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首页> 外文期刊>Catheterization and cardiovascular interventions: Official journal of the Society for Cardiac Angiography & Interventions >Novel ultrahigh molecular weight amorphous PLLA bioresorbable coronary scaffold upsized up to 0.8 mm beyond nominal diameter: An OCT and histopathology study in porcine coronary artery model
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Novel ultrahigh molecular weight amorphous PLLA bioresorbable coronary scaffold upsized up to 0.8 mm beyond nominal diameter: An OCT and histopathology study in porcine coronary artery model

机译:小说超高分子量无定形PLLA生物可吸收冠状动脉脚手架高达0.8毫米,超出标称直径:猪冠状动脉模型中的OCT和组织病理学研究

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Objectives The aim of the study was to evaluate the biomechanical properties and healing pattern of novel sirolimus‐eluting, ultrahigh molecular weight amorphous poly‐L‐lactic acid bioresorbable scaffolds (S‐BRS) that have been postdilated by 0.55 and 0.8 mm beyond the nominal diameters within the pressure‐diameter compliance chart range. Background Due to the inherent limitations of bioabsorbable polymeric materials, overexpansion/upsizing may be very limited for some BRS such as the benchmark Absorb BVS. The unique biomechanical properties of the novel S‐BRS may allow it to be safely upsized. Methods and Results 12 coronary arteries of 4 healthy Yucatan mini‐swine underwent implantation of a novel S‐BRS. Upsizing by postdilation was performed up to 0.55mm (PLUS 0.55, n ?=?6) or 0.8 mm (PLUS 0.8, n ?=?6) in a manner maintaining consistent 1:1.1 stent‐to‐artery, thus ensuring not only the overexpansion of the scaffold but consistent level of arterial injury. Optical coherence tomography (OCT) follow‐up was performed at 28 and 90‐days follow‐up. There was no statistical difference between the tested groups in terms of acute recoil. OCT analysis after 28 days showed numerically lower levels of neointimal formation in PLUS 0.8 compared to PLUS 0.55 group. These results were sustained at 90‐days follow‐up. There was no difference in late recoil between studied groups. No scaffold discontinuation, deformation or overlapping of the struts were observed. Conclusions Overexpansion up to 0.8 mm of novel, high strength S‐BRS is not associated with worse angiographic outcomes, neointimal formation or biomechanical issues such as scaffold discontinuation, deformation or overlapping of the struts, neither acutely nor chronically. ? 2017 Wiley Periodicals, Inc.
机译:目的该研究的目的是评估新型西罗司洗脱液的生物力学性质和愈合模式,超高分子量无定形聚-L-乳酸生物可吸收支架(S-BRS),其超出标称值超过标称的0.55和0.8mm直径在压力直径舒张图范围内。背景技术由于生物可吸收聚合物材料的固有局限性,对于诸如基准吸收BVS的一些BRS来说,过度百分比/升高可能非常有限。新型S-BRS的独特生物力学特性可能使其安全地升高。方法和结果4个健康的尤卡坦迷你猪的冠状动脉进行了一种新型S-BRS的植入。通过延伸的封闭率升高至0.55mm(加0.55,n =Δ6)或0.8mm(加0.8,n =Δ6),以保持一致的1:1.1支架到动脉,从而确保不仅保证支架的过度陪伴,但一致的动脉损伤水平。光学相干断层扫描(OCT)随访时间在28和90天进行后续行动。在急性反冲方面,测试组之间没有统计学差异。 28天后OCT分析显示,与加0.55组相比,加上0.8的新内膜地层水平下降。这些结果在90天的随访中持续。学习群体之间的晚期反冲没有差异。没有观察到支柱的脚手架停止,变形或重叠。结论过度扩张性高达0.8毫米的新颖,高强度S-BRS与更差的血管造影结果,新内膜或生物力学问题如脚手架停止,变形或重叠,既不是急剧也不慢。还2017年Wiley期刊,Inc。

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