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Tissue Engineered Small Vessel Conduits – The Anti-Thrombotic Effect of Re-Endothelialization of Decellularized Baboon Arteries: A Preliminary Experimental Study

机译:组织工程小血管导管–去细胞狒狒动脉再内皮化的抗血栓形成作用:初步实验研究

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Background The use of decellularized biological scaffolds for the reconstruction of small-diameter vascular grafts remains a challenge in tissue engineering. Thrombogenicity is an important cause of obstruction in these vessels due to decellularization. Seeding of the decellularized vascular constructs with endothelial cells is therefore a prerequisite for the prevention of thrombosis. The aim of this study was to seed decellularized baboon arteries with endothelial cells and to compare the thrombogenicity to that of decellularized arteries after circulation of blood. Material/Methods Carotid, radial, and femoral arteries (12 arteries in total) were harvested from 2 Papio ursinus baboons. Ten arteries were decellularized. Normal morphology was confirmed in the control vessels. The effect of re-endothelialization was studied in the vessel scaffolds using scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Decellularization resulted in vessel scaffolds with well-preserved extracellular matrix and intact basal membranes. Six of the decellularized vessel scaffolds were seeded with viable human umbilical vein endothelial cells (HUVEC). Luminal endothelialization was established after 7 days in a bioreactor and SEM confirmed confluency. Two control, 4 decellularized, and 6 decellularized re-endothelialized vessel scaffolds were studied in an in vitro flow chamber using baboon blood. Results The decellularized arteries showed an absence of endothelial lining, and an intact basement membrane. The seeding process produced a complete endothelial layer on the surfaces of the arteries. After perfusion with whole blood, no thrombi were formed in the control arteries and re-endothelialized vessels. Widespread platelet activation and adhesion occurred in the decellularized vessels despite a relatively intact basal membrane. Conclusions This study supports the development of re-endothelialized tissue engineered small-vessel conduits.
机译:背景技术在组织工程中,使用脱细胞生物支架来重建小直径血管移植物仍然是一个挑战。由于脱细胞作用,血栓形成是阻塞这些血管的重要原因。因此,用内皮细胞接种去细胞的血管结构是预防血栓形成的先决条件。这项研究的目的是用内皮细胞播种脱细胞的狒狒动脉,并比较血液循环后与脱细胞的动脉的血栓形成性。材料/方法从2只Papio ursinus狒狒中收获颈动脉,radial动脉和股动脉(总共12条动脉)。十个动脉脱细胞。在对照血管中确认正常形态。使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)在血管支架中研究了重新内皮化的作用。脱细胞作用导致具有良好保存的细胞外基质和完整基底膜的血管支架。六个脱细胞的血管支架上接种了可行的人脐静脉内皮细胞(HUVEC)。在生物反应器中放置7天后,建立了血管内皮化,并且SEM证实了融合。在使用狒狒血液的体外流动室中研究了两个对照,4个脱细胞的和6个脱细胞的重新内皮化的血管支架。结果脱细胞的动脉无内皮衬层,基底膜完整。播种过程在动脉表面产生了完整的内皮层。用全血灌注后,在对照动脉和再内皮化血管中没有形成血栓。尽管基底膜相对完整,但在去细胞血管中仍存在广泛的血小板活化和粘附。结论这项研究支持重新内皮化的组织工程化小血管导管的发展。

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