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细菌纤维素作为一种潜在的血管移植物:力学特性表征与本构模型的建立。

Bacterial cellulose as a potential vascular graft: Mechanical characterization and constitutive model development.

机构信息

School of Mechanical and Manufacturing Engineering, Dublin City University, Glasnevin, Dublin 9.

出版信息

J Biomed Mater Res B Appl Biomater. 2011 Apr;97(1):105-13. doi: 10.1002/jbm.b.31791. Epub 2011 Feb 2.

Abstract

Bacterial cellulose (BC) is a polysaccharide produced by Acetobacter Xylinum bacteria with interesting properties for arterial grafting and vascular tissue engineering including high-burst pressure, high-water content, high crystallinity, and an ultrafine highly pure fibrous structure similar to that of collagen. Given that compliance mismatch is one of the main factors contributing to the development of intimal hyperplasia in vascular replacement conduits, an in depth investigation of support mechanical properties of BC is required to further supporting its use in cardiovascular-grafting applications. The aim of this study was to mechanically characterize BC and also study its potential to accommodate vascular cells. To achieve these aims, inflation tests and uniaxial tensile tests were carried out on BC samples. In addition, dynamic compliance tests were conducted on BC tubes, and the results were compared to that of arteries, saphenous vein, expanded polytetrafluoroethylene, and Dacron grafts. BC tubes exhibited a compliance response similar to human saphenous vein with a mean compliance value of 4.27 × 10(-2) % per millimeter of mercury over the pressure range of 30-120 mmHg. In addition, bovine smooth muscle cells and endothelial cells were cultured on BC samples, and histology and fluorescent imaging analysis were carried out showing good adherence and biocompatibility. Finally, a method to predict the mechanical behavior of BC grafts in situ was established, whereby a constitutive model for BC was determined and used to model the BC tubes under inflation using finite element analysis.

摘要

细菌纤维素 (BC) 是由木醋酸杆菌产生的一种多糖,具有用于动脉移植和血管组织工程的有趣特性,包括高破裂压力、高含水量、高结晶度和类似于胶原蛋白的超精细高纯纤维结构。鉴于顺应性不匹配是导致血管替代导管中内膜增生发展的主要因素之一,因此需要深入研究 BC 的支撑力学性能,以进一步支持其在心血管移植应用中的使用。本研究的目的是对 BC 进行力学表征,并研究其容纳血管细胞的潜力。为了实现这些目标,对 BC 样品进行了充气测试和单轴拉伸测试。此外,还对 BC 管进行了动态顺应性测试,并将结果与动脉、大隐静脉、膨体聚四氟乙烯和涤纶移植物进行了比较。BC 管表现出类似于人隐静脉的顺应性响应,在 30-120mmHg 的压力范围内,平均顺应值为每毫米汞柱 4.27×10(-2) %。此外,牛平滑肌细胞和内皮细胞在 BC 样品上进行了培养,并进行了组织学和荧光成像分析,显示出良好的粘附性和生物相容性。最后,建立了一种预测 BC 移植物原位力学行为的方法,通过确定 BC 的本构模型并使用有限元分析对充气状态下的 BC 管进行建模。

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