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首页> 外文期刊>Annals of Biomedical Engineering >Tissue Engineering of Human Heart Valve Leaflets: A Novel Bioreactor for a Strain-Based Conditioning Approach
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Tissue Engineering of Human Heart Valve Leaflets: A Novel Bioreactor for a Strain-Based Conditioning Approach

机译:人心脏瓣膜小叶的组织工程:一种基于应变的调节方法的新型生物反应器。

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摘要

Current mechanical conditioning approaches for heart valve tissue engineering concentrate on mimicking the opening and closing behavior of the leaflets, either or not in combination with tissue straining. This study describes a novel approach by mimicking only the diastolic phase of the cardiac cycle, resulting in tissue straining. A novel, yet simplified, bioreactor system was developed for this purpose by applying a dynamic pressure difference over a closed tissue engineered valve, thereby inducing dynamic strains within the leaflets. Besides the use of dynamic strains, the developing leaflet tissues were exposed to prestrain induced by the use of a stented geometry. To demonstrate the feasibility of this strain-based conditioning approach, human heart valve leaflets were engineered and their mechanial behavior evaluated. The actual dynamic strain magnitude in the leaflets over time was estimated using numerical analyses. Preliminary results showed superior tissue formation and non-linear tissue-like mechanical properties in the strained valves when compared to non-loaded tissue strips. In conclusion, the strain-based conditioning approach, using both prestrain and dynamic strains, offers new possibilities for bioreactor design and optimization of tissue properties towards a tissue-engineered aortic human heart valve replacement.
机译:用于心脏瓣膜组织工程的当前机械调节方法集中于模仿或不结合组织拉紧来模仿小叶的打开和关闭行为。这项研究描述了一种仅模仿心脏周期舒张期的新方法,从而导致组织拉紧。为此目的,通过在封闭的组织工程瓣膜上施加动压差,从而在小叶内引起动应变,开发了一种新颖但简化的生物反应器系统。除了使用动态应变之外,将发育中的小叶组织暴露于通过使用带支架的几何结构诱导的预应变。为了证明这种基于应变的调节方法的可行性,对人体心脏瓣膜小叶进行了工程设计并评估了其机械行为。使用数值分析来估计随时间变化的小叶中的实际动态应变幅度。初步结果显示,与未加载的组织条带相比,应变瓣膜具有更好的组织形成和非线性的类组织机械性能。总之,使用预应变和动态应变的基于应变的调节方法为生物反应器设计和组织特性优化提供了新的可能性,从而可以进行组织工程化的主动脉瓣置换。

著录项

  • 来源
    《Annals of Biomedical Engineering》 |2005年第12期|1778-1788|共11页
  • 作者单位

    Department of Biomedical Engineering Eindhoven University of TechnologyClinic for Cardiovascular Surgery University Hospital ZürichDepartment of Biomedical Engineering Laboratory for Biomechanics and Tissue Engineering Eindhoven University of Technology;

    Department of Biomedical Engineering Eindhoven University of Technology;

    Department of Biomedical Engineering Eindhoven University of Technology;

    Department of Biomedical Engineering Eindhoven University of TechnologyClinic for Cardiovascular Surgery University Hospital Zürich;

    Department of Biomedical Engineering Eindhoven University of Technology;

    Department of Biomedical Engineering Eindhoven University of Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heart valve prostheses; Bioreactor; Mechanical conditioning; Straining; Modeling;

    机译:心脏瓣膜假体;生物反应器;机械调节;应变;建模;

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