Guangdong Key Laboratory of Integrated Agro-Environmental Pollution Control and Management , Guangdong Institute of Eco-Environmental Science & Technology , Guangzhou 510650 , China.
Anal Chem. 2018 Sep 4;90(17):10311-10317. doi: 10.1021/acs.analchem.8b02103. Epub 2018 Aug 17.
A series of advanced logic circuits have been successfully constructed to perform multiple arithmetic functions using a lateral flow strip biosensor as the sensing platform, including half adder, half subtractor, multiplexer, demultiplexer, and keypad lock. In each circuit computing, the computing elements are the DNA probes, which can implement the DNA assembly process to generate the output single-stranded nucleic acid. The strip biosensor is used as the sensing platform to distinguish the output of the logic gates. The distinctive advantage of our proposed biocomputing system is that the logic events can be transformed into the red bands on the test zones, which can be observed by the naked eye. The logic system with convenient operation, rapid response, and cost-effectiveness features will facilitate the portable analysis at ambient temperature without resorting to any instrumentation. The versatility and power of the logic computation demonstrated here indicate its great potential in intelligent point-of-care (POC) disease diagnosis and on-site environmental monitoring.
一系列先进的逻辑电路已经成功构建,用于使用横向流条生物传感器作为传感平台执行多种算术功能,包括半加器、半减器、多路复用器、解复用器和键盘锁。在每个电路计算中,计算元件是 DNA 探针,它可以执行 DNA 组装过程以生成输出单链核酸。条带生物传感器用作传感平台以区分逻辑门的输出。我们提出的生物计算系统的独特优势在于逻辑事件可以转化为测试区域上的红色条带,可以通过肉眼观察到。具有操作方便、响应迅速、性价比高的特点的逻辑系统将便于在环境温度下进行便携式分析,而无需借助任何仪器。这里展示的逻辑计算的多功能性和强大功能表明它在智能即时诊断(POC)疾病诊断和现场环境监测方面具有巨大的潜力。