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Directional nanotopographic gradients: a high-throughput screening platform for cell contact guidance

机译:定向纳米复印件梯度:用于细胞接触引导的高吞吐量筛选平台

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A novel approach was developed using PDMS-substrates with surface-aligned nanotopography gradients, varying unidirectional in amplitude and wavelength, for studying cell behavior with regard to adhesion and alignment. The gradients target more surface feature parameters simultaneously and provide more information with fewer experiments and are therefore vastly superior with respect to individual topography substrates. Cellular adhesion experiments on non-gradient aligned nanowrinkled surfaces displayed a linear relationship of osteoblast cell adhesion with respect to topography aspect ratio. Additionally, an aspect ratio of 0.25 was found to be most efficient for cell alignment. Modification of the surface preparation method allowed us to develop an approach for creating surface nanotopography gradients which innovatively provided a superior data collection with fewer experiments showing that 1) low amplitude with small wavenumber is best for osteoblast cell adhesion 2) indeed higher aspect ratios are favorable for alignment however only with features between 80–180?nm in amplitude and 450–750?nm in wavelength with a clear transition between adhesion and alignment efficiency and 3) disproved a linear relationship of cell adhesion towards aspect ratio as was found for single feature substrate analysis.
机译:使用具有表面对齐的纳米发作梯度的PDMS - 基板进行新方法,用于研究粘附和取向的细胞行为,从具有表面对准的纳米发作梯度,改变单向的单向和波长。梯度同时瞄准更多的表面特征参数,并提供更少的实验的更多信息,因此相对于各个地形基板大大优越。在非梯度对准的纳米管线表面上的蜂窝粘附实验显示出与形貌纵横比的成骨细胞粘附的线性关系。另外,发现纵横比为0.25对细胞对准最有效。表面制备方法的修改使我们能够开发一种用于创造表面纳米发作梯度的方法,该梯度创造性地提供了具有更少实验的优异数据收集,表明1)具有小波浪更低的低振幅是最好的,对于成骨细胞粘附2)确实较高的纵横比是有利的然而,对于在振幅和450-750·nm之间的特征和450-750·nm之间的特征,在粘附和对准效率之间的明显过渡和3)中,3)被认为是单个特征的谱比为纵横比的线性关系底物分析。

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