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A Novel Strategy to Engineer Small-Diameter Vascular Grafts From Marrow-Derived Mesenchymal Stem Cells

机译:从骨髓间充质干细胞工程化小直径血管移植物的新策略

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摘要

Tissue-engineered blood vessels have mainly relied on endothelial cells (ECs), smooth muscle cells (SMCs), and biocompatible materials. However, long-term results have revealed several material-related failures, such as stenosis, thromboembolization, and the risk of infection. Furthermore, SMCs from elderly persons have reduced capacity in proliferation and collagen production. Mesenchymal stem cells (MSCs) have the ability to differentiate into multiple cell lineages, including osteoblasts, chondrocytes, ECs, and SMCs. In the current experiment, rabbit MSCs were cultured to form a cell sheet. A tissue-engineered vascular graft (TEVG) was fabricated by rolling the MSC sheet around a mandrel. The TEVG was implanted into a defect of the common carotid artery after it was examined macroscopically and microscopically. Hematoxylin and eosin staining showed that cell sheet was composed of five to seven layers of cells with the thickness of 40–50?μm. Results from the adhesion assay revealed that MSCs had similar antiplatelet adhesion property to ECs. Histological analysis of TEVGs showed that the layers of the cell sheet had fully fused in vitro. After implantation, TEVGs had excellent patency and integrated well with the native vessel. The structure of the TEVGs was similar to that of the native artery 4 weeks after implantation. Electron microscopy showed that the implanted TEVGs endothelialized. These results indicated that a completely biological TEVG could be assembled with autologous MSCs. These TEVGs are useful for revascularization in humans, which would reduce the occurrence of complications caused by foreign materials.
机译:组织工程血管主要依赖于内皮细胞(EC),平滑肌细胞(SMC)和生物相容性材料。但是,长期结果显示了一些与材料相关的失败,例如狭窄,血栓栓塞和感染风险。此外,老年人的SMCs的增殖和胶原蛋白生产能力降低。间充质干细胞(MSC)具有分化为多种细胞谱系的能力,包括成骨细胞,软骨细胞,EC和SMC。在目前的实验中,兔MSCs被培养形成细胞片。通过围绕心轴滚动MSC薄片来制造组织工程化的血管移植物(TEVG)。肉眼和显微镜检查后,将TEVG植入颈总动脉缺损。苏木精和曙红染色显示,细胞片由五至七层细胞组成,厚度为40-50μm。粘附测定的结果表明,MSC具有与EC相似的抗血小板粘附特性。 TEVG的组织学分析表明,细胞片的各层在体外已完全融合。植入后,TEVG具有出色的通畅性,并与天然血管良好融合。 TEVG的结构与植入后4周的天然动脉相似。电子显微镜显示,植入的TEVGs内皮化了。这些结果表明,完全生物学的TEVG可以与自体MSC组装在一起。这些TEVG可用于人类的血运重建,这将减少由异物引起的并发症的发生。

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