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Signal-on electrochemical sensor for the detection of two analytes based on the conformational changes of DNA probes

机译:信号式电化学传感器,可根据DNA探针的构象变化检测两种分析物

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In this study, we reported a sensing strategy for the simultaneous determination of two analytes based on the conformational change of DNA probes. Mercury ions (Hg2+) and silver ions (Ag+) were selected as target analytes. The strategy involved specific DNA probes (containing rich thymine (T) or cytosine (C) bases) labeled with ferrocene (Fc) or methylene blue (MB), and gold nanoparticles (Au NPs) immobilized on the electrode surface. In the presence of target analytes, because of the specific interaction of T and C bases with Hg2+ and Ag+, respectively, the formation of Ta€“Hg2+a€“T and Ca€“Ag+a€“C complexes induced large conformational changes of the DNA probes from open structures to a€?hair-likea€? structures, which made the signal molecules of Fc and MB closer to the electrode surface. The resulting changes clearly improved the electrochemical signal intensity. Under optimal conditions, the signal intensity changes were linearly related to the concentration of the two analytes in the range 0.1a€“30 nM for Hg2+ and 0.1a€“40 nM for Ag+, and the limit of detection for the two analytes was as low as 0.05 nM (S/N = 3). When the sensor was applied to the analysis of real water samples, satisfactory results were obtained.
机译:在这项研究中,我们报告了一种基于DNA探针构象变化的同时测定两种分析物的传感策略。选择了汞离子(Hg2 +)和银离子(Ag +)作为目标分析物。该策略涉及用二茂铁(Fc)或亚甲基蓝(MB)标记的特定DNA探针(含有丰富的胸腺嘧啶(T)或胞嘧啶(C)碱基),以及固定在电极表面的金纳米颗粒(Au NP)。在目标分析物的存在下,由于T和C碱基分别与Hg2 +和Ag +发生特定的相互作用,形成Ta€“ Hg2 + a” T和Ca€“ Ag + a€” C配合物会导致大的构象。 DNA探针从开放结构到“头发样”的变化结构,使Fc和MB的信号分子更靠近电极表面。所产生的变化明显改善了电化学信号强度。在最佳条件下,信号强度的变化与两种分析物的浓度呈线性关系,Hg2 +的浓度范围为0.1a?30 nM,Ag +的浓度为0.1a?40nM,两种分析物的检出限为低至0.05 nM(S / N = 3)。当传感器用于实际水样分析时,获得了满意的结果。

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