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基于银纳米颗粒表面增强拉曼光谱适配体的传感器构建及其对二嗪农的特异性识别。

Construction of a silver nanoparticle SERS aptamer-based sensor and its specific recognition of diazinon.

作者信息

Yang Xiaoying, Liu Qian, Luo Longhui, Tian Wei, Kang Chao, Yang Wanliang, Li Tianxiang, Chen Dongmei, Yan Xiufang

机构信息

Guizhou Key Laboratory of Macrocyclic and Supramolecular Chemistry , Guizhou University, Guiyang, 550025, China.

College of Tobacco Science, Guizhou University, Guiyang, 550025, Guizhou, China.

出版信息

Anal Bioanal Chem. 2025 Aug;417(19):4407-4418. doi: 10.1007/s00216-025-05956-3. Epub 2025 Jun 19.

Abstract

A novel biosensing strategy based on the synergy of aptamer molecular recognition and surface-enhanced Raman spectroscopy (SERS) has been developed to address the growing problem of groundwater and soil contamination by the organophosphorus pesticide diazinon (DZN). By combining a high-affinity aptamer with a plasmonic resonance-enhanced substrate, a SERS biosensing interface with single-molecule detection capability was successfully constructed, and the electrochemical surface-enhanced Raman spectroscopy (EC-SERS) method using AgNPs-modified screen-printed electrodes (SPEs) was also used for sensitive detection of DZN. The results showed that the constructed SERS aptamer sensor was able to specifically identify diazinon in the system where multiple interfering pesticides coexisted, and the detection limit of the sensor for diazinon was up to 5.33 × 10 M. The intensity of the characteristic peaks (602 cm) showed a good linear response with the concentration of DZN, which demonstrated very high detection sensitivity and specific identification function. The proposed EC-SERS method significantly improves the SERS signals of pesticides by potentiometrically modulating the plasmonic resonance coupling effect at the interface of AgNPs-modified electrodes, inducing an orientationally regularised arrangement of DZN molecules. The SERS aptasensor was used to detect diazinon in wastewater and subsurface soil with good recoveries (83.20%-117.78%), which were in good agreement with the results obtained by high-performance liquid chromatography. The results demonstrated that the SERS aptasensor has good sensitivity, stability, simplicity of operation, and specific identification, which provides a solution with ultra-sensitive response, rapid analysis, and strong anti-interference for the detection of trace pesticide.

摘要

为解决有机磷农药二嗪农(DZN)对地下水和土壤污染日益严重的问题,开发了一种基于适体分子识别与表面增强拉曼光谱(SERS)协同作用的新型生物传感策略。通过将高亲和力适体与等离子体共振增强基底相结合,成功构建了具有单分子检测能力的SERS生物传感界面,并且还使用了基于银纳米颗粒修饰的丝网印刷电极(SPE)的电化学表面增强拉曼光谱(EC-SERS)方法对DZN进行灵敏检测。结果表明,构建的SERS适体传感器能够在多种干扰农药共存的体系中特异性识别二嗪农,该传感器对二嗪农的检测限高达5.33×10⁻⁹ M。特征峰(602 cm⁻¹)的强度与DZN浓度呈现良好的线性响应,显示出非常高的检测灵敏度和特异性识别功能。所提出的EC-SERS方法通过电位调制银纳米颗粒修饰电极界面处的等离子体共振耦合效应,显著提高了农药的SERS信号,诱导DZN分子形成取向规则排列。该SERS适体传感器用于检测废水和地下土壤中的二嗪农,回收率良好(83.20% - 117.78%),与高效液相色谱法获得的结果高度一致。结果表明,该SERS适体传感器具有良好的灵敏度、稳定性、操作简便性和特异性识别能力,为痕量农药检测提供了一种具有超灵敏响应、快速分析和强抗干扰能力的解决方案。

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