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SMAD3 deficiency promotes vessel wall remodeling collagen fiber reorganization and leukocyte infiltration in an inflammatory abdominal aortic aneurysm mouse model

机译:SMAD3缺乏促进炎症性腹主动脉瘤小鼠模型中的血管壁重塑胶原纤维重组和白细胞浸润

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摘要

TGF-β signaling plays critical roles in the pathogenesis of aneurysms; however, it is still unclear whether its role is protective or destructive. In this study, we investigate the role of SMAD3 in the pathogenesis of calcium chloride (CaCl2)-induced abdominal aortic aneurysms (AAA) in Smad3−/−, Smad3+/− and Smad3+/+ mice. We find that loss of SMAD3 drastically increases wall thickening of the abdominal aorta. Histological analyses show significant vessel wall remodeling with elastic fiber fragmentation. Remarkably, under polarized light, collagen fibers in the hyperplastic adventitia of Smad3−/− mice show extensive reorganization accompanied by loosely packed thin and radial collagen fibers. The expressions of matrix metalloproteinases including MMP2, MMP9, and MMP12 and infiltration of macrophage/T cells are drastically enhanced in the vascular wall of Smad3−/− mice. We also observe marked increase of NF-κB and ERK1/2 signaling as well as the expression of nuclear Smad2, Smad4 and TGF-β1 in the vessel wall of Smad3−/− mice. In addition, we find that SMAD3 expression is reduced in the dedifferentiated medial smooth muscle-like cells of human AAA patients. These findings provide direct in vivo evidence to support the essential roles of SMAD3 in protecting vessel wall integrity and suppressing inflammation in the pathogenesis of AAAs.
机译:TGF-β信号传导在动脉瘤的发病机理中起着关键作用。然而,目前尚不清楚其作用是保护性的还是破坏性的。在这项研究中,我们调查SMAD3在Smad3 -/-,Smad3 +/- 中由氯化钙(CaCl2)引起的腹主动脉瘤(AAA)的发病机制中的作用。 >和Smad3 + / + 小鼠。我们发现SMAD3的损失大大增加了腹主动脉壁的增厚。组织学分析显示,由于弹性纤维断裂,血管壁明显重塑。值得注意的是,在偏振光下,Smad3 -/-小鼠增生外膜中的胶原纤维表现出广泛的重组,并伴随着松散堆积的细而径向的胶原纤维。在Smad3 -// 小鼠的血管壁中,基质金属蛋白酶(包括MMP2,MMP9和MMP12)的表达和巨噬细胞/ T细胞的浸润显着增强。我们还观察到Smad3 -// 小鼠血管壁中NF-κB和ERK1 / 2信号的显着增加以及核Smad2,Smad4和TGF-β1的表达。此外,我们发现SMAD3表达在人类AAA患者的去分化的内侧平滑肌样细胞中减少。这些发现提供了直接的体内证据,以支持SMAD3在保护血管壁完整性和抑制AAAs发病机理中的炎症中的重要作用。

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