逻辑门
计算机科学
XNOR门
多路复用
信号(编程语言)
DNA纳米技术
灵敏度(控制系统)
DNA
DNA运算
纳米技术
电子工程
与非门
工程类
材料科学
算法
生物
生物信息学
计算
遗传学
程序设计语言
出处
期刊:ACS central science
[American Chemical Society]
日期:2021-05-27
卷期号:7 (6): 1036-1044
被引量:82
标识
DOI:10.1021/acscentsci.1c00277
摘要
DNA logic gated operations empower the highly efficient analysis of multiplex nucleic acid inputs, which have attracted extensive attention. However, the integration of DNA logic gates with abundant computational functions and signal amplification for biomedical diagnosis is far from being fully achieved. Herein, we develop a bipedal DNA walker based amplified electrochemical method for miRNA detection, which is then used as the basic unit for the construction of various logic circuits, enabling the analysis of multiplex miRNAs. In the bipedal walking process, target triggered strand displacement polymerization is able to produce a large number of strands for the fabrication of three-way junction-structured bipedal walkers. The following catalytic hairpin assembly ensures the walking event and the immobilization of signal probes for output. Ultrahigh sensitivity is realized due to the integration of dual signal amplification. In addition, under logic function controls by input triggered cascade strand displacement reactions, NOT, AND, OR, NAND, NOR, XOR, and XNOR logic gates are successfully established. The as-developed DNA logic system can also be extended to multi-input modes, which holds great promise in the fields of DNA computing, multiplex analysis, and clinical diagnosis.
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