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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >An In Vivo Rat Model of Artery Buckling for Studying Wall Remodeling
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An In Vivo Rat Model of Artery Buckling for Studying Wall Remodeling

机译:研究壁重塑的大鼠屈曲的体内大鼠模型

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Theoretical modeling and in vitro experiments have demonstrated that arterial buckling is a possible mechanism for the development of artery tortuosity. However, there has been no report of whether artery buckling develops into tortuosity, partially due to the lack of in vivo models for long-term studies. The objective of this study was to establish an in vivo buckling model in rat carotid arteries for studying arterial wall remodeling after buckling. Rat left carotid arteries were transplanted to the right carotid arteries to generate buckling under in vivo pressure and were maintained for 1 week to examine wall remodeling and adaptation. Our results showed that a significant buckling was achieved in the carotid arterial grafts with altered wall stress. Cell proliferation and matrix metalloprotinease-2 (MMP-2) expression in the buckled arteries increased significantly compared with the controls. The tortuosity level of the grafts also slightly increased 1 week post-surgery, while there was no change in vessel dimensions, blood pressure, and blood flow velocity. The artery buckling model provides a useful tool for further study of the adaptation of arteries into tortuous shapes.
机译:理论建模和体外实验表明,动脉屈曲是动脉曲折发展的可能机制。但是,目前尚无关于动脉屈曲是否发展成曲折的报道,部分原因是缺乏用于长期研究的体内模型。这项研究的目的是建立大鼠颈动脉的体内屈曲模型,以研究屈曲后的动脉壁重塑。将大鼠左颈动脉移植到右颈动脉以在体内压力下产生屈曲,并维持1周以检查壁的重塑和适应性。我们的结果表明,随着壁应力的改变,在颈动脉移植物中获得了明显的屈曲。与对照组相比,屈曲动脉中的细胞增殖和基质金属蛋白酶2(MMP-2)表达显着增加。术后1周,移植物的曲折度也略有增加,而血管尺寸,血压和血流速度没有变化。动脉屈曲模型为进一步研究动脉适应曲折形状提供了有用的工具。

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