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Proliferation and Differentiation of Adipose Stem Cells Towards Smooth Muscle Cells on Poly(trimethylene carbonate) Membranes

机译:脂肪干细胞对聚(三甲基碳酸亚乙酯)膜的平滑肌细胞的增殖和分化

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Multipotent human adipose stem cells (hASCs) are an abundant and potential source of cells for vascular tissue engineering when combined with a suitable biomaterial scaffold. Poly(trimethylene carbonate) (PTMC) has been shown to be a useful biodegradable material for tissue engineered vascular grafts due to its flexibility, excellent biocompatibility and enzymatic degradation by surface erosion in vivo. The purpose of the current study was to evaluate the proliferation and differentiation of hASCs towards smooth muscle cells (SMCs) on gamma-crosslinked and photo-crosslinked PTMC membranes. PTMC macromers were functionalized with methacrylate end groups and crosslinked by UV initiated radical polymerization. High molecular weight linear PTMC was crosslinked by gamma irradiation. Cell viability, cell numbers and SMC differentiation of hASCs were evaluated on the differently crosslinked PTMC films at 7 and 14 days (d). On the photo-crosslinked membranes, homogenous monolayers of hASC were detected by live/dead assay. Consistently, cells on the photo-crosslinked membranes had significantly higher cell numbers compared to cells on the gamma-crosslinked membranes after 14 d of culture. SMC specific genes were expressed on both membranes at 14 d. Photo-crosslinked membranes showed higher expression of SMC specific proteins at 14 d compared to gamma-crosslinked membranes. These results suggest that especially the photo-crosslinked PTMC membranes are suitable for vascular tissue engineering applications when combined with hASCs.
机译:多能人脂肪干细胞(hASCs)是细胞时与合适的生物材料支架结合血管组织工程的一种丰富的和潜在来源。聚(三亚甲基碳酸酯)(PTMC)已被证明是用于组织工程血管移植物的有用的生物可降解材料由于其柔性,优良的生物相容性和酶降解通过体内表面侵蚀。目前研究的目的是评估向平滑肌细胞上伽玛交联和光交联PTMC膜(平滑肌细胞)hASCs的增殖和分化。 PTMC大分子单体用甲基丙烯酸酯端基官能化的,并通过UV交联的引发自由基聚合。高分子量线型PTMC通过伽马辐照交联。细胞活力,细胞数量和hASCs的SMC分化在第7和14天(d)在交联的不同PTMC薄膜进行评价。在光交联膜中,通过活/死测定法检测HASC的均匀单层。一致地,在光交联的膜的细胞相比,在后培养14 d伽马交联的膜的细胞具有较高的显著细胞数目。 SMC特定基因在14 d两个膜上表达的。光交联的膜相比,伽马交联的膜在14 d表明SMC特定蛋白质的高表达。这些结果表明,当与hASCs组合特别是光交联PTMC膜适于血管组织工程的应用程序。

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