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首页> 外文期刊>Analytical chemistry >Enzyme Inhibition-Based Determination of Pesticide Residues in Vegetable and Soil in Centrifugal Microfluidic Devices
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Enzyme Inhibition-Based Determination of Pesticide Residues in Vegetable and Soil in Centrifugal Microfluidic Devices

机译:基于酶抑制的离心微流控装置中蔬菜和土壤中农药残留的测定

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摘要

Pesticide residue is of concern as an environmental pollutant when present at medium to high concentrations. Such residue was quantified in both vegetable and soil samples by an enzyme inhibition technique. The multistep reactions were integrated into centrifugal microfluidic devices allowing automated simultaneous analysis of several samples or of replicates. The small sample size inherent to microfluidic devices allowed for less reagent to be used including less of the expensive enzyme which is key to this method. Liquid--solid magnetically actuated extraction, filtration, sedimentation, and detection were all integrated on the same device. Several parameters were optimized including the concentration of enzyme, substrate, chromatic agent, and reaction time. In this environmental application of centrifugal microfluidics, the percent inhibition of enzyme activity is logarithmically proportional to the demonstration pesticide concentration (in this case carbofuran). This meant that as the pesticide concentration increased in the samples, the reaction was more inhibited and the final product absorbed less light at 525 nm. Two versions of the centrifugal microfluidic devices were made. One version was designed for the analysis of vegetable samples (cabbage) and the other for the analysis of soil samples. Each version provided results that were statistically similar to the conventional benchtop method with a carbofuran limit of detection of 0.1 ppm or 0.1 μg g~(-1) (5 ng absolute limit of detection).
机译:当农药残留物以中至高浓度存在时,作为环境污染物备受关注。通过酶抑制技术对蔬菜和土壤样品中的此类残留物进行定量。将多步反应集成到离心微流控设备中,可以自动同时分析多个样品或重复样品。微流体装置固有的小样本量允许使用更少的试剂,包括更少的昂贵酶,这是该方法的关键。液-固磁控萃取,过滤,沉淀和检测都集成在同一设备上。优化了几个参数,包括酶的浓度,底物,显色剂和反应时间。在离心微流体的这种环境应用中,酶活性的抑制百分比与示范农药浓度(在这种情况下为呋喃丹)成对数比例。这意味着随着样品中农药浓度的增加,反应受到更多的抑制,最终产物在525 nm处吸收的光更少。制成了两种形式的离心微流体装置。一种版本设计用于分析蔬菜样品(白菜),另一种版本用于分析土壤样品。每个版本提供的结果在统计学上均与常规台式方法相似,其中呋喃丹的检出限为0.1 ppm或0.1μgg〜(-1)(绝对检出限为5 ng)。

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