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Biomechanical properties of native and tissue engineered heart valve constructs

机译:天然和组织工程化心脏瓣膜结构的生物力学特性

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摘要

Due to the increasing number of heart valve diseases, there is an urgent clinical need for off-the-shelf tissue engineered heart valves. While significant progress has been made toward improving the design and performance of both mechanical and tissue engineered heart valves (TEHVs), a human implantable, functional, and viable TEHV has remained elusive. In animal studies so far, the implanted TEHVs have failed to survive more than a few months after transplantation due to insufficient mechanical properties. Therefore, the success of future heart valve tissue engineering approaches depends on the ability of the TEHV to mimic and maintain the functional and mechanical properties of the native heart valves. However, aside from some tensile quasistatic data and flexural or bending properties, detailed mechanical properties such as dynamic fatigue, creep behavior, and viscoelastic properties of heart valves are still poorly understood. The need for better understanding and more detailed characterization of mechanical properties of tissue engineered, as well as native heart valve constructs is thus evident. In the current review we aim to present an overview of the current understanding of the mechanical properties of human and common animal model heart valves. The relevant data on both native and tissue engineered heart valve constructs have been compiled and analyzed to help in defining the target ranges for mechanical properties of TEHV constructs, particularly for the aortic and the pulmonary valves. We conclude with a summary of perspectives on the future work on better understanding of the mechanical properties of TEHV constructs.
机译:由于心脏瓣膜疾病的数量增加,迫切需要现成的组织工程化心脏瓣膜的临床需求。尽管在改善机械和组织工程心脏瓣膜(TEHV)的设计和性能方面已取得重大进展,但人类可植入,功能和可行的TEHV仍然难以捉摸。到目前为止,在动物研究中,由于机械性能不足,植入的TEHVs未能在移植后几个月内存活下来。因此,未来心脏瓣膜组织工程方法的成功取决于TEHV模仿并维持天然心脏瓣膜的功能和机械特性的能力。但是,除了一些准静态拉伸数据和弯曲或弯曲特性外,对心脏瓣膜的详细机械性能(如动态疲劳,蠕变行为和粘弹性)仍然知之甚少。因此,显然需要更好地了解和更详细地表征工程改造的组织以及天然心脏瓣膜结构的机械性能。在当前的审查中,我们旨在介绍对人类和普通动物模型心脏瓣膜的机械性能的最新了解。已对天然和组织工程心脏瓣膜结构的相关数据进行了汇编和分析,以帮助确定TEHV结构(尤其是主动脉瓣膜和肺动脉瓣)机械性能的目标范围。我们以对未来工作的观​​点的总结作为总结,以更好地理解TEHV结构的机械性能。

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