首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Preparation of an autologous heart valve with a stent (stent-biovalve) using the stent eversion method
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Preparation of an autologous heart valve with a stent (stent-biovalve) using the stent eversion method

机译:使用支架外翻法制备带有支架(支架-生物瓣膜)的自体心脏瓣膜

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摘要

We designed a novel method for constructing an autologous heart valve with a stent, called a stent-biovalve. In constructing completely autologous heart valves, named biovalves, which used in-body tissue architecture technology, tissues for leaflets were formed via ingrowths into narrow apertures in the preparation molds, frequently leading to delayed or incomplete biovalve preparation. In this technique, self-expandable nitinol stents after everting were mounted on an acrylic column-shaped part and partially covered with an acrylic cylinder-shaped part with three slits. This assembled mold was placed into subcutaneous abdominal pouches in beagles or goats for 4 weeks. Upon removing the acrylic parts after harvesting and trimming of capsulated tissues, a tubular hollow structure with three pocket-flaps of membranous tissue rigidly fixed to the stent's outer surface was obtained. Then, the stent was turned inside out to the original form, thus moving the pocket-flaps from outside to the inside. Stent-biovalves with a sufficient coaptation area were thus obtained with little tissue damage in all cases. The valve opened smoothly, and high aperture ratio was noted. This novel technique was thus highly effective in constructing a robust, completely autologous stent-biovalve with adequate valve function.
机译:我们设计了一种新颖的方法来构建带有支架的自体心脏瓣膜,称为支架生物瓣膜。在使用体内组织构造技术构建称为生物瓣膜的完全自体心脏瓣膜时,小叶的组织是通过向内生长到制备模具中的狭窄孔中而形成的,经常导致生物瓣膜制备的延迟或不完全。在该技术中,将翻边后的自膨胀镍钛合金支架安装在丙烯酸柱状部分上,并部分地覆盖有具有三个狭缝的丙烯酸圆柱状部分。将此组装好的模具放入比格犬或山羊皮下的腹部小袋中放置4周。在收获并修剪囊状组织后去除丙烯酸部分后,获得了管状空心结构,其具有三个袋状瓣膜组织牢固地固定在支架的外表面。然后,将支架从里到外翻转成原始形状,从而将皮瓣从外向内移动。因此获得了具有足够接合面积的支架-生物瓣膜,在所有情况下组织损伤很小。阀平稳打开,并注意到高开口率。因此,这项新技术在构建具有适当瓣膜功能的坚固,完全自体支架生物瓣膜方面非常有效。

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