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Aptamer-based colorimetric determination of Pb2+ using a paper-based microfluidic platform

机译:基于Aptamer的比色测定PB2 +使用纸质微流体平台

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摘要

In this research, a novel paper-based microfluidic aptasensor was designed in order to detect different concentrations of lead in water. The principle based on which this aptasensor works is the interaction of gold nanoparticles with NaCl which leads to a color change from red to purple in the presence of lead ions due to AuNP aggregation. Furthermore, two types of filter paper, namely Whatman No.1 and nylon filter papers, were used as the platform of this paper-based microfluidic assay, and the properties of each one was investigated. It was seen that Pb2+ can be detected with linear trends for the calibration of each paper type at concentrations within the 10 nM to 1 mM range in both Whatman No.1 and nylon filter papers. A detection limit of 1.2 nM and 0.7 nM was obtained for Whatman No.1 and nylon filter papers, respectively. Moreover, the Whatman No.1 filter paper was used for the detection in real water samples, and it showed good potential for the detection of Pb2+ in environmental samples.
机译:在该研究中,设计了一种新型纸质的微流体Aptasensor,以检测水中不同浓度的铅。基于该Aptasensor的原理是金纳米粒子与NaCl的相互作用,导致铅离子存在于铅离子的情况下从红色到紫色的颜色变化。此外,使用两种类型的滤纸,即Whatman No.1和尼龙过滤纸,作为本文的微流体测定的平台,并研究了每一个的性质。有人看出,PB2 +可以通过线性趋势来检测,用于在Whatman No.1和尼龙滤纸中以10nm至1mm的浓度校准每种纸张类型。对于Whatman No.1和尼龙滤纸分别获得1.2nm和0.7nm的检出限。此外,Whatman No.1滤纸用于真实水样中的检测,并且它显示出在环境样品中检测PB2 +的良好潜力。

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