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Age-related changes in biomechanical properties of transgenic porcine pulmonary and aortic conduits

机译:转基因猪肺和主动脉导管生物力学特性的年龄相关变化

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摘要

The limitations associated with conventional valve prosthesis have led to a search for alternatives. One potential approach is tissue engineering. Most tissue engineering studies have described the biomechanical properties of heart valves derived from adult pigs. However, because one of the factors affecting the function of valve prosthesis after implantation is appropriate sizing for a given patient, it is important to evaluate the usefulness of a heart valve given the donor animal's weight and age. The aim of this study was to evaluate how the age of a pig can influence the biomechanical and hemodynamical properties of porcine heart valve prosthesis after acellularization. Acellular porcine aortic and pulmonary valve conduits were used. Hearts were harvested from animals differing in weight and age. The biomechanical properties of the valves were then characterized using a uniaxial tensile test. Moreover, computer simulations based on the finite element method (FEM) were used to study the influence of biomechanical properties on the hemodynamic conditions. Studying biomechanical and morphological changes in porcine heart valve conduits according to the weight and age of the animals can be valuable for developing age-targeted therapy using tissue engineering techniques.
机译:与常规瓣膜假体相关的局限性导致人们寻找替代方案。一种潜在的方法是组织工程。大多数组织工程研究都描述了源自成年猪的心脏瓣膜的生物力学特性。但是,由于影响瓣膜假体植入后功能的因素之一是给定患者的合适尺寸,因此,鉴于给定动物的体重和年龄,评估心脏瓣膜的有用性很重要。这项研究的目的是评估猪的年龄如何影响脱细胞后猪心脏瓣膜假体的生物力学和血液动力学特性。使用无细胞猪的主动脉和肺动脉瓣膜导管。从体重和年龄不同的动物收获心脏。然后使用单轴拉伸试验表征阀门的生物力学性能。此外,基于有限元方法(FEM)的计算机模拟被用来研究生物力学特性对血液动力学状况的影响。根据动物的体重和年龄研究猪心脏瓣膜导管的生物力学和形态变化,对于利用组织工程技术开发针对年龄的治疗方法可能是有价值的。

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