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基于单链瓦片自组装和DNA链置换的基于荧光共振能量转移的光子电路。

Fluorescence Resonance Energy Transfer-Based Photonic Circuits Using Single-Stranded Tile Self-Assembly and DNA Strand Displacement.

作者信息

Zhang Xuncai, Ying Niu, Shen Chaonan, Cui Guangzhao

出版信息

J Nanosci Nanotechnol. 2017 Feb;17(2):1053-060. doi: 10.1166/jnn.2017.12656.

Abstract

Structural DNA nanotechnology has great potential in the fabrication of complicated nanostructures and devices capable of bio-sensing and logic function. A variety of nanostructures with desired shapes have been created in the past few decades. But the application of nanostructures remains to be fully studied. Here, we present a novel biological information processing system constructed on a self-assembled, spatially addressable single-stranded tile (SST) nanostructure as DNA nano-manipulation platform that created by SST self-assembly technology. Utilizing DNA strand displacement technology, the fluorescent dye that is pre-assembled in the nano-manipulation platform is transferred from the original position to the destination, which can achieve photonic logic circuits by FRET signal cascades, including logic AND, OR, and NOT gates. And this transfer process is successfully validated by visual DSD software. The transfer process proposed in this study may provide a novel method to design complicated biological information processing system constructed on a SST nanostructure, and can be further used to develop intelligent delivery of drug molecules in vivo.

摘要

结构DNA纳米技术在制造能够进行生物传感和逻辑功能的复杂纳米结构及器件方面具有巨大潜力。在过去几十年里,人们已经创造出了各种具有所需形状的纳米结构。但纳米结构的应用仍有待充分研究。在此,我们展示了一种新型生物信息处理系统,该系统构建在一个通过单链瓦片(SST)自组装技术创建的自组装、空间可寻址的单链瓦片(SST)纳米结构上,作为DNA纳米操作平台。利用DNA链置换技术,预先组装在纳米操作平台中的荧光染料从原始位置转移到目标位置,这可以通过FRET信号级联实现光子逻辑电路,包括逻辑与、或和非门。并且这个转移过程通过可视化DSD软件成功得到验证。本研究中提出的转移过程可能为设计基于SST纳米结构构建的复杂生物信息处理系统提供一种新方法,并且可进一步用于开发体内药物分子的智能递送。

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