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Surface roughness dependent osteoblast and fibroblast response on poly(l-lactide) films and electrospun membranes

机译:取决于表面粗糙度的成骨细胞和成纤维细胞对聚(l-丙交酯)薄膜和电纺膜的响应

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摘要

Poly(l-lactide) electrospun mats with random and aligned fiber orientation and films have been produced with degrees of crystallinity ranging from 0 up to nearly 50%. The overall surface roughness is practically constant irrespective of the sampling areas (1 × 1 µm to 20 × 20 µm) for degrees of crystallinity below 30%, increasing for higher degrees of crystallinity for the larger sampling areas. Further, due to fiber confinement, surface roughness variations are smaller in electrospun mats. Samples with 50% of crystallinity show the lowest osteoblast and the highest fibroblast proliferation. Therefore, it is verified that higher roughness promotes lower osteoblast but higher fibroblast proliferation. The overall results indicate the relevant role of the sub-microenvironment variations associated to the microscale roughness in determining the different cell responses.
机译:具有随机且对齐的纤维取向的聚(l-丙交酯)电纺垫和薄膜的结晶度范围为0至近50%。对于低于30%的结晶度,总的表面粗糙度实际上与采样区域(1×1 µm至20×20 µm)无关,对于较大的采样区域,较高的结晶度会增加。此外,由于纤维的限制,电纺垫的表面粗糙度变化较小。结晶度为50%的样品显示出最低的成骨细胞和最高的成纤维细胞增殖。因此,证实较高的粗糙度促进较低的成骨细胞但较高的成纤维细胞增殖。总体结果表明,与微尺度粗糙度相关的亚微环境变化在确定不同细胞反应中的相关作用。

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