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Particulate Release From Nanoparticle-Loaded Shape Memory Polymer Foams

机译:纳米颗粒状形状记忆聚合物泡沫的颗粒释放

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摘要

Highly porous, open-celled shape memory polymer (SMP) foams are being developed for a number of vascular occlusion devices. Applications include abdominal aortic and neurovascular aneurysm or peripheral vascular occlusion. A major concern with implanting these high surface area materials in the vasculature is the potential to generate unacceptable particulate burden, in terms of number, size, and composition. This study demonstrates that particulate numbers and sizes in SMP foams are in compliance with limits stated by the most relevant standard and guidance documents. Particulates were quantified in SMP foams as made, postreticulation, and after incorporating nanoparticles intended to increase material toughness and improve radiopacity. When concentrated particulate treatments were administered to fibroblasts, they exhibited high cell viability (100%). These results demonstrate that the SMP foams do not induce an unacceptable level of risk to potential vascular occlusion devices due to particulate generation.
机译:高度多孔,开孔的形状记忆聚合物(SMP)泡沫正在为许多血管闭塞装置开发。应用包括腹主动脉和神经血管瘤或周围血管闭塞。在脉管系统中植入这些高表面积材料的主要问题是,就数量,大小和组成而言,潜在产生不可接受的微粒负荷的可能性。这项研究表明,SMP泡沫中的颗粒数量和大小符合最相关的标准和指导文件规定的限值。在制得的,网化后的以及掺入旨在增加材料韧性和改善射线不透性的纳米颗粒之后,对SMP泡沫中的颗粒进行定量。当对成纤维细胞进行浓缩颗粒处理时,它们表现出很高的细胞活力(100%)。这些结果表明,SMP泡沫不会由于颗粒的产生而对潜在的血管阻塞装置引起不可接受的风险水平。

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