Bhatia A, Vesely I
Dept.of Cardiothoracic Surgery,University of Southern California, and The Childrens Hospital Los Angeles, 4650 Sunset Blvd., Los Angeles,CA 90027.
Conf Proc IEEE Eng Med Biol Soc. 2005;2005:2979-80. doi: 10.1109/IEMBS.2005.1617099.
This paper reviews the rationale for developing a tissue-engineered aortic valve by building up the complex microstructure from its basic components, and presents recent progress towards that goal. Over the past 4 years, we have been working on engineering the functional components of the composite valve the collagen fiber bundles, the elastin sheets, and the hyaluronan matrix that keeps the tissue hydrated. Most recently, we have been working on optimizing the geometry and material properties of the collagen constructs, by varying their size and aspect ratio, and the types of loading protocols the constructs experience during the culture process.
本文回顾了通过从其基本组件构建复杂微观结构来开发组织工程主动脉瓣的基本原理,并展示了朝着该目标取得的最新进展。在过去的4年里,我们一直致力于构建复合瓣膜的功能组件——胶原纤维束、弹性蛋白片以及保持组织水润的透明质酸基质。最近,我们一直在通过改变胶原构建体的大小和纵横比,以及构建体在培养过程中所经历的加载方案类型,来优化胶原构建体的几何形状和材料特性。