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新生赖氨酰氧化酶基因敲除小鼠易发生动脉瘤的胸主动脉的力学行为和基质体基因表达

Mechanical behavior and matrisome gene expression in the aneurysm-prone thoracic aorta of newborn lysyl oxidase knockout mice.

作者信息

Staiculescu Marius Catalin, Kim Jungsil, Mecham Robert P, Wagenseil Jessica E

机构信息

Department of Mechanical Engineering and Materials Science, Washington University, St. Louis, Missouri; and.

Department of Cell Biology and Physiology, Washington University, St. Louis, Missouri.

出版信息

Am J Physiol Heart Circ Physiol. 2017 Aug 1;313(2):H446-H456. doi: 10.1152/ajpheart.00712.2016. Epub 2017 May 26.

Abstract

Mutations in lysyl oxidase (LOX) are associated with thoracic aortic aneurysm and dissection (TAAD). Mice that do not express ( ) die soon after birth and have 60% and 40% reductions in elastin- and collagen-specific cross-links, respectively. LOX inactivation could also change the expression of secreted factors, the structural matrix, and matrix-associated proteins that constitute the aortic matrisome. We hypothesized that absence of will change the mechanical behavior of the aortic wall because of reduced elastin and collagen cross-linking and alter the expression levels of matrisome and smooth muscle cell (SMC) genes in a vascular location-specific manner. Using fluorescence microscopy, pressure myography, and gene set enrichment analysis, we visualized the microarchitecture, quantified the mechanical behavior, and examined matrisome and SMC gene expression from ascending aortas (AAs) and descending aortas (DAs) from newborn and mice. Even though AAs and DAs have fragmented elastic laminae and disorganized SMCs, the unloaded outer diameter and wall thickness were similar to AAs and DAs. AAs and DAs have altered opening angles, circumferential stresses, and circumferential stretch ratios; however, only AAs have increased pressurized diameters and tangent moduli. Gene set enrichment analysis showed upregulation of the extracellular matrix (ECM) regulator gene set in AAs and DAs as well as differential expression of secreted factors, collagens, ECM-affiliated proteins, ECM glycoproteins, and SMC cell cycle gene sets that depend on the genotype and vascular location. These results provide insights into the local chemomechanical changes induced by inactivation that may be important for TAAD pathogenesis. Absence of lysyl oxidase () causes thoracic aortic aneurysms. The aortic mechanical behavior of mice is consistent with reduced elastin and collagen cross-linking but demonstrates vascular location-specific differences. aortas show upregulation of matrix remodeling genes and location-specific differential expression of other matrix and smooth muscle cell gene sets.

摘要

赖氨酰氧化酶(LOX)突变与胸主动脉瘤和夹层(TAAD)相关。不表达( )的小鼠出生后不久即死亡,弹性蛋白和胶原蛋白特异性交联分别减少60%和40%。LOX失活还可能改变构成主动脉基质组的分泌因子、结构基质和基质相关蛋白的表达。我们推测,由于弹性蛋白和胶原蛋白交联减少,缺乏( )会改变主动脉壁的力学行为,并以血管位置特异性方式改变基质组和平滑肌细胞(SMC)基因的表达水平。使用荧光显微镜、压力肌动描记法和基因集富集分析,我们观察了新生( )和( )小鼠升主动脉(AA)和降主动脉(DA)的微观结构,量化了力学行为,并检测了基质组和SMC基因表达。尽管( )的AA和DA弹性层破碎且SMC排列紊乱,但其空载外径和壁厚与( )的AA和DA相似。( )的AA和DA开口角度、周向应力和周向拉伸比发生改变;然而,只有( )的AA加压直径和切线模量增加。基因集富集分析显示,( )的AA和DA中细胞外基质(ECM)调节基因集上调,以及取决于( )基因型和血管位置的分泌因子、胶原蛋白、ECM相关蛋白、ECM糖蛋白和SMC细胞周期基因集的差异表达。这些结果为( )失活引起的局部化学力学变化提供了见解,这些变化可能对TAAD发病机制很重要。缺乏赖氨酰氧化酶( )会导致胸主动脉瘤。( )小鼠的主动脉力学行为与弹性蛋白和胶原蛋白交联减少一致,但表现出血管位置特异性差异。( )主动脉显示基质重塑基因上调以及其他基质和平滑肌细胞基因集的位置特异性差异表达。

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