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Characterization of a bioactive fiber scaffold with entrapped HUVECs in coaxial electrospun core-shell fiber

机译:在同轴电纺芯-壳纤维中夹带HUVEC的生物活性纤维支架的表征

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摘要

Human umbilical vein endothelial cells (HUVECs) were successfully entrapped in polyethylene oxide (PEO) core /polycaprolactone (PCL) shell electrospun fibers thus creating a “bioactive fiber.” The viability and release of biomolecules from the entrapped cells in the bioactive fibers were characterized. A key modification to the core solution was the inclusion of 50% fetal bovine serum (FBS), which improved cell viability substantially. The fluorescein diacetate (FDA) staining revealed that the entrapped cells were intact and viable immediately after the electrospinning process. A long-term cell viability assay using AlamarBlue® showed that cells were viable for over two weeks. Secreted Interleukin-8 (IL-8) was monitored as a candidate released protein, which can also act as an indicator of HUVEC stress. These results demonstrated that HUVECs could be entrapped within the electrospun scaffold with the potential of controllable cell deposition and the creation of a bioactive fibrous scaffold with extended functionality.
机译:将人脐静脉内皮细胞(HUVEC)成功地包裹在聚环氧乙烷(PEO)芯/聚己内酯(PCL)外壳电纺纤维中,从而形成了“生物活性纤维”。表征了生物分子从截留在生物活性纤维中的细胞的活力和释放。核心溶液的关键修饰是加入了50%的胎牛血清(FBS),从而大大提高了细胞活力。荧光素二乙酸酯(FDA)染色显示,被包裹的细胞在电纺丝过程后立即完整且可存活。使用AlamarBlue®进行的长期细胞活力分析表明,细胞可以存活两周以上。分泌白介素8(IL-8)被监测为候选释放蛋白,也可以作为HUVEC应激的指标。这些结果表明,HUVECs可以被包裹在电纺丝支架中,具有可控的细胞沉积潜力,并可以创建具有扩展功能的生物活性纤维支架。

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