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Visually multiplexed quantitation of heavy metal ions in water using volumetric bar-chart chip

机译:使用容积条形图芯片在水中重金属离子的视觉复用定量

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摘要

Heavy metal ions monitoring in water is practically significant for the environment and the human health. In this work, a lab-on-a-chip biosensor was developed for multiplexed quantitation of heavy metal ions by the integration of triple-channel volumetric bar-chart chip with DNA-nanoparticle probes. This method possesses the capability for rapid detection of Cu2+, Pb2+ and Hg2+ simultaneously with high sensitivity, selectivity and accuracy. Due to the highly catalase-like activity of the urchin-like platinum nanoparticles, this sensor exhibits high sensitivity with the detection limits of 1.0 nM, 1.0 nM and 1.8 nM for sensing of Cu2+, Pb2+ and Hg2+ respectively, which are much lower than the requirement of the United States Environmental Protection Agency (EPA) in drink water and superior to the colorimetric method based on the metal ion-specific DNA assay. The accuracy and reliability were verified by our Atomic Absorption Spectrometry (AAS) and Atomic Fluorescence Spectroscopy (AFS) measurements of real water sample. As the results can be directly read out without the need of the external instruments or complicate data processing, this sensor is extremely practical for environmental applications.
机译:在水中的重金属离子监测实际上是环境和人类健康的重要性。在这项工作中,开发了一种芯片的生物传感器,用于通过与DNA-纳米颗粒探针的三通道体积律条形图芯片集成来进行重金属离子的复用定量。该方法具有快速检测Cu2 +,Pb2 +和Hg2 +的能力,同时具有高灵敏度,选择性和精度。由于含核苷类铂纳米颗粒的高度过氧化酶样活性,该传感器分别具有1.0nm,1.0nm和1.8nm的检测限,分别对1.0nm,1.0nm和1.8nm的检测限敏感,所述Cu2 +,pb2 +和hg2 +远低于美国环境保护局(EPA)在饮水中的要求和基于金属离子特异性DNA测定的比色法优异。我们的原子吸收光谱法(AAS)和原子荧光光谱(AFS)测量的真实水样的测量验证了精度和可靠性。由于结果可以直接读出,而无需外部仪器或复杂数据处理,因此该传感器对于环境应用来说非常实用。

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