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Germanium as a scalable sacrificial layer for nanoscale protein patterning

机译:锗作为纳米级蛋白质图案的可扩展牺牲层

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摘要

We demonstrate the use of germanium (Ge) films as water-soluble features that allow the patterning of proteins onto surfaces with commonly used organic solvents. This technique is scalable for manufacturing and is compatible with nano- and microfabrication processes, including standard lithography. We use Ge as a sacrificial layer to mask and protect areas of the substrate during surface functionalization. Since Ge dissolves in 0.35% hydrogen peroxide (H2O2) in water but not in organic solvents, Ge can be removed after patterning without significantly affecting protein activities. In this paper, we present examples of protein patterning with two different techniques. We show that 50 nm thick Ge layers can be completely removed in 10 min without residues and, importantly, nanoscale resolution and misalignment can be achieved with conventional photolithography equipment. Both biotin and streptavidin maintain ~80% and >50% activity after 10 min and 360 min incubation in 0.35% H2O2, respectively. Lastly, the process can be used to functionalize sidewalls with proteins, a capability of recent interest for cell-cell adhesion studies.
机译:我们证明使用锗(Ge)膜作为水溶性特征,使蛋白质的蛋白质图案化到具有常用有机溶剂的表面上。该技术可用于制造,与纳米和微制造过程兼容,包括标准光刻。我们使用Ge作为牺牲层来掩盖和保护基板的表面官能化区域。由于Ge溶解在水中的0.35%过氧化氢(H 2 O 2)中但不在有机溶剂中,可以在图案化后除去Ge,而不会显着影响蛋白质活性。在本文中,我们提出了具有两种不同技术的蛋白质图案化的实例。我们表明,在没有残留物的情况下,可以在10分钟内完全除去50nm厚的Ge层,重要的是,通过传统的光刻设备可以实现纳米级分辨率和未对准。生物素和链霉抗生物素蛋白在10分钟后保持〜80%和> 50%活性,分别在0.35%H 2 O 2中孵育360分钟。最后,该过程可用于用蛋白质官能化侧壁,近期对细胞 - 细胞粘附研究的感兴趣的能力。

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