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Environmentally-friendly disposable lab-on-a-chip sensor for point-of-care measurement of heavy metals.

机译:环保型一次性芯片实验室传感器,用于重金属即时检测。

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摘要

In this dissertation, a lab-on-a-chip sensor was developed for the detection of heavy metals for public health applications in two complex sample matrices. Specifically, zinc (Zn) was measured in blood serum, a highly relevant biomedical sample medium, while lead (Pb) and cadmium (Cd) were measured in root exudates, a relevant sample medium in environmental applications. These conventional analytical methods of measuring these metals (AAS and ICPMS) pose a number of critical challenges, including the time delay from sample collection, shipment to a certified metals laboratory and reporting results. The laboratory costs of such analysis can be high. Thus, there is a need for a low-cost point-of-care (POC) system that can provide these measurements in minutes.;The developed sensor consists of a three-electrode system, with an environmentally-friendly bismuth working electrode, a Ag/AgCl reference electrode, and a Au auxiliary electrode. The bismuth working electrode was used as opposed to the conventional mercury electrodes due to its non-toxic nature and comparable negative detection window. Optimizing the sensor layout, electrode area and the working electrode surface substantially reduced the hydrolysis effects and widened the potential window to the -0.3 to -1.9 V range (vs. Ag/AgCl reference electrode), which is more negative as compared to other electrodes such as Au, Pt, or carbon. Conditions critical to sensing, including preconcentration potential, preconcentration time, and buffer pH, were optimized. For detection of Zn, the sensor was successfully calibrated in the physiologically relevant range of 5 muM to 50 muM and has a limit of detection of 6 muM. The sensor was also successfully demonstrated to measure Pb and Cd in the range of 1 muM to 50 muM with limits of detection of 71 nM and 2.417 muM, respectively. With further development and integrated sample preparation, the sensor may be converted into a POC platform for monitoring heavy metals in blood or on-site monitoring of environmental samples.
机译:本文开发了一种芯片实验室传感器,用于检测两种复杂样品基质中用于公共卫生的重金属。具体而言,在血清中,锌是一种高度相关的生物医学样品介质,而铅(Pb)和镉(Cd)是在根系分泌物中测量的,而根系分泌物是环境应用中的一种相关样品介质。这些测量这些金属的常规分析方法(AAS和ICPMS)带来了许多关键挑战,包括从样品收集,运送到经认证的金属实验室以及报告结果的时间延迟。这种分析的实验室成本可能很高。因此,需要一种低成本的即时护理(POC)系统,该系统可在数分钟内提供这些测量结果。开发的传感器由三电极系统组成,并带有环保的铋工作电极, Ag / AgCl参比电极和Au辅助电极。与传统的汞电极相反,使用了铋工作电极,原因是它的无毒性质和相当的负检测窗口。优化传感器布局,电极面积和工作电极表面可大大降低水解作用,并将电势窗口扩大到-0.3至-1.9 V范围(与Ag / AgCl参比电极相比),与其他电极相比,负值更大例如Au,Pt或碳。优化了对感测至关重要的条件,包括预浓缩电位,预浓缩时间和缓冲液pH。为了检测Zn,传感器已在5μM至50μM的生理相关范围内成功校准,检测极限为6μM。该传感器还被成功证明可在1μM至50μM范围内测量Pb和Cd,检出限分别为71 nM和2.417μM。随着进一步的发展和集成的样品制备,该传感器可以转换成POC平台,用于监测血液中的重金属或现场监测环境样品。

著录项

  • 作者

    Jothimuthu, Preetha.;

  • 作者单位

    University of Cincinnati.;

  • 授予单位 University of Cincinnati.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 102 p.
  • 总页数 102
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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