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Nanoscale Patterns of Oligonucleotides Formed by Electrohydrodynamic Jet Printing with Applications in Biosensing and Nanomaterials Assembly

机译:通过电动流体喷射印刷形成的寡核苷酸的纳米级图案及其在生物传感和纳米材料组装中的应用

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摘要

The widespread use of DNA in microarrays for applications in biotechnology, combined with its promise in programmed nanomaterials assembly, unusual electronic devices, and other areas has created interest in methods for patterning DNA with high spatial resolution. Techniques based on thermal or piezoelectric inkjet printing are attractive due to their noncontacting nature and their compatibility with diverse materials and substrate types; their modest resolution (i.e., 10-20 mu m) represents a major limitation for certain systems. Here we demonstrate the use of an operationally similar printing approach that exploits electrohydrodynamic forces, rather than thermal or acoustic energy, to eject DNA inks through fine nozzles, in a controlled fashion. This DNA printer is capable of resolution approaching 100 nm. A range of experiments on patterns of DNA formed with this printer demonstrates its key features. Example applications in DNA-directed nanoparticle assembly and DNA aptamer-based biosensing illustrate two representative uses of the patterns that can be formed.
机译:DNA在生物技术中的微阵列中的广泛使用,以及其在程序化纳米材料组装,不寻常的电子设备和其他领域中的应用前景,已引起人们对以高空间分辨率构图DNA的方法的兴趣。基于热或压电喷墨打印的技术因其非接触性以及与多种材料和基材类型的兼容性而具有吸引力。它们的适度分辨率(即10-20微米)代表了某些系统的主要限制。在这里,我们演示了使用操作类似的打印方法的方法,该方法利用电液动力而不是热能或声能,以可控方式通过细喷嘴喷射DNA墨水。这种DNA打印机的分辨率接近100 nm。用该打印机形成的DNA模式的一系列实验证明了其主要功能。在DNA定向的纳米颗粒组装和基于DNA适体的生物传感中的示例应用说明了可以形成的图案的两种代表性用途。

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