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 >Biomolecular logic devices based on stimuli-responsive PNIPAM-DNA film electrodes and bioelectrocatalysis of natural DNA with Ru(bpy)(3)(2+) as mediator
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Biomolecular logic devices based on stimuli-responsive PNIPAM-DNA film electrodes and bioelectrocatalysis of natural DNA with Ru(bpy)(3)(2+) as mediator

机译:基于刺激响应性肺部DNA膜电极的生物分子逻辑装置和Ru(BPY)(3)(2+)作为介质的天然DNA的生物电离分析

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In the present work, PNIPAM-DNA films were fabricated on the surface of electrodes by GOD-induced radical polymerization, where PNIPAM is poly(N-isopropylacrylamide), DNA represents natural DNA from salmon testes, and GOD is glucose oxidase. The prepared film electrodes demonstrated reversible temperature-, SO42-., and pH-switched cyclic voltammetry (CV) and electrochemiluminescence (ECL) behaviors toward tris(2,2'-bipyridine)ruthenium(II) (Ru(bpy)(3)(2+)) in solution. Particularly, both CV and ECL signals at 1.15 V belonging to Ru (bpy)(3)(2+) were significantly amplified by the electrocatalysis of DNA in the films. Moreover, the addition of ferrocenemethanol (FcMeOH) into the solution led to the substantial quenching of the ECL signal of the system and produced a new CV peak pair at 0.35 V. Based upon these experiments, a 4-input/7-output logic gate system was successfully built, which also lead to a 2-to-1 encoder and a 1-to-2 decoder. On the same platform, a more complicated logic device, a half-adder, was also constructed. The present system combined electrocatalysis of natural DNA mediated by Ru(bpy)(3)(2+) and multiple stimuli-responsive PNIPAM-DNA films together with simultaneously obtained CV and ECL signals as outputs, leading to the development of novel types of biocomputing systems.
机译:在本作本作中,通过上帝诱导的自由基聚合在电极表面上制造泊普菊薄膜,其中泊普是聚(N-异丙基丙烯酰胺),DNA代表来自鲑鱼睾丸的天然DNA,并且上帝是葡萄糖氧化酶。制备的薄膜电极证明了可逆的温度 - ,SO42-。和pH切换的循环伏安法(CV)和电化学发光(ECL)行为朝向TRIS(2,2'-Biphyridine)钌(II)(Ru(BPY)(3) (2+))在解决方案中。特别地,通过薄膜中DNA的电致显着扩增CV和归属于Ru(3)(3)(3)(2+)的CV和ECL信号。此外,将亚铁核乙醇(FCMEOH)添加到溶液中LED为系统的ECL信号的实质性猝灭,并在0.35V下产生了新的CV峰对。基于这些实验,一个4输入/ 7输出逻辑门系统已成功构建,该系统也会导致2比1编码器和1到2个解码器。在同一平台上,还构造了一个更复杂的逻辑器件,半加法器。由Ru(BPY)(3)(3)(3)(2+)和多种刺激的肺DNA膜介导的天然DNA的本发明组合电常分以及同时获得的CV和ECL信号作为产出,导致新颖的生物划线类型的发展系统。

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