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DNA Computing Systems Activated by Electrochemically-triggered DNA Release from a Polymer-brush-modified Electrode Array

机译:由电化学触发的DNA从聚合物刷修饰电极阵列释放释放而激活的DNA计算系统

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摘要

An array of four independently wired indium tin oxide (ITO) electrodes was used for electrochemically stimulated DNA release and activation of DNA-based Identity, AND and XOR logic gates. Single-stranded DNA molecules were loaded on the mixed poly(N,N-di-methylaminoethyl methacrylate) (PDMAEMA)/poly-(methacrylic acid) (PMAA) brush covalently attached to the ITO electrodes. The DNA deposition was performed at pH 5.0 when the polymer brush is positively charged due to protonation of tertiary amino groups in PDMAE-MA, thus resulting in electrostatic attraction of the negatively charged DNA. By applying electrolysis at −1.0 V(vs. Ag/AgCl reference) electrochemical oxygen reduction resulted in the consumption of hydrogen ions and local pH increase near the electrode surface. The process resulted in recharging the polymer brush to the negative state due to dissociation of carboxylic groups of PMAA, thus repulsing the negatively charged DNA and releasing it from the electrode surface. The DNA release was performed in various combinations from different electrodes in the array assembly. The released DNA operated as input signals for activation of the Boolean logic gates. The developed system represents a step forward in DNA computing, combining for the first time DNA chemical processes with electronic input signals.
机译:四个独立接线的铟锡氧化物(ITO)电极的阵列用于电化学刺激的DNA释放以及基于DNA的Identity,AND和XOR逻辑门的激活。将单链DNA分子加载到共价附着在ITO电极上的混合聚(N,N-二甲基甲基丙烯酸甲酯(PDMAEMA)/聚(甲基丙烯酸)(PMAA))刷上。当聚合物刷由于PDMAE-MA中叔氨基的质子化而使聚合物刷带正电时,在pH 5.0进行DNA沉积,从而导致带负电的DNA产生静电吸引。通过在-1.0 V(vs。Ag / AgCl参比)下进行电解,电化学氧还原导致氢离子的消耗和电极表面附近局部pH的增加。由于PMAA的羧基解离,该过程导致聚合物刷重新充电至负状态,从而排斥带负电荷的DNA并将其从电极表面释放。从阵列组件中的不同电极以各种组合进行DNA释放。释放的DNA作为布尔逻辑门激活的输入信号。所开发的系统代表了DNA计算方面的进步,这是首次将DNA化学过程与电子输入信号相结合。

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