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Hybrid hierarchical patterns of gold nanoparticles and poly(ethylene glycol) microstructures

机译:金纳米颗粒和聚乙二醇微结构的混合层次模式

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Hybrid surface micro-patterns composed of topographic structures of polyethylene glycol (PEG)-hydrogels and hierarchical lines of gold nanoparticles (Au NPs) were fabricated on silicon wafers. Micro-sized lines of Au NPs were first obtained on the surface of a silicon wafer via "micro-contact deprinting", a method recently developed by our group. Topographic micro-patterns of PEG, of both low and high aspect ratio (AR up to 6), were then aligned on the pre-patterned surface via a procedure adapted from the soft lithographic method MIMIC (Micro-Molding in Capillaries), which is denoted as "adhesive embossing". The result is a complex surface pattern consisting of alternating flat Au IMP lines and thick PEG bars. Such patterns provide novel model surfaces for elucidating the interplay between (bio)chemical and physical cues on cell behavior.
机译:在硅片上制作了由聚乙二醇(PEG)-水凝胶的拓扑结构和金纳米颗粒(Au NPs)的分层线组成的混合表面微图案。我们小组最近开发的一种方法是,首先通过“微接触印刷”在硅晶片的表面上获得金纳米颗粒的微细线。然后通过改编自软光刻方法MIMIC(毛细管微铸模)的方法,将低纵横比和高纵横比(AR最高为6)的PEG地形图微图案对齐在预图案化的表面上。表示为“粘合剂压纹”。结果是由交替的扁平Au IMP线和粗PEG条组成的复杂表面图案。这种模式提供了新颖的模型表面,用于阐明细胞行为的(生物)化学和物理线索之间的相互作用。

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