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首页> 外文期刊>Catheterization and cardiovascular interventions: Official journal of the Society for Cardiac Angiography & Interventions >Bench and Initial Preclinical Results of a Novel 8 mm Diameter Double Opposed Helical Biodegradable Stent
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Bench and Initial Preclinical Results of a Novel 8 mm Diameter Double Opposed Helical Biodegradable Stent

机译:新颖的8毫米直径双相对螺旋可生物降解支架的新颖初始临床前结果

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Background: Metallic endovascular stents are utilized off-label in congenital heart disease. Biodegradable stents (BDS) offer potential advantages in a growing child. We have previously reported double opposed helical (DH) BDS up to 6 mm diameter (DH-6). The objectives are to investigate the bench characteristics of larger 8 mm diameter BDS (DH-8) manufactured with increasing strut thicknesses and the inflammatory profile in a porcine model. Methods: DH-8 were manufactured with strut thicknesses 0.10, 0.12, and 0.18 mm and mechanical testing performed. Stents were deployed into the infrarenal descending aorta (DAO) of nine minipigs. At insertion (nonsurvival=2), 1 week (n=2), 1 month (n=2), and 9 months (n=3) follow-up angiography, intravascular ultrasound and histopathology were performed. Results: There was superior recoil and collapse pressure with increasing strut thickness, with 0.18 mm having 1.0% elastic recoil and collapse pressure 0.75 Atmospheres. There was good wall apposition at insertion with 5 BDS (4 DH-8 and 1 DH-6) but suboptimal in 4 as the minipigs infrarenal DAO were > 8 mm (deployed at iliac bifurcation). Structural integrity was maintained in 8 BDS with 1 DH-8 collapsed at 9 months, secondary to strut damage at insertion. No thrombosis was seen. There was mild inflammation and neointimal proliferation at 1 week and 1 month, but a moderate inflammatory response at 9 months. Conclusions: DH-8 with increased strut thickness had acceptable mechanical properties at the cost of an increased inflammatory response. Miniaturization to improve delivery and further investigation on the long-term inflammatory profile of thicker struts, including through degradation, is needed. (C) 2016 Wiley Periodicals, Inc.
机译:背景:在先天性心脏病中使用金属血管支架。可生物降解的支架(BDS)在不断增长的孩子中提供潜在的优势。我们之前报告的双反对螺旋(DH)BDS直径高达6毫米(DH-6)。目的是研究用增加的支柱厚度和猪模型中的炎症型材制造的较大8mm直径的BDS(DH-8)的台式特性。方法:用支柱厚度0.10,0.12和0.18mm制造DH-8,并进行机械测试。支架被部署到九米皮脂的Infrarenal下降主动脉(DAO)中。在插入(非尿= 2)时,1周(n = 2),1个月(n = 2)和9个月(n = 3)进行后续血管造影,进行血管内超声和组织病理学。结果:厚度较大的升压和塌陷压力越来越高,厚度为0.18毫米,弹性反冲和坍塌压力为0.75大气压。插入有5个BDS(4 DH-8和1 DH-6)的墙壁偏离,但在4中次开,因为MINIPIGS Infraenal DAO> 8毫米(在髂分叉处部署)。结构完整性在8bds中维持在9个月内,在9个月内倒塌,继发于插入时损伤。没有看到血栓形成。 1周和1个月内有轻微的炎症和内膜增殖,但在9个月内具有中度炎症反应。结论:具有增加的支柱厚度的DH-8具有增加的炎症反应成本的机械性能。需要小型化,改善递送和进一步调查较厚的支柱的长期炎症性曲线,包括通过降解。 (c)2016 Wiley期刊,Inc。

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