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Photo-Cross-Linked Poly(ethylene glycol) Diacrylate Hydrogels: Spherical Microparticles to Bow Tie-Shaped Microfibers

机译:光交联聚(乙二醇)二丙烯酸酯水凝胶:球形微粒,用于蝴蝶结扎带形微纤维

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摘要

Bow tie-shaped fibers and spherical microparticles with controlled dimensions and shapes were fabricated with poly(ethylene glycol) diacrylate hydrogel utilizing hydrodynamic shear principles and a photopolymerization strategy under a microfluidic regime. Decreasing the flow rate ratio between the core and sheath fluids from 25 (50:2) to 1.25 (100:80) resulted in increasing the particles size and reducing the production rate by 357 and 86%, respectively. The width of the fibers increased by a factor of 1.4 when the flow rate ratio was reduced from 2.5 to 1 due to the decrease of the shear force at the fluid/fluid interface. The stress at break and Young's modulus of the fibers were enhanced by 32 and 63%, respectively, when the sheath-to-core flow rate ratio decreased from 100:40 to 100:80. The fiber fabrication was simulated using the finite element method, and the numerical and experimental results were in agreement. Adult hippocampal stem/progenitor cells and bone-marrow-derived multipotent mesenchymal stromal cells were seeded onto the fibrous scaffolds in vitro, and cellular adhesion, proliferation, and differentiation were investigated. Microgrooves on the fibers' surface were shown to positively affect cell adhesion when compared to flat fibers and planar controls.
机译:利用微流体制度利用流体动力剪切原理和光聚合策略,用聚(乙二醇)二丙烯酸水凝胶制造具有受控尺寸和形状的弓形纤维和球形微粒。将芯和鞘液之间的流速与25(50:2)至1.25(100:80)的流速比率降低导致颗粒尺寸的增加并将生产率降低357%和86%。由于流体/流体界面处的剪切力减小,纤维的宽度增加了1.4倍。当护套到核心流量比从100:40至100:80降低时,分别增强了纤维的断裂和杨氏模量的应力分别增强了32和63%。使用有限元法模拟纤维制造,数值和实验结果一致。在体外接种成人海马茎/祖细胞和骨髓衍生的多能量间充质细胞,并研究了细胞粘附,增殖和分化的纤维支架上。与扁平纤维和平面对照相比,纤维表面上的微型胶质纤维表面呈积极影响细胞粘附。

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