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首页> 外文期刊>Polymers for advanced technologies >Effect of engineered PLGA-gelatin-chitosan/PLGA-gelatin/PLGA-gelatin-graphene three-layer scaffold on adhesion/proliferation of HUVECs
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Effect of engineered PLGA-gelatin-chitosan/PLGA-gelatin/PLGA-gelatin-graphene three-layer scaffold on adhesion/proliferation of HUVECs

机译:工程化PLGA-明胶 - 壳聚糖/ PLGA-明胶/ PLGA-明胶 - 石墨烯三层支架对HUVEC的粘附/增殖的影响

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A three-layered fibrous scaffold composed of fibers of different diameters in each layer was fabricated in correspondence with the structure of the blood vessels. Effect of solution and electrospinning parameters on morphology and diameters of the fibers were investigated by scanning electron microscopy (SEM), for each layer. The SEM images showed that 18% poly (lactic-co-glycolic acid) (PLGA)-gelatin-chitosan in 1,1,1,3,3,3-hexafluoro-2-propanol (HFIP)/acid acetic solution resulted in bead-free fibers for the outer layer. For the middle layer, 18% PLGA-gelatin in HFIP at 13 kV with 13 cm needle to collector distance was chosen as the optimum condition. SEM imaging demonstrated that by increasing graphene content from 0.5 to 2 wt% in the inner layer (as an electrically conductive/platelet anti-adhesion material), the fiber diameter decreased from 324.01 +/- 58.90 to 288.59 +/- 70.77 nm. The effect of gelatin crosslinking on the microstructure of the fibers was also examined. Shrinkage ratio decreased from 57 to below 21% upon crosslinking of the three-layered scaffold in exposure to vapor of 50% glutaraldehyde solution for 2 hours. Mechanical test showed that tensile strength of the crosslinked three-layer scaffold in the longitudinal direction was 2.90 MPa which is comparable to that of the vein and artery. The MTT [3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide] assay displayed cell viability of above 96% for the PLGA-gelatin containing 2 wt% graphene. SEM analysis revealed that the addition of graphene to PLGA-gelatin (up to 2%) causes a remarkable improvement in cell adhesion.
机译:与每层中不同直径的纤维组成的三层纤维支架,与血管的结构相对应。通过扫描电子显微镜(SEM),对溶液和静电纺丝参数对纤维形态和直径的影响,每层都研究。 SEM图像显示,18%聚(乳酸二乙醇酸)(PLGA) - 凝胶 - 壳聚糖在1,1,1,3,3,3-六氟-2-丙醇(HFIP)/酸乙酸溶液中产生外层的无胎珠纤维。对于中间层,选择18%PLGA-明胶,在13 kV下,选择13厘米的针头,以收集距离为最佳条件。 SEM成像证明,通过在内层(作为导电/血小板抗粘附材料)中将石墨烯含量从0.5至2wt%增加,纤维直径从324.01 +/- 58.90升至288.59 +/- 70.77nm。还检查了明胶交联对纤维微观结构的影响。在暴露于50%戊二醛溶液的三层支架上的三层支架上,收缩比率从57减少到21%以下。机械测试表明,交联的三层支架在纵向方向上的抗拉强度为2.90MPa,其与静脉和动脉的相当。 MTT [3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑粒]测定含有2wt%石墨烯的PLGA-明胶的细胞活力高于96%。 SEM分析显示,将石墨烯加入PLGA-明胶(最多2%)引起细胞粘附性显着提高。

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