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Optimization of Suture-Free Laser-Assisted Vessel Repair by Solder-Doped Electrospun Poly(ε-caprolactone) Scaffold

机译:掺锡电纺聚ε-己内酯支架对无缝合激光辅助血管修复的优化

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摘要

Poor welding strength constitutes an obstacle in the clinical employment of laser-assisted vascular repair (LAVR) and anastomosis. We therefore investigated the feasibility of using electrospun poly(ε-caprolactone) (PCL) scaffold as reinforcement material in LAVR of medium-sized vessels. In vitro solder-doped scaffold LAVR (ssLAVR) was performed on porcine carotid arteries or abdominal aortas using a 670-nm diode laser, a solder composed of 50% bovine serum albumin and 0.5% methylene blue, and electrospun PCL scaffolds. The correlation between leaking point pressures (LPPs) and arterial diameter, the extent of thermal damage, structural and mechanical alterations of the scaffold following ssLAVR, and the weak point were investigated. A strong negative correlation existed between LPP and vessel diameter, albeit LPP (484 ± 111 mmHg) remained well above pathophysiological pressures. Histological analysis revealed that thermal damage extended into the medial layer with a well-preserved internal elastic lamina and endothelial cells. Laser irradiation of PCL fibers and coagulation of solder material resulted in a strong and stiff scaffold. The weak point of the ssLAVR modality was predominantly characterized by cohesive failure. In conclusion, ssLAVR produced supraphysiological LPPs and limited tissue damage. Despite heat-induced structural/mechanical alterations of the scaffold, PCL is a suitable polymer for weld reinforcement in medium-sized vessel ssLAVR.
机译:焊接强度差是在临床上使用激光辅助血管修复(LAVR)和吻合术的障碍。因此,我们研究了在中型血管的LAVR中使用电纺聚(ε-己内酯)(PCL)支架作为增强材料的可行性。使用670 nm二极管激光器,由50%牛血清白蛋白和0.5%亚甲蓝组成的焊料以及电纺PCL支架在猪颈动脉或腹主动脉上进行了体外焊料掺杂支架LAVR(ssLAVR)。研究了ssLAVR后支架的泄漏点压力(LPPs)与动脉直径,热损伤程度,结构和机械改变以及薄弱点之间的相关性。 LPP与血管直径之间存在很强的负相关性,尽管LPP(484±111 mmHg)仍远高于病理生理压力。组织学分析表明,热损伤扩展到了具有良好保存的内部弹性层和内皮细胞的内侧层。 PCL纤维的激光辐照和焊料材料的凝结形成了坚固而坚固的支架。 ssLAVR模式的弱点主要表现为内聚性失败。总之,ssLAVR产生超生理学LPPs和有限的组织损伤。尽管热引起了支架的结构/机械改变,PCL还是适合用于中型血管ssLAVR中的焊接加固的聚合物。

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