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首页> 外文期刊>Acta biomaterialia >Increasing electrospun scaffold pore size with tailored collectors for improved cell penetration.
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Increasing electrospun scaffold pore size with tailored collectors for improved cell penetration.

机译:使用量身定制的收集器来增加电纺支架的孔径,以改善细胞渗透性。

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摘要

This study investigates the use of patterned collectors to increase the pore size of electrospun scaffolds for enhanced cell infiltration. The morphology of the patterned scaffolds was investigated by scanning electron microscopy, which showed that the collector pattern was accurately mimicked by the electrospun fibres. We observed an enlargement in the pore size and in the pore size distribution compared with conventional electrospinning. Mechanical testing revealed that the mechanical properties could be tailored, to some extent, according to the patterning and that the patterned scaffolds were softer than standard electrospun scaffolds. When NIH 3T3 fibroblasts were seeded onto patterned collectors improved cell infiltration was observed. Cells were able to penetrate up to 250 mum into the scaffolds, compared with 30 mum for the standard scaffolds. This increase in the depth of infiltration occurred as early as 24 h post-seeding and remained constant over 7 days.
机译:这项研究调查了使用有图案的收集器来增加电纺支架的孔径以增强细胞浸润。通过扫描电子显微镜对构图支架的形态进行了研究,结果表明,电纺纤维可以精确地模仿集电器的图案。与传统的电纺丝相比,我们观察到了孔径和孔径分布的增大。力学测试表明,根据构图可以在一定程度上调整力学性能,构图的支架比标准的电纺支架更柔软。当将NIH 3T3成纤维细胞接种到图案化的收集器上时,观察到细胞浸润得到改善。细胞能够穿透多达250毫米的支架,而标准支架只有30毫米。浸润深度的这种增加最早发生在播种后24小时,并且在7天内保持恒定。

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