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首页> 外文期刊>Journal of Thoracic Disease >Biomechanical properties and histomorphometric features of aortic tissue in patients with or without bicuspid aortic valve
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Biomechanical properties and histomorphometric features of aortic tissue in patients with or without bicuspid aortic valve

机译:患有或不含双囊主动脉瓣的患者主动脉组织的生物力学特性和组织畸形特征

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Background: We sought to investigate and compare biomechanical properties and histomorphometric findings of thoracic ascending aorta aneurysm (TAA) tissue from patients with bicuspid aortic valve (BAV) and tricuspid aortic valve (TAV) in order to clarify mechanisms underlying differences in the clinical course. Methods: Circumferential sections of TAA tissue in patients with BAV (BAV-TAA) and TAV (TAV-TAA) were obtained during surgery and used for biomechanical tests and histomorphometrical analysis. Results: In BAV-TAA, we observed biomechanical higher peak stress and lower Young modulus values compared with TAV-TAA wall. The right lateral longitudinal region seemed to be the most fragile zone of the TAA wall. Mechanical stress-induced rupture of BAV-TAA tissue was sudden and uniform in all aortic wall layers, whereas a gradual and progressive aortic wall breakage was described in TAV-TAA. Histomorphometric analysis revealed higher amount of collagen but not elastin in BAV-TAA tunica media. Conclusions: The higher deformability of BAV-TAA tissue supports the hypothesis that increased wall shear stress doesn’t explain the increased risk of sudden onset of rupture and dissection; other mechanisms, likely related to alteration of specific genetic pathways and epigenetic signals, could be investigated to explain differences in aortic dissection and rupture in BAV patients.
机译:背景:我们试图调查和比较来自双囊主动脉瓣膜(BAV)和三尖球主动脉瓣(TAV)患者的胸上升Aorta动脉瘤(TAA)组织的生物力学性质和组织组织,以澄清临床过程中差异的机制。方法:在手术期间获得了BAV(BAV-TAA)和TAV(TAV-TAA)患者TAA组织的圆周部分,用于生物力学测试和组织族分析。结果:在BAV-TAA中,与TAV-TAA墙相比,我们观察了生物力学较高的峰值应力和较低的杨氏模数值。右侧横向纵向区域似乎是TAA墙壁最脆弱的区域。所有主动脉壁层的机械应力诱导的Bav-Taa组织破裂是突然和均匀的,而在TAV -TAA中描述了逐渐和渐进的主动脉壁破裂。组织形态形状分析显示出较高量的胶原蛋白,但在BAV-TAA TUNICA介质中没有弹性蛋白。结论:BAV-TAA组织的较高可变形性支持墙面剪切应力增加的假设并不能解释破裂和解剖突然发作的增加;可以研究与特异性遗传途径和表观遗传信号的改变有关的其他机制,以解释BAV患者主动脉夹层和破裂的差异。

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