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UV laser-ablated surface textures as potential regulator of cellular response

机译:UV激光烧蚀的表面纹理可作为细胞反应的潜在调节剂

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Textured surfaces obtained by UV laser ablation of poly(ethylene terephthalate) films were used to study the effect of shape and spacing of surface features on cellular response. Two distinct patterns, cones and ripples with spacing from 2 to 25 μm, were produced. Surface features with different shapes and spacings were produced by varying pulse repetition rate, laser fluence, and exposure time. The effects of the surface texture parameters, i.e., shape and spacing, on cell attachment, proliferation, and morphology of neonatal human dermal fibroblasts and mouse fibroblasts were studied. Cell attachment was the highest in the regions with cones at ≈4 μm spacing. As feature spacing increased, cell spreading decreased, and the fibroblasts became more circular, indicating a stress-mediated cell shrinkage. This study shows that UV laser ablation is a useful alternative to lithographic techniques to produce surface patterns for controlling cell attachment and growth on biomaterial surfaces.
机译:通过紫外激光烧蚀聚对苯二甲酸乙二醇酯薄膜获得的纹理化表面用于研究表面特征的形状和间距对细胞反应的影响。产生了两个不同的图案,圆锥和波纹,间距为2到25μm。通过改变脉冲重复频率,激光通量和曝光时间来产生具有不同形状和间距的表面特征。研究了表面纹理参数(即形状和间距)对新生人类真皮成纤维细胞和小鼠成纤维细胞的细胞附着,增殖和形态的影响。在锥孔间距约为4μm的区域中,细胞附着最高。随着特征间距的增加,细胞扩散减少,并且成纤维细胞变得更圆,表明应激介导的细胞收缩。这项研究表明,紫外线激光烧蚀是光刻技术的有用替代品,可以产生用于控制细胞在生物材料表面上附着和生长的表面图案。

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