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Nanoparticle-Based Electrochemical Immunosensor for the Detection of Phosphorylated Acetylcholinesterase: An Exposure Biomarker of Organophosphate Pesticides and Nerve Agents

机译:基于纳米粒子的电化学免疫传感器,用于检测磷酸化的乙酰胆碱酯酶:有机磷酸酯农药和神经制剂的暴露生物标志物。

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摘要

A nanoparticle-based electrochemical immunosensor has been developed for the detection of phosphorylated acetylcholinesterase (AChE), which is a potential biomarker of exposure to organophosphate (OP) pesticides and chemical warfare nerve agents. Zirconia nanoparticles (ZrO2, NPs) were used as selective sorbents to capture the phosphorylated AChE adduct, and quantum dots (ZnS@CdS, QDs) were used as tags to label monoclonal anti-AChE antibody to quantify the immunorecognition events. The sandwich-like immunoreactions were performed among the ZrO2 NPs, which were pre-coated on a screen printed electrode (SPE) by electrodeposition, phosphorylated AChE and QD-anti-AChE. The captured OD tags were determined on the SPE by electrochemical stripping analysis of its metallic component (cadmium) after an acid-dissolution step. Paraoxon was used as the model OP insecticide to prepare the phosphorylated AChE adducts to demonstrate proof of principle for the sensor. The phosphorylated AChE adduct was characterized by Fourier transform infrared spectroscopy (FTIR) and mass spectroscopy. The binding affinity of anti-AChE to the phosphorylated AChE was validated with an enzyme-linked immunosorbent assay. The parameters (e.g., amount of ZrO2 NP, QD-anti-AChE concentration,) that govern the electrochemical response of immunosensors were optimized. The voltammetric response of the immunosensor is highly linear over the range of 10 pm to 4 nm phosphorylated AChE, and the limit of detection is estimated to be 8.0 pm. The immunosensor also successfully detected phosphorylated AChE in human plasma. This new nanoparticle-based electrochemical immunosensor provides an opportunity to develop field-deployable, sensitive, and quantitative biosensors for monitoring exposure to a variety of OP pesticides and nerve agents.
机译:已开发出一种基于纳米粒子的电化学免疫传感器,用于检测磷酸化的乙酰胆碱酯酶(AChE),这是暴露于有机磷酸酯(OP)农药和化学战神经毒剂的潜在生物标记。氧化锆纳米粒子(ZrO2,NPs)被用作选择性吸附剂以捕获磷酸化的AChE加合物,量子点(ZnS @ CdS,QDs)被用作标记单克隆抗AChE抗体的标签以量化免疫识别事件。在ZrO2 NP之间进行了三明治式免疫反应,这些NPs通过电沉积,磷酸化的AChE和QD-抗AChE预涂在丝网印刷电极(SPE)上。在酸溶解步骤后,通过电化学剥离分析其金属成分(镉),在SPE上确定捕获的OD标签。将对氧磷用作OP型杀虫剂以制备磷酸化的AChE加合物,以证明传感器的原理证明。磷酸化的AChE加合物通过傅里叶变换红外光谱(FTIR)和质谱进行表征。抗AChE与磷酸化的AChE的结合亲和力已通过酶联免疫吸附法进行了验证。优化了控制免疫传感器的电化学响应的参数(例如ZrO2 NP的量,QD-抗AChE浓度)。免疫传感器的伏安响应在10 pm至4 nm磷酸化AChE的范围内呈高度线性,检测极限估计为8.0 pm。该免疫传感器还成功检测到人血浆中的磷酸化AChE。这种基于纳米粒子的新型电化学免疫传感器为开发可现场部署,灵敏和定量的生物传感器提供了机会,以监测多种OP农药和神经毒剂的暴露。

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