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 >A robust host-guest interaction controlled probe immobilization strategy for the ultrasensitive detection of HBV DNA using hollow HP5-Au/CoS nanobox as biosensing platform
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A robust host-guest interaction controlled probe immobilization strategy for the ultrasensitive detection of HBV DNA using hollow HP5-Au/CoS nanobox as biosensing platform

机译:一种强大的宿主 - 客户交互控制探测探测固定策略,用于使用中空HP5-AU / COS NaNobox进行HBV DNA的超敏检测作为生物传感平台

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摘要

The combination of supramolecular chemistry and nanotechnology has potentially applied in the construction of biosensors, and thus improves the analytical performance and robustness of electron devices. Herein, a new sandwich-type DNA sensor was constructed for ultrasensitive determination of hepatitis B virus (HBV) DNA, a recognized marker for chronic hepatitis B. The water-soluble pillar[5]arene stabilized Pd NPs combined with reduced graphene oxide nanosheet (WP5-Pd/RGO) was synthesized and employed as supporting material for the modification of electrode surface. The probe DNA was immobilized onto the electrode surface through a new strategy based on the host-guest interaction between WP5 and methylene blue labeled DNA (MB-DNA). Moreover, MOF-derived cobalt sulfide nanobox was prepared to anchor the hydroxylatopillar[5]arene stabilized Au NPs (HP5-Au/CoS), which had superior electrocatalytic performance towards H2O2 reduction to achieve signal amplification. Under the optimized conditions, the proposed sensor displayed a linear relationship between amperometric currents and the logarithm of tDNA solution from 1 x 10(-15) mol/L to 1 x 10(-9) mol/L, and a low detection limit of 0.32 fmol/L. What's more, the DNA sensor had remarkable behaviors of stability, reproducibility, specificity, and accuracy, which provided a potential and promising prospect for clinical diagnosis and analysis.
机译:超分子化学和纳米技术的组合潜在地应用于生物传感器的构建中,从而提高了电子器件的分析性能和鲁棒性。在此,构建了一种新的夹层型DNA传感器,用于对乙型肝炎病毒(HBV)DNA的超细测定,慢性乙型肝炎的公认标志物。水溶性柱[5]芳烃稳定的PD NP与还原的石墨烯氧化物纳米组合(合成WP5-PD / RGO)并使用用于改性电极表面的支撑材料。通过基于WP5和亚甲基蓝标记的DNA(MB-DNA)之间的宿主 - 客体相互作用,通过新的策略将探针DNA固定到电极表面上。此外,制备MOF衍生的硫化物硫化物纳米氧氧化物以锚定羟基吡喃硅酸盐稳定的Au NPS(HP5-Au / CoS),其对H 2 O 2的降低具有卓越的电催化性能以实现信号放大。在优化的条件下,所提出的传感器显示了功率电流与TDNA溶液的对数之间的线性关系,从1×10(-15)mol / l至1×10(-9)mol / l,以及低检测限0.32 fmol / l。更重要的是,DNA传感器具有显着的稳定性行为,可重复性,特异性和准确性,为临床诊断和分析提供了潜在和有希望的前景。

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