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首页> 外文期刊>Analytical Sciences >A Label-free and Universal Platform for the Construction of Various Logic Circuits Based on Graphene Oxide and G-Quadruplex Structure
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A Label-free and Universal Platform for the Construction of Various Logic Circuits Based on Graphene Oxide and G-Quadruplex Structure

机译:基于氧化石墨烯和G-四链体结构的无标记通用平台,可用于构建各种逻辑电路

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摘要

Due to structual polymorphism, excellent binding activity and functional significances in biological regulation, G-quadruplex has become the focus of research as an innovated module for analytical chemistry and biomedicine. Meanwhile, in the biosensor fields, new nanomaterial graphene oxide (GO) has also received extensive attention due to its brilliant physical and chemical properties. Herein, we propose a non-label and enzyme-free logic operation platform based on G-quadruplex structure and GO instead of any expensive modification. Taking advantage of the quenching ability of GO to AgNCs and the fluorescence enhancement of NMM (N -methylmesoporphyrin IX) mediated by the split G-quadruplex, a series of binary logic gates (AND, OR, INHIBIT, XOR) have been constructed and verified by biological experiments. Subsequently, two combinatorial logic gates were successfully realized conceptually on the basis of the same BGG platform, including half adder and half subtractor. Taken together, such a universal platform has great potential in applications, such as biocomputing, bio-imaging and disease diagnosis, which cultivate a new view for future biological research.
机译:由于结构多态性,出色的结合活性和在生物调控中的功能意义,G-四链体已成为研究的重点,成为分析化学和生物医学的创新模块。同时,在生物传感器领域,新型纳米材料氧化石墨(GO)因其出色的物理和化学性能也受到了广泛的关注。在此,我们提出了一种基于G-四链体结构和GO的无标签,无酶的逻辑运算平台,而不是任何昂贵的修改。利用GO对AgNCs的淬灭能力和由分裂的G-四链体介导的NMM(N-甲基甲卟啉IX)的荧光增强作用,已经进行了一系列二元逻辑门(AND,OR,INHIBIT,XOR)。通过生物学实验构建和验证。随后,在同一个BGG平台的基础上成功地在概念上成功实现了两个组合逻辑门,包括半加法器和半减法器。综上所述,这样一个通用平台在生物计算,生物成像和疾病诊断等应用领域具有巨大潜力,为未来的生物学研究树立了新的视野。

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