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Polyelectrolyte multilayer-assisted fabrication of non-periodic silicon nanocolumn substrates for cellular interface applications

机译:聚电解质multilayer-assisted制造的非周期nanocolumn硅基质手机界面的应用程序

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Recent advances in nanostructure-based biotechnology have resulted in a growing demand for vertical nanostructure substrates with elaborate control over the nanoscale geometry and a high-throughput preparation. In this work, we report the fabrication of non-periodic vertical silicon nanocolumn substrates via polyelectrolyte multilayer-enabled randomized nanosphere lithography. Owing to layer-by-layer deposited polyelectrolyte adhesives, uniformly-separated polystyrene nanospheres were securely attached on large silicon substrates and utilized as masks for the subsequent metal-assisted silicon etching in solution. Consequently, non-periodic vertical silicon nanocolumn arrays were successfully fabricated on a wafer scale, while each nanocolumn geometric factor, such as the diameter, height, density, and spatial patterning, could be fully controlled in an independent manner. Finally, we demonstrate that our vertical silicon nanocolumn substrates support viable cell culture with minimal cell penetration and unhindered cell motility due to the blunt nanocolumn morphology. These results suggest that vertical silicon nanocolumn substrates may serve as a useful cellular interface platform for performing a statistically meaningful number of cellular experiments in the fields of biomolecular delivery, stem cell research, etc.
机译:最近的进步nanostructure-based生物技术已经导致了日益增长的需求对垂直奈米结构基质纳米尺度的几何和精细的控制高通量制备。报告的制作周期垂直的通过聚电解质nanocolumn硅基质multilayer-enabled随机nanosphere光刻技术。聚电解质粘合剂、uniformly-separated聚苯乙烯团簇是安全型依附大的硅基板和利用面具为后续metal-assisted硅蚀刻在解决方案。硅nanocolumn数组被成功捏造一个圆片规模,而每个nanocolumn几何因子,如直径、高度、密度,和空间模式,可以完全的控制独立的方式。竖直硅nanocolumn基质以最小的细胞支持可行的细胞培养和不受阻碍的细胞运动性由于渗透钝nanocolumn形态。表明垂直硅nanocolumn基板可以作为一个有用的细胞执行统计接口平台有意义的的细胞实验生物分子交付、干细胞研究等。

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