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Electrochemical Sensors for the Detection of Lead and Other Toxic Heavy Metals: The Next Generation of Personal Exposure Biomonitors

机译:用于检测铅和其他有毒重金属的电化学传感器:下一代个人接触生物监测器

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摘要

To support the development and implementation of biological monitoring programs, we need quantitative technologies for measuring xenobiotic exposure. Microanalytical based sensors that work with complex biomatrices such as blood, urine, or saliva are being developed and validated and will improve our ability to make definitive associations between chemical exposures and disease. Among toxic metals, lead continues to be one of the most problematic. Despite considerable efforts to identify and eliminate Pb exposure sources, this metal remains a significant health concern, particularly for young children. Ongoing research focuses on the development of portable metal analyzers that have many advantages over current available technologies, thus potentially representing the next generation of toxic metal analyzers. In this article, we highlight the development and validation of two classes of metal analyzers for the voltammetric detection of Pb, including: a) an analyzer based on flow injection analysis and anodic stripping voltammetry at a mercury-film electrode, and b) Hg-free metal analyzers employing adsorptive stripping voltammetry and novel nanostructure materials that include the self-assembled monolayers on mesoporous supports and carbon nanotubes. These sensors have been optimized to detect Pb in urine, blood, and saliva as accurately as the state-of-the-art inductively coupled plasma-mass spectrometry with high reproducibility, and sensitivity allows. These improved and portable analytical sensor platforms will facilitate our ability to conduct biological monitoring programs to understand the relationship between chemical exposure assessment and disease outcomes.
机译:为了支持生物监测计划的制定和实施,我们需要定量技术来测量异源生物暴露。基于微分析的传感器可与复杂的生物基质(例如血液,尿液或唾液)一起使用,目前正在开发和验证中,这将提高我们在化学暴露与疾病之间建立明确关联的能力。在有毒金属中,铅仍然是最成问题的之一。尽管为识别和消除铅暴露源付出了巨大的努力,但这种金属仍然是一个重大的健康问题,尤其是对于年幼的儿童。正在进行的研究集中在便携式金属分析仪的开发上,该便携式金属分析仪具有优于现有技术的许多优势,因此有可能代表下一代有毒金属分析仪。在本文中,我们重点介绍了两类用于铅的伏安检测的金属分析仪的开发和验证,包括:a)基于流动注射分析和汞膜电极上的阳极溶出伏安法的分析仪,以及b)汞-游离金属分析仪,采用吸附溶出伏安法和新型纳米结构材料,包括在介孔载体和碳纳米管上的自组装单层膜。这些传感器已经过优化,可像可重复使用且灵敏度高的最新感应耦合等离子体质谱法一样准确地检测尿液,血液和唾液中的Pb。这些经过改进的便携式分析传感器平台将有助于我们开展生物监测计划,以了解化学暴露评估与疾病结果之间的关系。

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