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Zn-alloy provides a novel platform for mechanically stable bioresorbable vascular stents

机译:锌合金为机械稳定的生物可吸收血管支架提供了一个新颖的平台

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摘要

Metallic Zn alloys have recently gained interest as potential candidates for developing platforms of bioresorbable vascular stents (BVS). Previous studies revealed that Mg alloys used for BVS can degrade too early, whereas PLLA materials may fail to provide effective scaffolding properties. Here we report on results of a new bioresorbable, metallic stent made from a Zn-Ag alloy studied in a porcine animal model of thrombosis and restenosis. While the tensile strength (MPa) of Zn-3Ag was higher than that of PLLA and resembled Mg’s (WE43), fracture elongation (%) of Zn-3Ag was much greater (18-fold) than the PLLA’s or Mg alloy’s (WE43). Zn-3Ag exposed to HAoSMC culture medium for 30 days revealed degradation elements consisting of Zn, O, N, C, P, and Na at a 6 nm surface depth. Platelet adhesion rates and blood biocompatibility did not differ between Zn-3Ag, PLLA, Mg (WE43), and non-resorbable Nitinol (NiTi) stent materials. Balloon-expandable Zn-3Ag alloy BVS implanted into iliofemoral arteries of 15 juvenile domestic pigs were easily visible fluoroscopically at implantation, and their bioresorption was readily detectable via X-ray over time. Histologically, arteries with Zn-3Ag BVS were completely endothelialized, covered with neointima, and were patent at 1, 3, and 6 months follow-up with no signs of stent thrombosis. Zn-3Ag alloy appears to be a promising material platform for the fabrication of a new generation of bioresorbable vascular stents.
机译:金属锌合金最近作为开发生物可吸收血管支架(BVS)平台的潜在候选者而受到关注。先前的研究表明,用于BVS的镁合金可能会过早降解,而PLLA材料可能无法提供有效的脚手架性能。在这里,我们报告由锌-银合金制成的新型可生物吸收的金属支架的结果,该支架在猪的血栓形成和再狭窄动物模型中进行了研究。 Zn-3Ag的拉伸强度(MPa)高于PLLA且类似于Mg(WE43),而Zn-3Ag的断裂伸长率(%)则比PLLA或Mg合金(WE43)大(18倍)。 。暴露于HAoSMC培养基30天的Zn-3Ag在6 nm的表面深度处显示出由Zn,O,N,C,P和Na组成的降解元素。 Zn-3Ag,PLLA,Mg(WE43)和不可吸收的镍钛诺(NiTi)支架材料之间的血小板粘附率和血液生物相容性没有差异。植入时容易在荧光镜下观察到15只幼猪的股动脉中植入的球囊扩张型Zn-3Ag合金BVS,并且随着时间的流逝,它们的生物吸收很容易通过X射线检测。从组织学上看,具有Zn-3Ag BVS的动脉已完全内皮化,覆盖有新内膜,并且在术后1、3和6个月获得了专利,没有支架血栓形成的迹象。 Zn-3Ag合金似乎是制造新一代生物可吸收血管支架的有前途的材料平台。

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