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Suture-reinforced electrospun polydioxanone-elastin small-diameter tubes for use in vascular tissue engineering: a feasibility study.

机译:用于血管组织工程的缝合线增强型电纺聚二氧杂环己酮-弹性蛋白小直径管:可行性研究。

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摘要

This study characterizes the cross-linking of electrospun elastin and the mechanical properties of suture-reinforced 1.5mm internal diameter electrospun tubes composed of blended polydioxanone (PDO) and soluble elastin. Several tube configurations were tested to assess the effects of reinforcement on tube mechanical properties. Between the electrospun layers of each double-layered prosthetic, zero, one or two 6-0 sutures were wound, maintaining 1mm spacing with a pitch of 9 degrees . Single-layered tubes without suture were also examined. Samples were cross-linked and tested for compliance and burst strength. Compliance decreased significantly (p <0.05) and burst strength significantly increased (p <0.01) with reinforcement. Uncross-linked tubes were also tested to determine the effects of cross-linking. Results demonstrated that cross-linking significantly decreases burst strength (p <0.01), while decreases in compliance for cross-linked tubes were not significant. Cross-linked suture-reinforced PDO-elastin tubes had burst pressures more than 10 times greater than normal systolic pressures and exhibited a range of compliance values, including those matching native artery. These tubes display many characteristics of the "ideal" small-diameter graft, having mechanical properties that can be tailored to match those desired in vascular replacement applications.
机译:这项研究的特点是电纺弹性蛋白的交联和缝线增强的1.5mm内径的电纺管的机械性能,该电纺管由混合的聚二恶烷酮(PDO)和可溶性弹性蛋白组成。测试了几种管配置,以评估增强对管机械性能的影响。在每个双层假体的电纺丝层之间,缠绕零,一或两个6-0缝线,以1mm的间距保持9度的间距。还检查了没有缝合的单层管。将样品交联并测试顺应性和破裂强度。增强使顺应性显着降低(p <0.05),爆裂强度显着提高(p <0.01)。还测试了未交联的管以确定交联的效果。结果表明,交联显着降低了爆破强度(p <0.01),而交联管的顺应性降低则不明显。交联缝合线增强的PDO-弹性蛋白管的爆破压力是正常收缩压的10倍以上,并且表现出一定范围的顺应性值,包括与天然动脉相匹配的顺应性值。这些管显示出“理想的”小直径移植物的许多特征,其机械性能可以定制以匹配血管置换应用中所需的机械性能。

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