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The effect of vacuum freeze-drying and radiation on allogeneic aorta grafts

机译:真空冷冻干燥和辐射对异体主动脉移植物的影响

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Vacuum freeze-dried aorta is a satisfactory material for blood vessel grafting. Previous studies have focused on immunity, however, vacuum freeze-drying is a complicated process of heat and mass transfer, and adopting a programmed cooling process may more completely preserve the mechanical properties of the blood vessels. Irradiation, as a method of removing pathogens, lowers the antigenic activity of the blood vessels. In our study, vacuum freeze-drying combined with radiation was used as a treatment for porcine aorta prior to grafting, aimed at deactivating endogenous retrovirus, shielding masses of endothelial cells and lowering the immunogenicity of the blood vessels. As for the mechanical properties, compared with normal aorta, the maximum axial tensile stress (ATS) decreased by 20%, the maximum circumferential tensile stress (CTS) increased by 30% and the maximum puncture stress (PT) decreased by 20%. Our results revealed that 2 months after of grafting, the host cells had migrated into the graft tissue and propagated to initiate endothelialization, the inflammatory reaction was abated and the PT had returned to normal levels.
机译:真空冷冻干燥的主动脉是用于血管移植的令人满意的材料。以前的研究集中在免疫力上,但是,真空冷冻干燥是传热和传质的复杂过程,采用程序化的冷却过程可能会更完全地保留血管的机械特性。作为去除病原体的方法,辐照降低了血管的抗原活性。在我们的研究中,真空冷冻干燥与放射结合被用作猪主动脉移植前的治疗方法,目的是使内源性逆转录病毒失活,屏蔽内皮细胞团块并降低血管的免疫原性。在机械性能方面,与正常主动脉相比,最大轴向拉伸应力(ATS)降低了20%,最大圆周拉伸应力(CTS)增长了30%,最大穿刺应力(PT)降低了20%。我们的结果表明,移植后2个月,宿主细胞已迁移到移植组织中并增殖以启动内皮化,炎症反应减弱,PT恢复至正常水平。

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