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兔模型中糖尿病主动脉的力学特性和材料建模。

Mechanical Characterization and Material Modeling of Diabetic Aortas in a Rabbit Model.

机构信息

Shanghai East Hospital, Institute for Biomedical Engineering and Nano Science, Tongji University School of Medicine, Chifeng Road 67, Shanghai, 200092, People's Republic of China.

School of Aerospace Engineering and Applied Mechanics, Tongji University, Shanghai, People's Republic of China.

出版信息

Ann Biomed Eng. 2018 Mar;46(3):429-442. doi: 10.1007/s10439-017-1955-9. Epub 2017 Nov 9.

Abstract

Diabetes has been recognized as a major risk factor to cause macrovascular diseases and plays a key role in aortic wall remodeling. However, the effects of diabetes on elastic properties of aortas remain largely unknown and quantitative mechanical data are lacking. Thirty adult rabbits (1.6-2.2 kg) were collected and the type 1 diabetic rabbit model was induced by injection of alloxan. A total of 15 control and 15 diabetic rabbit (abdominal) aortas were harvested. Uniaxial and biaxial tensile tests were performed to measure ultimate tensile strength and to characterize biaxial mechanical behaviors of the aortas. A material model was fitted to the biaxial experimental data to obtain constitutive parameters. Histological and mass fraction analyses were performed to investigate the underlying microstructure and dry weight percentages of elastin and collagen in the control and the diabetic aortas. No statistically significant difference was found in ultimate tensile strength between the control and the diabetic aortas. Regarding biaxial mechanical responses, the diabetic aortas exhibited significantly lower extensibility and significantly higher tissue stiffness than the control aortas. Notably, tissue stiffening occurred in both circumferential and axial directions for the diabetic aortas; however, mechanical anisotropy does not change significantly. The material model was able to fit biaxial experimental data very well. Histology showed that a number of isolated foam cells were embedded in the diabetic aortas and hyperplasia of collagen was identified. The dry weight percentages of collagen within the diabetic aortas increased significantly as compared to the control aortas, whereas no significant change was found for that of elastin. Our data suggest that the diabetes impairs elastic properties and alters microstructure of the aortas and consequently, these changes may further contribute to complex aortic wall remodeling.

摘要

糖尿病已被认为是导致大血管疾病的主要危险因素,在主动脉壁重塑中起关键作用。然而,糖尿病对主动脉弹性的影响在很大程度上仍不清楚,缺乏定量力学数据。本研究共收集了 30 只成年新西兰大白兔(1.6-2.2kg),通过注射链脲佐菌素诱导 1 型糖尿病兔模型。共采集 15 只正常对照和 15 只糖尿病兔(腹部)的主动脉。进行单轴和双轴拉伸试验以测量极限拉伸强度,并对主动脉的双轴力学性能进行表征。将材料模型拟合到双轴实验数据中以获得本构参数。进行组织学和质量分数分析,以研究控制和糖尿病主动脉的潜在微观结构以及弹性蛋白和胶原蛋白的干重百分比。控制组和糖尿病组主动脉的极限拉伸强度无统计学差异。在双轴力学响应方面,糖尿病主动脉的延展性显著降低,组织刚度显著升高。值得注意的是,糖尿病主动脉在环向和轴向均发生组织僵硬,而力学各向异性无明显变化。材料模型能够很好地拟合双轴实验数据。组织学显示,一些孤立的泡沫细胞嵌入糖尿病主动脉中,并发现胶原蛋白增生。与对照组相比,糖尿病主动脉中的胶原蛋白干重百分比显著增加,而弹性蛋白无明显变化。我们的数据表明,糖尿病会损害主动脉的弹性特性并改变其微观结构,从而可能进一步导致复杂的主动脉壁重塑。

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