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Orthogonal Patterning of Multiple Biomolecules Using an Organic Fluorinated Resist and Imprint Lithography

机译:使用有机氟化抗蚀剂和压印光刻技术对多种生物分子进行正交构图

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摘要

The ability to spatially deposit multiple biomolecules onto a single surface with high-resolution while retaining biomolecule stability and integrity is critical to the development of micro- and nanoscale bio-devices. While conventional lithographic patterning methods are attractive for this application, they typically require the use of UV exposure and/or harsh solvents and imaging materials, which may be damaging to fragile biomolecules. Here, we report the development of a new patterning process based on a fluorinated patterning material that is soluble in hydrofluoroether solvents, which we show to be benign to biomolecules, including proteins and DNA. We demonstrate the implementation of these materials into an orthogonal processing system for patterning multi-biomolecule arrays by imprint lithography at room temperature. We further showcase this method’s capacity for fabricating patterns of receptor-specific ligands for fundamental cell studies.
机译:在保持生物分子稳定性和完整性的同时,高分辨率将多个生物分子空间沉积到单个表面上的能力对于开发微米级和纳米级生物设备至关重要。尽管常规的光刻构图方法对该应用很有吸引力,但它们通常需要使用UV曝光和/或苛刻的溶剂和成像材料,这可能会损坏易碎的生物分子。在这里,我们报告了一种新的构图工艺的开发,该工艺基于可溶于氢氟醚溶剂的氟化构图材料,我们证明它对包括蛋白质和DNA在内的生物分子是良性的。我们展示了这些材料到正交处理系统中的实现,该系统用于在室温下通过压印光刻来图案化多生物分子阵列。我们进一步展示了该方法为基础细胞研究制造受体特异性配体的模式的能力。

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