首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A label-free electrochemical platform for the detection of antibiotics based on cascade enzymatic amplification coupled with a split G-quadruplex DNAzyme
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A label-free electrochemical platform for the detection of antibiotics based on cascade enzymatic amplification coupled with a split G-quadruplex DNAzyme

机译:一种无标签的电化学平台,用于检测基于级联酶扩增的抗生素与分裂G-Quadreplexyme相结合

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摘要

Herein, a split G-quadruplex DNAzyme as a signal reporter was integrated into an electrochemical sensing platform for the detection of antibiotics with specificity and sensitivity. To improve the signal-to-noise ratio, two G-rich oligonucleotide sequences (G1 and G2) were blocked into two different hairpin probes, preventing the two segments from assembling into a spilt G-quadruplex structure. Moreover, we designed a double-arch probe, consisting of an aptamer as the recognition element and two-step enzymatic signal amplification. Concretely, the first is the Nt.BbvCI-assisted nicking cyclic reaction activated by target-aptamer binding, and the second is exonuclease III-aided cyclic amplification for generating abundant G1 and G2. The modified capture probe on the electrode was used to combine G1 and G2 to form the spilt G-quadruplex/hemin when K+ and hemin were present. This complex plays the role of DNAzyme with superior horseradish peroxidase activity in catalyzing the decomposition of H2O2. Under optimal conditions, this biosensor showed an excellent performance for sensing kanamycin with a detection limit of 83 fM for kanamycin concentrations ranging from 100 fM to 1 nM. Hence, the proposed strategy has potential as an efficient and actual platform for small molecule analysis.
机译:这里,将作为信号报告器的分离G-QuadreplexDNazyme集成到电化学传感平台中,用于检测特异性和灵敏度的抗生素。为了提高信噪比,将两个G富核核苷酸序列(G1和G2)封闭到两种不同的发夹探针中,防止两个区段组装成溢出的G-四边形结构。此外,我们设计了一种双拱探针,由Aptamer作为识别元件和两步酶促信号放大组成。具体而言,首先是通过靶 - 适体结合活化的NT.BBVCI辅助切口循环反应,第二种是用于产生丰富的G1和G2的Exonuclease III辅助循环扩增。当存在K +和血红素时,使用电极上的改性捕获探针组合G1和G2以形成溢出的G-Quadreplex /血红素。这种复合体发挥DNAzyme与优异的辣根过氧化物酶活性在催化H2O2的分解时的作用。在最佳条件下,这种生物传感器显示出具有83 fm的检测限为83 fm的检测限优,该生物传感器具有83 fm的检测限为100 fm至1nm。因此,拟议的策略具有潜在的小分子分析的高效和实际平台。

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