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无标记发夹状适体和基于 EIS 的实用、生物稳定的乙酰甲胺磷检测传感器。

Label-free hairpin-like aptamer and EIS-based practical, biostable sensor for acetamiprid detection.

机构信息

Shijiazhuang Customs Technology Center P.R. China, Shijiazhuang, Hebei Province, China.

Beijing Research Center for Agricultural Standards and Testing, Beijing Academy of Agriculture and Forestry Science, Beijing, China.

出版信息

PLoS One. 2020 Dec 23;15(12):e0244297. doi: 10.1371/journal.pone.0244297. eCollection 2020.

Abstract

Acetamiprid (ACE) is a kind of broad-spectrum pesticide that has potential health risk to human beings. Aptamers (Ap-DNA (1)) have a great potential as analytical tools for pesticide detection. In this work, a label-free electrochemical sensing assay for ACE determination is presented by electrochemical impedance spectroscopy (EIS). And the specific binding model between ACE and Ap-DNA (1) was further investigated for the first time. Circular dichroism (CD) spectroscopy and EIS demonstrated that the single strand AP-DNA (1) first formed a loosely secondary structure in Tris-HClO4 (20 mM, pH = 7.4), and then transformed into a more stable hairpin-like structure when incubated in binding buffer (B-buffer). The formed stem-loop bulge provides the specific capturing sites for ACE, forming ACE/AP-DNA (1) complex, and induced the RCT (charge transfer resistance) increase between the solution-based redox probe [Fe(CN)6]3-/4- and the electrode surface. The change of ΔRCT (charge transfer resistance change, ΔRCT = RCT(after)-RCT(before)) is positively related to the ACE level. As a result, the AP-DNA (1) biosensor showed a high sensitivity with the ACE concentration range spanning from 5 nM to 200 mM and a detection limit of 1 nM. The impedimetric AP-DNA (1) sensor also showed good selectivity to ACE over other selected pesticides and exhbited excellent performance in environmental water and orange juice samples analysis, with spiked recoveries in the range of 85.8% to 93.4% in lake water and 83.7% to 89.4% in orange juice. With good performance characteristics of practicality, sensitivity and selectivity, the AP-DNA (1) sensor holds a promising application for the on-site ACE detection.

摘要

啶虫脒(ACE)是一种广谱杀虫剂,对人类健康具有潜在风险。适体(Ap-DNA(1))作为农药检测的分析工具具有很大的潜力。在这项工作中,通过电化学阻抗谱(EIS)提出了一种用于 ACE 测定的无标记电化学传感测定法。并且首次进一步研究了 ACE 和 Ap-DNA(1)之间的特异性结合模型。圆二色性(CD)光谱和 EIS 表明,单链 AP-DNA(1)首先在 Tris-HClO4(20 mM,pH = 7.4)中形成松散的二级结构,然后在结合缓冲液(B-缓冲液)中孵育时转变为更稳定的发夹状结构。形成的茎环凸起为 ACE 提供了特定的捕获位点,形成 ACE/AP-DNA(1)复合物,并诱导溶液中基于 [Fe(CN)6]3-/4-的氧化还原探针与电极表面之间的 RCT(电荷转移电阻)增加。ΔRCT(电荷转移电阻变化,ΔRCT = RCT(后)-RCT(前))的变化与 ACE 水平呈正相关。结果,AP-DNA(1)生物传感器表现出高灵敏度,ACE 浓度范围从 5 nM 到 200 mM,检测限为 1 nM。基于阻抗的 Ap-DNA(1)传感器对 ACE 具有良好的选择性,对其他选定的农药具有良好的选择性,并在环境水样和橙汁样品分析中表现出出色的性能,在湖水和橙汁中的加标回收率范围分别为 85.8%至 93.4%和 83.7%至 89.4%。基于实用性,灵敏度和选择性的良好性能特征,Ap-DNA(1)传感器有望用于现场 ACE 检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16d8/7757884/fdc5d7b2d6a9/pone.0244297.g001.jpg

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