首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials Pt.4; Jul 7-11, 2003; Leganes, Madrid, Spain >Pulsatile Flow Testing of a Biomaterial/Polymer Composite Heart Valve Obtained Through Tissue Engineering
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Pulsatile Flow Testing of a Biomaterial/Polymer Composite Heart Valve Obtained Through Tissue Engineering

机译:通过组织工程获得的生物材料/聚合物复合心脏瓣膜的搏动流测试

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To improve biocompatibility and durability of valve prostheses, "tissue engineering" is being investigated to develop an ideal replacement heart valve. Our approach is to extract all cells from porcine heart valves leaving behind only a collagenous matrix. The remaining collagen framework is reinforced using slowly resorbable, biodegradable polymers poly(4-hydroxybutyrate) and poly(3/4-hydroxybutyrate). To determine if the bioresorbable polymer/collagen composite possesses the mechanical properties necessary for a replacement heart valve, pulsatile flow studies were carried out in a pulse-duplicator. Instrumentation allows simultaneously measurement of flow rate and pressure drop across the valve, while leaflet motion is assessed by high-resolution video morphometry (500 frames/sec). Matrices at various stages in the tissue engineering process were tested. Strictly decellularized valves performed like normal valves with minimal leakage. The mechanical properties of the polymer/collagen composite valves varied markedly, depending on the type of polymer as well as the polymer concentration in the coating suspension. Further development is necessary to achieve an effective polymer/collagen coupling for dynamic usage.
机译:为了改善瓣膜假体的生物相容性和耐用性,正在研究“组织工程”以开发理想的置换心脏瓣膜。我们的方法是从猪心脏瓣膜中提取所有细胞,仅留下胶原蛋白基质。使用缓慢吸收的,可生物降解的聚合物聚(4-羟基丁酸酯)和聚(3 / 4-羟基丁酸酯)增强剩余的胶原蛋白骨架。为了确定生物可吸收的聚合物/胶原蛋白复合物是否具有更换心脏瓣膜所需的机械性能,在脉冲复制器中进行了脉动流研究。仪器可以同时测量整个瓣膜的流速和压降,同时可以通过高分辨率视频形态学(500帧/秒)评估瓣叶运动。测试了组织工程过程中各个阶段的基质。严格脱细胞的瓣膜表现与正常瓣膜相似,泄漏最少。聚合物/胶原蛋白复合阀的机械性能显着变化,这取决于聚合物的类型以及涂料悬浮液中的聚合物浓度。为了实现动态使用的有效聚合物/胶原偶联,需要进一步开发。

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