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Design of a portable luminescence bio-tool for on-site analysis of heavy metals in water samples

机译:用于现场分析水中样品中重金属的便携式发光生物工具的设计

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In this work, we report an innovative tool for heavy metal screening in water samples. This new chemiluminescent set-up screens the light generated from luminol oxidation by horseradish peroxidase (HRP) in the presence of hydrogen peroxide (H2O2). The pollutant concentrations in real water samples were calculated by studying the effect of metal ions on chemiluminescence signal. Owing to its simplicity, portability and low cost, this approach presents a real alternative to classical optical methods. It is constructed with simple materials: a black box containing a cuvette and a micro-camera. When the enzymatic reaction takes place, the luminescence is captured by the camera placed in upright position. The image can be saved automatically in a computer for further analysis using a MATLAB interface. The RGB diagram is then established to determine the analyte concentrations in the tested samples. This method was successfully applied for the determination of mercury (Hg), lead (Pb) and cadmium (Cd) in lake and field water samples. In these experiments, three concentrations of each analytes were tested (5, 25 and 50 mu g/L). We noted a good proportionality between the analyte concentration and the chemiluminescent detection intensity. Detection of binary and tertiary combinations of heavy metals has been also investigated. The developed biosensor showed low detection limits for the tested heavy metals: 1, 0.7 and 0.02 for Hg2+, Pb2+ and Cd2+, respectively. Finally, excellent recoveries ranging from 98% to 104% were obtained for the HRP-inhibition assay.
机译:在这项工作中,我们报告了一种用于水样品中重金属筛查的创新工具。这种新的化学发光设置可以屏蔽在过氧化氢(H2O2)存在下由辣根过氧化物酶(HRP)产生的鲁米诺氧化产生的光。通过研究金属离子对化学发光信号的影响来计算真实水样中的污染物浓度。由于其简单性,便携性和低成本,这种方法是经典光学方法的真正替代。它由简单的材料制成:一个装有试管和微型相机的黑匣子。发生酶促反应时,直立放置的相机会捕获发光。图像可以自动保存在计算机中,以使用MATLAB界面进行进一步分析。然后建立RGB图,以确定测试样品中的分析物浓度。该方法已成功用于测定湖水和野外水样中的汞(Hg),铅(Pb)和镉(Cd)。在这些实验中,测试了三种浓度的每种分析物(5、25和50μg / L)。我们注意到分析物浓度与化学发光检测强度之间具有良好的比例关系。还研究了重金属的二元和三元组合的检测。研发的生物传感器对测试的重金属显示出低检测限:Hg2 +,Pb2 +和Cd2 +分别为1,0.7和0.02。最终,HRP抑制分析获得了98%至104%的极佳回收率。

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