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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 >Sensitive and label-free electrochemical lead ion biosensor based on a DNAzyme triggered G-quadruplex/hemin conformation
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Sensitive and label-free electrochemical lead ion biosensor based on a DNAzyme triggered G-quadruplex/hemin conformation

机译:基于DNAzyme的敏感和无标记的电化学铅离子生物传感器触发G-Quadreplex / Hemin构象

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摘要

Lead ion (Pb2+) is a common environmental contaminant, which causes serious bioaccumulation and toxicity in human body. In this work, we developed a novel Pb2+ electrochemical biosensor using the specific DNAzyme on a DNA tetrahedron probe, in the presence of Pb2+, the substrate strand was cleaved into two parts and released a "G-rich" oligo which subsequently formed a G-quadruplex/hemin complex, generating a detectable catalysis current signal with the assistant of H2O2. The 3-D DNA tetrahedron regulated the density and orientation of the probe and thus improved the DNAzyme reaction, and facilitated the complex DNA conformational change in the confined space of the interface on the electrode surface, Finally, the LOD of our biosensor was proved to be 0.008 nM (3 sigma), which is 9000 times lower than the safety limit of EPA (15 mu g/L or 72 nM), and 6000 times lower than IARC (10 mu g/L or 48.26 nM), and more importantly, the specificity and reproducibility of the proposed biosensor was well demonstrated.
机译:铅离子(PB2 +)是一种常见的环境污染物,导致人体中的严重生物累积和毒性。在这项工作中,我们在PB2 +存在下使用特定的DNA +电化学生物传感器在DNA四面体探针上进行了一种新的PB2 +电化学生物传感器,将衬底链切割成两部分并释放出“G-富含的”寡核苷酸,随后形成了G-四氢/血红素复合物,产生具有H2O2助助剂的可检测的催化电流信号。 3-D DNA TetraHedron调节探针的密度和取向,从而改善了DNazyme反应,并促进了电极表面上界面的狭窄空间中的复杂DNA构象变化,最后,我们的生物传感器的床位被证明是是0.008nm(3个σ),比EPA的安全极限(15μg/ L或72nm)低9000倍,比IARC(10μg/ l或48.26nm)低6000倍,更重要,所提出的生物传感器的特异性和再现性很好地证明了。

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