首页> 外文期刊>Journal of endovascular therapy: an official journal of the International Society of Endovascular Specialists >A sutureless aortic stent-graft based on a nitinol scaffold bonded to a compliant nanocomposite polymer is durable for 10 years in a simulated in vitro model
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A sutureless aortic stent-graft based on a nitinol scaffold bonded to a compliant nanocomposite polymer is durable for 10 years in a simulated in vitro model

机译:基于镍钛诺支架结合到顺应性纳米复合聚合物的无缝主动脉支架移植物在模拟的体外模型中可持久使用10年

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Purpose: To physiologically test the durability of a sutureless aortic stent-graft based on nitinol bonded to polyhedral oligomeric silsesquioxane (POSS) and poly(carbonate-urea) urethane (PCU) for 10 years according to Food and Drug Administration guidelines. Methods: Aortic stent-grafts (n=4) were tested in 37uC distilled water using simulated in vivo hydrodynamic pulse loading. After 400 million cycles, surface topography was assessed by scanning electron microscopy (SEM) and Fourier transform infrared (FTIR) spectroscopy. Dynamic compliance was measured using a pulsatile flow phantom. Mechanical and elastic properties were determined by stress-strain studies and elastic deformation tests. Dynamic scanning calorimetry (DSC) and thermomechanical analysis (TMA) were used to assess thermal resistance. Comparison was made with a zero-cycled control. Results: All stent-grafts successfully completed accelerated pulsatile fatigue at 94±14-mmHg pulse pressure. SEM images confirmed uniform surface topography without any fractures. FTIR showed increased intensity of -NHCO- bonds, but there was no significant sign of biodegradation. Tensile stress of fatigue-tested polymer compared favorably with the zero-cycled control at 50% to 500% strain (p=0.69). At a mean pressure range of 60 to 120 mmHg, overall compliance of the fatigue-tested grafts was 3.4861.27%mmHg-1×10-2 with no significant difference compared to control (3.2±60.65%mmHg-1×10-2; p=0.47). DSC and TMA showed comparable thermotropic transition. Conclusion: Simulated physiological in vivo hydrodynamic loading has no significant degradative effect on an innovative sutureless stent-graft made from POSS-PCU nanocomposite polymer. Sutureless technology incorporating nitinol stents proved to be robust, with no separation over an accelerated 10-year cycle, which may allow development of durable stent-grafts with better compliance.
机译:目的:根据食品和药物管理局的指导,对基于镍钛诺与多面体低聚倍半硅氧烷(POSS)和聚碳酸脲(PCU)结合的无缝合主动脉支架移植物进行生理测试10年。方法:使用模拟体内流体动力脉冲加载,在37uC蒸馏水中测试主动脉支架移植物(n = 4)。经过4亿次循环后,通过扫描电子显微镜(SEM)和傅里叶变换红外(FTIR)光谱对表面形貌进行了评估。使用脉动流幻影仪测量动态顺应性。通过应力应变研究和弹性变形测试确定机械和弹性性能。动态扫描量热法(DSC)和热机械分析(TMA)用于评估热阻。用零周期控制进行比较。结果:所有支架植入物在94±14-mmHg脉冲压力下成功完成了加速的搏动性疲劳。 SEM图像证实了均匀的表面形貌而没有任何断裂。 FTIR显示-NHCO-键的强度增加,但是没有明显的生物降解迹象。经疲劳测试的聚合物的拉伸应力与在50%至500%应变下的零循环对照组相比具有优势(p = 0.69)。在60至120 mmHg的平均压力范围内,经疲劳测试的移植物的总体顺应性为3.4861.27%mmHg-1×10-2,与对照组相比无显着差异(3.2±60.65%mmHg-1×10-2 ; p = 0.47)。 DSC和TMA显示出可比较的热致转变。结论:模拟的体内生理流体动力载荷对由POSS-PCU纳米复合聚合物制成的新型无缝合支架植入物没有明显的降解作用。事实证明,结合了镍钛合金支架的无缝合技术是坚固的,在加速的10年周期内没有分离,这可能允许开发出具有更好顺应性的耐用型支架。

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