Lin Xiaodong, Liu Yaqing, Deng Jiankang, Lyu Yanlong, Qian Pengcheng, Li Yunfei, Wang Shuo
Key Laboratory of Food Nutrition and Safety (Ministry of Education) , College of Food Engineering and Biotechnology , Tianjin University of Science and Technology , Tianjin 300457 , China . Email:
Tianjin Key Laboratory of Food Science and Health , School of Medicine , Nankai University , Tianjin 300071 , China . Email:
Chem Sci. 2018 Jan 8;9(7):1774-1781. doi: 10.1039/c7sc05246d. eCollection 2018 Feb 21.
The integration of multiple DNA logic gates on a universal platform to implement advance logic functions is a critical challenge for DNA computing. Herein, a straightforward and powerful strategy in which a guanine-rich DNA sequence lighting up a silver nanocluster and fluorophore was developed to construct a library of logic gates on a simple DNA-templated silver nanoclusters (DNA-AgNCs) platform. This library included basic logic gates, YES, AND, OR, INHIBIT, and XOR, which were further integrated into complex logic circuits to implement diverse advanced arithmetic/non-arithmetic functions including half-adder, half-subtractor, multiplexer, and demultiplexer. Under UV irradiation, all the logic functions could be instantly visualized, confirming an excellent repeatability. The logic operations were entirely based on DNA hybridization in an enzyme-free and label-free condition, avoiding waste accumulation and reducing cost consumption. Interestingly, a DNA-AgNCs-based multiplexer was, for the first time, used as an intelligent biosensor to identify pathogenic genes, and genes, with a high sensitivity. The investigation provides a prototype for the wireless integration of multiple devices on even the simplest single-strand DNA platform to perform diverse complex functions in a straightforward and cost-effective way.
在通用平台上集成多个DNA逻辑门以实现高级逻辑功能是DNA计算面临的一项关键挑战。在此,我们开发了一种直接且强大的策略,即利用富含鸟嘌呤的DNA序列点亮银纳米簇和荧光团,在简单的DNA模板化银纳米簇(DNA-AgNCs)平台上构建逻辑门库。该库包括基本逻辑门“是”、“与”、“或”、“非”和“异或”,这些逻辑门进一步集成到复杂逻辑电路中,以实现包括半加器、半减器、多路复用器和解复用器在内的各种高级算术/非算术功能。在紫外线照射下,所有逻辑功能都能立即可视化,证实了出色的可重复性。逻辑操作完全基于无酶和无标记条件下的DNA杂交,避免了废物积累并降低了成本消耗。有趣的是,基于DNA-AgNCs的多路复用器首次被用作智能生物传感器,以高灵敏度识别致病基因。这项研究为在即使是最简单的单链DNA平台上无线集成多个设备以直接且经济高效的方式执行各种复杂功能提供了一个原型。