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Modulation of surface stiffness and cell patterning on polymer films using micropatterns

机译:使用微图案调制表面刚度和细胞图案化合物

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Abstract Here, a new technology was developed to selectively produce areas of high and low surface Young's modulus on biomedical polymer films using micropatterns. First, an elastic polymer film was adhered to a striped micropattern to fabricate a micropattern‐supported film. Next, the topography and Young's modulus of the film surface were mapped using atomic force microscopy. Contrasts between the concave and convex locations of the stripe pattern were obvious in the Young's modulus map, although the topographical map of the film surface appeared almost flat. The concave and convex locations of a polymer film supported by a different micropattern also contrasted clearly. The resulting Young's modulus map showed that the Young's modulus was higher at convex locations than at concave locations. Hence, regions of high and low stiffness can be locally generated based on the shape of the micropattern supporting the film. When cells were cultured on the micropattern‐supported films, NIH3T3 fibroblasts preferentially accumulated in convex regions with high Young's moduli. These findings demonstrate that this new technology can regulate regions of high and low surface Young's modulus on a cellular scaffold with high planar resolution, as well as providing a method for directing cellular patterning. ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 976–985, 2018.
机译:摘要在这里,开发了一种新技术,以使用微图案在生物医学聚合物膜上选择性地生产高低表面杨氏模量的区域。首先,将弹性聚合物薄膜粘附到条纹的微图案中以制造微图案负载的薄膜。接下来,使用原子力显微镜映射膜表面的地形和杨氏模量。在杨氏模量图中,条纹图案的凹凸位置之间的对比度是显而易见的,尽管薄膜表面的地形图几乎是平坦的。由不同的微图案负载的聚合物膜的凹凸位置也明显形成对比。由此产生的杨氏模量图显示凸起位置的杨氏模量高于凹面位置。因此,可以基于支撑薄膜的微图案的形状局部产生高刚度和低刚度的区域。当将细胞培养在微图案负载的薄膜上时,NIH3T3成纤维细胞优先在具有高杨氏调节的凸区域中积聚。这些发现表明,这种新技术可以在具有高平面分辨率的蜂窝支架上调节高低表面杨氏模量的区域,以及提供一种用于引导蜂窝图案的方法。还2017年Wiley期刊,Inc。J生物保解率B部分:苹果生物摩特,106B:976-985,2018。

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