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A Novel Impedimetric Biosensor for Detection of Lead (II) with Low-cost Interdigitated Electrodes Made on PCB

机译:新型阻抗生物传感器,用于在PCB上制造低成本的叉指电极来检测铅(II)

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摘要

A novel, low-cost, label-free impedance biosensor based on gold interdigitated electrodes (GIE) was developed for detection of lead. This sensor was developed by immobilizing GR-5 DNAzymes onto the GIE surface through Au-S bonding. In the presence of lead, the substrate strand was cleaved into two parts at the RNA site (rA) and caused changes in the interfacial properties of the GIE, resulting in a corresponding decrease in the impedance magnitude. Thus, by measuring the decrease, the concentration of lead ion can be determined. And coupled the GIE with GR-5 DNAzyme recognition, our proposed lead biosensor exhibited a high sensitivity with a detection limit of 6.61 nM, which is much lower than the 72 nM defined as the maximum contamination level (MCL) of lead ions in drinking water by The United States Environmental Protection Agency (EPA), at the same time, with a linear range from 10-100 nM and a prominent selectivity against other heavy metal ions. What's more, different from the traditional way, the GIE are made on printed circuit board (PCB), this makes the biosensor has the advantages of simplicity, low cost and easy mass production, and it can easily be widely used.
机译:基于金叉指电极(GIE)的新型低成本无标签阻抗生物传感器被开发用于铅的检测。该传感器是通过Au-S键合将GR-5 DNA酶固定在GIE表面上而开发的。在存在铅的情况下,底物链在RNA位点(rA)处被切割为两部分,并导致GIE的界面特性发生变化,从而导致阻抗大小相应降低。因此,通过测量减少量,可以确定铅离子的浓度。结合GIE和GR-5 DNAzyme识别,我们提出的铅生物传感器表现出高灵敏度,检测极限为6.61 nM,远低于定义为饮用水中铅离子的最大污染水平(MCL)的72 nM。同时由美国环境保护署(EPA)提供,线性范围为10-100 nM,对其他重金属离子具有显着的选择性。而且,与传统方式不同,GIE是在印刷电路板(PCB)上制成的,这使得生物传​​感器具有简单,低成本和易于批量生产的优点,并且可以容易地被广泛使用。

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