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Transient Elastic Support for Vein Grafts Using a Constricting Microfibrillar Polymer Wrap

机译:使用收缩性微纤维聚合物包裹物的静脉移植物的瞬态弹性支撑

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摘要

Arterial vein grafts (AVGs) often fail due to intimal hyperplasia, thrombosis, or accelerated atherosclerosis. Various approaches have been proposed to address AVG failure, including delivery of temporary mechanical support, many of which could be facilitated by peri-vascular placement of a biodegradable polymer wrap. The purpose of this work was to demonstrate that a polymer wrap can be applied to vein segments without compromising viability/function, and to demonstrate one potential application; i.e., gradually imposing the mid-wall circumferential wall stress (CWS) in wrapped veins exposed to arterial levels of pressure.Poly(ester urethane)urea, collagen, and elastin were combined in solution, and then electrospun onto freshly-excised porcine internal jugular vein segments. Tissue viability was assessed via Live/Dead™ staining for necrosis, and vasomotor-challenge with epinephrine and sodium nitroprusside for functionality. Wrapped vein segments were also perfused for 24-hrs within an ex vivo vascular perfusion system under arterial conditions (pressure=120/80 mmHg; flow=100 mL/min), and CWS was calculated every hour.Our results showed that the electrospinning process had no deleterious effects on tissue viability, and that the mid-wall CWS vs. time profile could be dictated through the composition and degradation of the electrospun wrap. This may have important clinical applications by enabling the engineering of an improved AVG.
机译:动脉静脉移植物(AVG)通常由于内膜增生,血栓形成或动脉粥样硬化加速失败。已经提出了各种方法来解决AVG的失败,包括传递临时的机械支撑,其中许多可以通过可生物降解的聚合物包裹物的血管周围放置来促进。这项工作的目的是证明可以在不损害生存力/功能的情况下将聚合物包裹物应用于静脉段,并证明一种潜在的用途。即,在暴露于动脉水平的包裹静脉中逐渐施加中壁周壁应力(CWS)。将聚(酯氨基甲酸酯)尿素,胶原蛋白和弹性蛋白混合在溶液中,然后电纺到刚切除的猪颈内静脉静脉段。通过Live / Dead™染色评估组织活力是否坏死,并用肾上腺素和硝普钠对血管舒缩进行功能评估。包裹的静脉段也在动脉条件下(压力= 120/80 mmHg;流量= 100 mL / min)在离体血管灌注系统中灌注24小时,并且每小时计算CWS。我们的结果表明电纺丝过程对组织活力没有有害影响,并且中壁CWS与时间的关系可以通过电纺膜的组成和降解来决定。通过设计改进的AVG,这可能具有重要的临床应用。

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