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Micro-flow-injection analysis (μFIA) immunoassay of herbicide residue 2,6-dichlorobenzamide:towards automated at-line monitoring using modular microfluidics

机译:除草剂残留2,6-二氯苯甲酰胺的微流注射分析(μFIa)免疫测定:使用模块化微流体进行自动化在线监测

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摘要

As a part of developing new systems for continuously monitoring the presence of pesticides in groundwater, a microfluidic amperometric immunosensor was developed for detecting the herbicide residue 2,6-dichlorobenzamide (BAM) in water. A competitive immunosorbent assay served as the sensing mechanism and amperometry was applied for detection. Both the immunoreaction chip (IRC) and detection (D) unit are integrated on a modular microfluidic platform with in-built micro-flow-injection analysis (μFIA) function. The immunosorbent, immobilized in the channel of the IRC, was found to have high long-term stability and withstand many regeneration cycles, both of which are key requirements for systems utilized in continuous monitoring. The IRC was regenerated during 51 cycles in a heterogeneous competitive assay out of which 27 were without the analyte (the highest possible signal level) in order to assess the regeneration capability of the immunosorbent. Detection of BAM standard solutions was performed in the concentration range from 62.5 μg L to 0.0008 μg L. Non-linear regression of the data using the four-parameter logistic equation generated a sigmoidal standard curve showing an IC value (concentration that reduces the signal by 50%) of 0.25 μg L. The strongest signal variation is observed in the concentration range between 0.02 and 2.5 μg L, which includes the 0.1 μg L threshold limit set by the European Commission for BAM in drinking water. The presented results demonstrate the potential of the constructed μFIA immunosensor as an at-line monitoring system for controlling the quality of ground water supply.
机译:作为开发不断监测地下水中农药存在的新系统的一部分,开发了一种微流安培免疫传感器,用于检测水中的除草剂残留物2,6-二氯苯甲酰胺(BAM)。竞争性免疫吸附测定作为传感机制,安培法用于检测。免疫反应芯片(IRC)和检测(D)单元都集成在具有内置微流注射分析(μFIA)功能的模块化微流体平台上。发现固定在IRC通道中的免疫吸附剂具有很高的长期稳定性,并能承受许多再生循环,这都是连续监测系统的关键要求。 IRC是在51个周期的异质竞争性测定中再生的,其中27个没有分析物(可能的最高信号水平),以评估免疫吸附剂的再生能力。在62.5μgL至0.0008μgL的浓度范围内进行BAM标准溶液的检测。使用四参数对数方程对数据进行非线性回归后,生成了一条呈S型的标准曲线,显示了IC值(通过0.25μgL的50%。在0.02至2.5μgL的浓度范围内观察到最强的信号变化,其中包括由欧洲委员会为饮用水中BAM设定的0.1μgL阈值极限。提出的结果证明了所构建的μFIA免疫传感器作为在线监测系统来控制地下水供应质量的潜力。

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