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Scaffold-free, Human Mesenchymal Stem Cell-Based Tissue Engineered Blood Vessels

机译:无支架的人间充质干细胞为基础的组织工程血管

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Tissue-engineered blood vessels (TEBV) can serve as vascular grafts and may also play an important role in the development of organs-on-a-chip. Most TEBV construction involves scaffolding with biomaterials such as collagen gel or electrospun fibrous mesh. Hypothesizing that a scaffold-free TEBV may be advantageous, we constructed a tubular structure (1?mm i.d.) from aligned human mesenchymal cell sheets (hMSC) as the wall and human endothelial progenitor cell (hEPC) coating as the lumen. The burst pressure of the scaffold-free TEBV was above 200?mmHg after three weeks of sequential culture in a rotating wall bioreactor and perfusion at 6.8 dynes/cm2. The interwoven organization of the cell layers and extensive extracellular matrix (ECM) formation of the hMSC-based TEBV resembled that of native blood vessels. The TEBV exhibited flow-mediated vasodilation, vasoconstriction after exposure to 1?μM phenylephrine and released nitric oxide in a manner similar to that of porcine femoral vein. HL-60 cells attached to the TEBV lumen after TNF-α activation to suggest a functional endothelium. This study demonstrates the potential of a hEPC endothelialized hMSC-based TEBV for drug screening.
机译:组织工程血管(TEBV)可以用作血管移植物,并且在芯片上器官的发展中也可能起重要作用。大多数TEBV的建造都涉及用生物材料制成的支架,例如胶原蛋白凝胶或电纺纤维网。假设无支架的TEBV可能是有利的,我们从对齐的人间充质细胞片(hMSC)作为壁和人内皮祖细胞(hEPC)涂层作为管腔构建了管状结构(1?mm i.d.)。在旋转壁式生物反应器中连续培养三周并以6.8达因/厘米 2 灌注后,无支架的TEBV的破裂压力高于200?mmHg。基于hMSC的TEBV的细胞层和广泛的细胞外基质(ECM)的交织组织类似于天然血管。暴露于1?μM的去氧肾上腺素后,TEBV表现出血流介导的血管舒张,血管收缩,并以类似于猪股静脉的方式释放一氧化氮。 TNF-α激活后,HL-60细胞附着在TEBV腔上,提示有功能的内皮细胞。这项研究证明了hEPC内皮化的基于hMSC的TEBV在药物筛选中的潜力。

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