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Tubular silk scaffolds for small diameter vascular grafts

机译:用于小直径血管移植的管状丝支架

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摘要

Vascular surgeries such as coronary artery bypass require small diameter vascular grafts with properties that are not available at this time. Approaches using synthetic biomaterials have not been completely successful in producing non-thrombogenic grafts with inner diameters less than 6 mm, and there is a need for new biomaterials and graft designs. We propose silk fibroin as a microvascular graft material and describe tubular silk scaffolds that demonstrate improved properties over existing vascular graft materials. Silk tubes produced using an aqueous gel spinning technique were first assessed in vitro in terms of thrombogenicity (thrombin and fibrinogen adsorption, platelet adhesion) and vascular cell responses (endothelial and smooth muscle cell attachment and proliferation) in comparison with polytetrafluoroethylene (PTFE), a synthetic material most frequently used for vascular grafts. Silk tubes were then implanted into the abdominal aortas of Sprague-Dawley rats. At time points of 2 weeks and 4 weeks post-implantation, tissue outcomes were assessed through gross observation (acute thrombosis, patency) and histological staining (H&E, Factor VIII, smooth muscle actin). Over the 4-week time period, we observed graft patency and endothelial cell lining of the lumen surfaces. These results demonstrate the feasibility of using silk fibroin as a vascular graft material and some advantages of silk tubes over the currently used synthetic grafts.
机译:诸如冠状动脉搭桥术之类的血管外科手术需要小直径的血管移植物,这些移植物目前尚无法提供。使用合成生物材料的方法尚未完全成功地生产出内径小于6 mm的非血栓形成移植物,因此需要新的生物材料和移植物设计。我们提出丝素蛋白作为微血管移植材料,并描述了管状丝支架,与现有的血管移植材料相比,它们具有更好的性能。与聚四氟乙烯(PTFE)相比,首先在体外根据血栓形成性(凝血酶和纤维蛋白原的吸附,血小板粘附)和血管细胞反应(内皮细胞和平滑肌细胞的附着和增殖)评估使用水凝胶纺丝技术生产的丝管。最常用于血管移植的合成材料。然后将丝管植入到Sprague-Dawley大鼠的腹主动脉中。在植入后2周和4周的时间点,通过肉眼观察(急性血栓形成,通畅)和组织学染色(H&E,VIII因子,平滑肌肌动蛋白)评估组织结局。在4周的时间内,我们观察到管腔表面的移植物通畅性和内皮细胞衬里。这些结果证明了使用丝素蛋白作为血管移植材料的可行性以及丝管相对于目前使用的合成移植物的一些优点。

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