestinal mesentery exhibit a complex adventitial network of elastin fibers. With regard to the IEL, several vascular beds exhibit an elastin sheet with punctate holes/fenestrae while in others the IEL is discontinuous and fibrous in appearance. Importantly, these structural patterns likely sub-serve specific functional properties, including mechanosensing, control of external forces, mechanical properties of the vascular wall, cellular positioning, and communication between cells. Of further significance, these processes are altered in vascular disorders such as hypertension and diabetes mellitus where there is modification of ECM. This brief report focuses on the three-dimensional wall structure of small arteries and considers possible implications with regard to mechanosensing under physiological and pathophysiological conditions.

摘要

阻力血管壁内细胞外基质(ECM)蛋白的分布在蛋白质种类和结构排列方面都很复杂。特别是,弹性蛋白以离散的纤维形式存在,其在血管外膜和中膜中的取向各不相同,在内部弹性层(IEL)的情况下,弹性蛋白通常类似片状结构。这些结构排列中存在的组织异质性进一步增加了复杂性。例如,颅内小动脉缺乏外膜弹性蛋白,而来自骨骼肌和肠系膜的类似大小的动脉则表现出复杂的弹性蛋白纤维外膜网络。关于IEL,几个血管床呈现出带有点状孔/窗孔 的弹性蛋白片,而在其他血管床中,IEL外观上是不连续的且呈纤维状。重要的是,这些结构模式可能有助于特定的功能特性,包括机械传感、外力控制、血管壁的力学特性、细胞定位以及细胞间通讯。更重要的是,在诸如高血压和糖尿病等血管疾病中,这些过程会发生改变,其中ECM会发生改变。本简要报告重点关注小动脉的三维壁结构,并考虑在生理和病理生理条件下与机械传感相关的可能影响。

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