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Micropatterned Cell Orientation of Cyanobacterial Liquid-Crystalline Hydrogels

机译:蓝藻液晶水凝胶的微透明理由的细胞取向

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Control of cell extension direction is crucial for the regeneration of tissues, which are generally composed of oriented molecules. The scaffolds of highly oriented liquid crystalline polymer chains were fabricated by casting cyanobacterial mega-saccharides, sacran, on parallel-aligned micrometer bars of polystyrene (PS). Polarized microscopy revealed that the orientation was in transverse direction to the longitudinal axes of the PS bars. Swelling behavior of the micropatterned hydrogels was dependent on the distance between the PS bars. The mechanical properties of these scaffolds were dependent on the structural orientation; additionally, the Young's moduli in the transverse direction were higher than those in the parallel direction to the major axes of the PS bars. Further, fibroblast L929 cells were cultivated on the oriented scaffolds to be aligned along the orientation axis. L929 cells cultured on these scaffolds exhibited uniaxial elongation.
机译:细胞延伸方向的控制对于组织的再生至关重要,其通常由定向分子组成。 通过铸造蓝藻兆糖,骶骨,在聚苯乙烯(PS)的平行排列的微米条上制造高度取向液晶聚合物链的支架。 偏振显微镜显示,方向呈横向向PS条的纵向轴线。 微图案化水凝胶的膨胀行为取决于PS条之间的距离。 这些支架的机械性能取决于结构取向; 另外,朝向横向的杨氏的模数高于PS条的主轴的平行方向的模型。 此外,在取向的支架上培养成纤维细胞L929细胞以沿着取向轴线对准。 在这些支架上培养的L929细胞表现出单轴伸长率。

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