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Amyloid Beta Detection by Faradaic Electrochemical Impedance Spectroscopy Using Interdigitated Microelectrodes

机译:法拉第电化学阻抗谱使用叉指状微电极对淀粉样β的检测。

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摘要

Faradaic electrochemical impedance spectroscopy (f-EIS) in the presence of redox reagent, e.g., [Fe(CN)6]3−/4−, is widely used in biosensors owing to its high sensitivity. However, in sensors detecting amyloid beta (Aβ), the redox reagent can cause the aggregation of Aβ, which is a disturbance factor in accurate detection. Here, we propose an interdigitated microelectrode (IME) based f-EIS technique that can alleviate the aggregation of Aβ and achieve high sensitivity by buffer control. The proposed method was verified by analyzing three different EIS-based sensors: non-faradaic EIS (nf-EIS), f-EIS, and the proposed f-EIS with buffer control. We analyzed the equivalent circuits of nf-EIS and f-EIS sensors. The dominant factors of sensitivity were analyzed, and the impedance change rates via Aβ reaction was compared. We measured the sensitivity of the IME sensors based on nf-EIS, f-EIS, and the proposed f-EIS. The results demonstrate that the proposed EIS-based IME sensor can detect Aβ with a sensitivity of 7.40-fold and 10.93-fold higher than the nf-EIS and the f-EIS sensors, respectively.
机译:在氧化还原试剂(例如[Fe(CN)6] 3-4 / 4 )存在的情况下,法拉第电化学阻抗谱(f-EIS)因其高灵敏度而被广泛用于生物传感器。但是,在检测淀粉样β(Aβ)的传感器中,氧化还原试剂会引起Aβ聚集,这是精确检测中的干扰因素。在这里,我们提出了一种基于叉指式微电极(IME)的f-EIS技术,该技术可减轻Aβ的聚集并通过缓冲液控制实现高灵敏度。通过分析三种不同的基于EIS的传感器验证了所提出的方法:非法拉第EIS(nf-EIS),f-EIS和具有缓冲区控制的拟议f-EIS。我们分析了nf-EIS和f-EIS传感器的等效电路。分析了灵敏度的主要因素,并比较了通过Aβ反应的阻抗变化率。我们基于nf-EIS,f-EIS和提出的f-EIS测量了IME传感器的灵敏度。结果表明,所提出的基于EIS的IME传感器可以检测到Aβ,其灵敏度分别比nf-EIS和f-EIS传感器高7.40倍和10.93倍。

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