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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >An enzymatic calculation system based on electrochemiluminescence and fluorescence of luminol and cyclic voltammetry of ferrocene methanol
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An enzymatic calculation system based on electrochemiluminescence and fluorescence of luminol and cyclic voltammetry of ferrocene methanol

机译:基于电化学发光的酶促计算系统和二茂铁荧光荧光荧光和循环伏安法

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摘要

In this work, a biomolecular calculation system was developed based on electrochemiluminescence (ECL) and fluorescence emission (FL) of luminol and cyclic voltammetry (CV) of ferrocene methanol (FMA). When triethylamine (TEA) was added in luminol solution as a coreactant, a great ECL peak at 1.1?V was observed. While the further addition of enzymatic system, esterase/ethyl butyrate (EB), would significantly lower the ECL response. On the other hand, TEA could quench the FL signal of luminol at 430?nm, while the injection of esterase/EB in the luminol solution could enhance the FL signal. Furthermore, FMA exhibited a CV peak pair at 0.2?V and could decrease the ECL signal greatly in the luminol/TEA solution. Based on these interesting results, a 3-input and 5-output biomolecular logic gate was established with TEA, FMA and esterase/EB as inputs and the ECL, CV and FL signals as outputs. Moreover, some nonarithmetic logic devices, such as an encoder, a decoder, a 3-input keypad lock and two dual transfer gates were elaborately designed on the same platform. This work presented a new example of how the complexity of biocomputing system could be enhanced either by increasing the number of outputs of traditional logic gates or by fabricating some nonarithmetic logic devices based on the same simple electrochemical system.
机译:在这项工作中,基于二茂铁甲醇(FMA)的鲁米荧光发光(ECL)和荧光发射(FL)开发了生物分子计算系统和荧光发射(CV)。当在鲁米诺溶液中加入三乙胺(茶)作为固件的时,观察到1.1〜v的巨大ECL峰。虽然进一步加入酶促体系,酯酶/乙醇丁酸酯(EB),但会显着降低ECL响应。另一方面,茶可以在430℃下淬火鲁米诺的FL信号,而鲁米诺溶液中的酯酶/ eb的注射可以增强FL信号。此外,FMA在0.2≤V下表现出CV峰对,并且可以在鲁米诺/茶溶液中大大降低ECL信号。基于这些有趣的结果,用茶叶,FMA和Esterase / EB作为输入和ECL,CV和FL信号建立3输入和5输出生物分子逻辑门。此外,在同一平台上精确设计了一些非算法逻辑器件,例如编码器,解码器,3输入键盘锁和两个双传输门。这项工作提出了一种新的例子,即通过增加传统逻辑门的输出的数量或通过基于相同简单的电化学系统制造一些非算法逻辑器件来增强生物划分系统的复杂性的新示例。

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