Shape Memory Polymer Foam With Tunable Properties for Treatment of Intracranial Aneurysm

S. Pineda-Castillo, Jishan Luo, B. Bohnstedt, Chung-Hao Lee, Yingtao Liu
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Abstract

Intracranial aneurysms have the potential to be fatal; when detected, they must be treated promptly by surgical clipping or by endovascular methods. The latter, while having better long-term overall survival than the former, fail to provide complete occlusion of the aneurysm lumen, creating risks for therapy-related adverse events, such as embolic device migration or recanalization. Polyurethane shape memory polymers (SMPs) have the potential to provide patient-specific treatment to reduce rates of incomplete occlusion and mass effect. In this study, SMP matrices are infiltrated with carbon nanotubes (CNTs) to induce electrical conductivity and provide a precise triggering method for deployment of the embolic device. Through thermomechanical characterization of the composite, it was determined that CNTs play a significant role in resistivity of the SMP foam and its ultimate shape recovery properties. Cyclic mechanical testing allowed to determine that CNTs might induce polymeric matrix damage, creating the need for new approaches to CNT infiltration. The studied composite foams were able to occlude an in vitro idealized aneurysm phantom model, which allowed to conclude that the proposed CNT-infiltrated SMP foams exhibit potential as biomedical devices for endovascular therapy of intracranial aneurysms.
具有可调特性的形状记忆聚合物泡沫治疗颅内动脉瘤
颅内动脉瘤有可能是致命的;一旦发现,必须立即通过手术夹或血管内方法进行治疗。后者虽然比前者有更好的长期总生存率,但不能完全闭塞动脉瘤腔,造成治疗相关不良事件的风险,如栓塞装置迁移或再通。聚氨酯形状记忆聚合物(SMPs)具有提供患者特异性治疗的潜力,可以降低不完全闭塞率和质量效应。在这项研究中,SMP基质中渗透了碳纳米管(CNTs)以诱导导电性,并为栓塞装置的部署提供了精确的触发方法。通过对复合材料的热力学表征,确定了CNTs对SMP泡沫的电阻率和最终形状恢复性能起着重要作用。循环力学测试可以确定碳纳米管可能会引起聚合物基体损伤,从而需要新的碳纳米管渗透方法。所研究的复合泡沫能够封闭体外理想化的动脉瘤幻影模型,这使得我们可以得出结论,所提出的碳纳米管浸润的SMP泡沫具有作为颅内动脉瘤血管内治疗的生物医学设备的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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