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Vascular replacement using a layered elastin-collagen vascular graft in a porcine model: one week patency versus one month occlusion

机译:在猪模型中使用分层的弹性蛋白-胶原血管移植物进行血管置换:1周通畅vs. 1月闭塞

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摘要

A persistent clinical demand exists for a suitable arterial prosthesis. In this study, a vascular conduit mimicking the native 3-layered artery, and constructed from the extracellular matrix proteins type I collagen and elastin, was evaluated for its performance as a blood vessel equivalent.A tubular 3-layered graft (elastin-collagen-collagen) was prepared using highly purified type I collagen fibrils and elastin fibers, resembling the 3-layered native blood vessel architecture. The vascular graft was crosslinked and heparinised (37 4g heparin/mg graft), and evaluated as a vascular graft using a porcine bilateral iliac artery model. An intra-animal comparison with clinically-used heparinised ePTFE (Propaten (R)) was made. Analyses included biochemical characterization, duplex scanning, (immuno)histochemistry and scanning electron microscopy.The tubular graft was easy to handle with adequate suturability. Implantation resulted in pulsating grafts without leakage. One week after implantation, both ePTFE and the natural acellular graft had 100% patencies on duplex scanning. Grafts were partially endothelialised (Von Willebrand-positive endothelium with a laminin-positive basal membrane layer). After one month, layered thrombi were found in the natural (4/4) and ePTFE graft (1/4), resulting in occlusion which in case of the natural graft is likely due to the porosity of the inner elastin layer. In vivo application of a molecularly-defined tubular graft, based on nature's matrix proteins, for vascular surgery is feasible.
机译:对于合适的动脉假体存在持续的临床需求。在这项研究中,评估了模仿天然3层动脉的血管导管,该导管由I型胶原和弹性蛋白的细胞外基质蛋白构建而成,具有与血管等效的性能。管状3层管状移植物(弹性蛋白-胶原蛋白使用高度纯化的I型胶原纤维和弹性蛋白纤维(类似于3层天然血管结构)制备。将血管移植物交联并肝素化(37 4g肝素/ mg移植物),并使用猪双侧动脉模型评估为血管移植物。与临床上使用的肝素化ePTFE(Propaten(R))进行了动物内比较。分析包括生化特征,双重扫描,(免疫)组织化学和扫描电子显微镜。管状移植物易于处理且具有足够的可缝合性。植入导致搏动的移植物无渗漏。植入后一周,ePTFE和天然无细胞移植物在双面扫描中均具有100%的开放性。移植物被部分内皮化(具有层粘连蛋白阳性基底膜层的Von Willebrand阳性内皮)。一个月后,在天然(4/4)和ePTFE接枝(1/4)中发现了分层的血栓,导致闭塞,在天然接枝的情况下,这可能是由于内部弹性蛋白层的多孔性造成的。基于自然基质蛋白的分子定义的管状移植物在体内的血管手术应用是可行的。

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