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电化学聚合、分子印迹聚合物在丝网印刷电极上-一种简单、快速、一次性的 trazodone 伏安传感器。

Electropolymerized, Molecularly Imprinted Polymer on a Screen-Printed Electrode-A Simple, Fast, and Disposable Voltammetric Sensor for Trazodone.

机构信息

REQUIMTE/LAQV, Instituto Superior de Engenharia do Porto, Instituto Politécnico do Porto, Rua Dr. António Bernardino de Almeida 431, 4200-072 Porto, Portugal.

出版信息

Sensors (Basel). 2022 Apr 6;22(7):2819. doi: 10.3390/s22072819.

Abstract

In recent years, analytical chemistry has been facing new challenges, particularly in developing low-cost, green, and easy-to-reproduce methods. In this work, a simple, reproducible, and low-cost electrochemical (voltammetric) molecularly imprinted polymer (MIP) sensor was designed specifically for the detection of trazodone (TZD). Trazodone (TZD) is an antidepressant drug consumed worldwide since the 1970s. By combining electropolymerization (surface imprinting) with screen-printed electrodes (SPCEs), the sensor is easy to prepare, is environmentally friendly (uses small amounts of reagents), and can be used for in situ analysis through integration with small, portable devices. The MIP was obtained using cyclic voltammetry (CV), using 4-aminobenzoic acid (4-ABA) as the functional monomer in the presence of TZF molecules in 0.1 M HCl. Non-imprinted control was also constructed in the absence of TZD. Both polymers were characterized using CV, and TZD detection was performed with DPV using the oxidation of TZD. The polymerization conditions were studied and optimized. Comparing the TZD signal for MIP/SPCE and NIP/SPCE, an imprinting factor of 71 was estimated, indicating successful imprinting of the TZD molecules within the polymeric matrix. The analytical response was linear in the range of 5-80 µM, and an LOD of 1.6 µM was estimated. Selectivity was evaluated by testing the sensor for molecules with a similar structure to TZD, and the ability of MIP/SPCE to selectively bind to TZD was proven. The sensor was applied to spiked tap water samples and human serum with good recoveries and allowed for a fast analysis (around 30 min).

摘要

近年来,分析化学面临着新的挑战,特别是在开发低成本、绿色和易于复制的方法方面。在这项工作中,专门设计了一种简单、可重复和低成本的电化学(伏安法)分子印迹聚合物(MIP)传感器,用于检测曲唑酮(TZD)。曲唑酮(TZD)是一种自 20 世纪 70 年代以来在全球范围内使用的抗抑郁药。通过将电聚合(表面印迹)与丝网印刷电极(SPCE)结合,该传感器易于制备,环保(使用少量试剂),并且可以通过与小型便携式设备集成进行原位分析。MIP 是使用循环伏安法(CV)获得的,使用 4-氨基苯甲酸(4-ABA)作为功能单体,在 0.1 M HCl 中存在 TZF 分子的情况下进行。也在没有 TZD 的情况下构建了非印迹对照。使用 CV 对两种聚合物进行了表征,并使用 DPV 对 TZD 的氧化进行了 TZD 检测。研究并优化了聚合条件。将 MIP/SPCE 和 NIP/SPCE 的 TZD 信号进行比较,估计印迹因子为 71,表明 TZD 分子成功印迹在聚合物基质中。分析响应在 5-80 µM 的范围内呈线性,LOD 估计为 1.6 µM。通过测试与 TZD 结构相似的分子来评估选择性,证明了 MIP/SPCE 对 TZD 的选择性结合能力。该传感器已应用于加标自来水样品和人血清,回收率良好,允许快速分析(约 30 分钟)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33c8/9003412/e02ea00168ad/sensors-22-02819-g001.jpg

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