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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Novel biodegradable polycaprolactone occlusion device combining nanofibrous PLGA/collagen membrane for closure of atrial septal defect (ASD).
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Novel biodegradable polycaprolactone occlusion device combining nanofibrous PLGA/collagen membrane for closure of atrial septal defect (ASD).

机译:新型可生物降解的聚己内酯封闭装置,结合了纳米纤维PLGA /胶原膜,用于封闭房间隔缺损(ASD)。

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摘要

The purpose of this report was to develop novel biodegradable occlusion devices for closure of atrial septal defects (ASD). To manufacture the biodegradable occluders, polycaprolactone (PCL) components were first fabricated by a lab-scale micro-injection molding machine. They were then assembled and hot-spot welded into double umbrella-like devices of 50 mm in diameter. A special mechanism at the axis of the occluder was designed to self-lock the occluder after the two umbrellas were expanded. Furthermore, a nanofibrous matrix of poly-D-L-lactide-glycolide (PLGA)/type I collagen blend was produced via electrospinning to develop biodegradable and biomimetic anti-shunt membranes for the occluders. Characterization of the biodegradable PCL occluders was carried out. PCL occluders exhibited mechanical properties comparable to that of commercially available Amplatzer occluders. The sealing capability of biodegradable occluders was found superior to that of Amplatzer occluders. In addition, the cell attachment and spreading of endothelial cells seeded on the PLGA/collagen nanofibrous matrix and the interaction between cells and PLGA/collagen nanofibers were studied. The nanofibrous membranes made of PLGA/collagen were very effective in promoting cell proliferation during culture.
机译:本报告的目的是开发用于闭合房间隔缺损(ASD)的新型可生物降解的闭塞装置。为了制造可生物降解的封堵器,首先通过实验室规模的微注射成型机制造了聚己内酯(PCL)组件。然后将它们组装并热焊到直径50毫米的双伞状装置中。在遮盖器轴上设计了一种特殊的机制,可以在两个伞展开后自动锁定遮盖器。此外,通过电纺丝制备了聚-D-L-丙交酯-乙交酯(PLGA)/ I型胶原蛋白共混物的纳米纤维基质,以开发用于封堵器的可生物降解和仿生防分流膜。对可生物降解的PCL封堵器进行了表征。 PCL封堵器的机械性能可与市售Amplatzer封堵器相媲美。发现可生物降解的封堵器的密封能力优于Amplatzer封堵器。此外,研究了接种在PLGA /胶原纳米纤维基质上的内皮细胞的细胞附着和扩散以及细胞与PLGA /胶原纳米纤维之间的相互作用。 PLGA /胶原蛋白制成的纳米纤维膜在促进培养过程中的细胞增殖方面非常有效。

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