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Development and Application of Electrochemical Dithiothreitol (DTT) Assay for Analysis of Particulate Matter

机译:电化学二硫苏糖醇(DTT)分析方法在颗粒物分析中的应用

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摘要

Particulate matter (PM) in air pollution, known to have a negative impact on biological systems, is regulated in many countries across the globe. The generation of PM from energy and mining industries is monitored in an effort to minimize its contributions to diminished human health. And although quantifying total PM generation (mass and number) and exposure can help track health risks, ultimately there exists a need to develop rapid, efficient, accurate methods for analyzing PM composition and health effects. Leading hypotheses over the last decade have theorized that PM, once absorbed into bodily tissues, generate reactive oxygen species (ROS), leading to oxidative stress, thus catalyzing cellular damage. A recently developed analytical electrochemical protocol has shown great potential for investigating the potential for PM to cause oxidative stress. The work discussed within this thesis focuses on the development of the electrochemical assay and its application to real world PM samples.;Herein, the development of an electrochemical version of the well-studied dithiothreitol (DTT) absorbance spectroscopy assay is presented as a platform for the analysis of PM in air samples. Flow injection amperometry was used as the primary electrochemical method. Amperometry was performed using a CH Instruments potentiostat and commercially available DropSens modified carbon screen printed electrodes (SPE's) with a DropSens impinging jet flow cell, granting the assay flexibility to be performed in any lab with commercially available components. Previous examples used homemade components restricting accessibility to the field. The ability to use inexpensive, purchasable components eases trouble shooting, training, and allows for the potential to make the assay more mobile. The use of a flow cell also allows for the possibility for linking the assay to other analytical methods to further analyze PM which may not be reactive in the assay.;Assay development focused on optimizing the assay temporally, as well as investigating its precision, detection limits, fluid dynamics, reproducibility, and relative accuracy. The electrochemical assay uses shorter reaction times and avoids the need for additional chemical quenching agents used in the absorbance assay, allowing for batch processing. Assay performance was compared to literature with a model oxidant quinone, 1,4-naphthoquinone, and trace metal, Cu(II). The assay was then applied to real exposure samples collected in Fresno, California and Honduras. Data from these samples were correlated against data obtained by the traditional DTT assay to investigate accuracy. Analyses of the Honduras samples will be correlated against health data as part of the Honduras Cookstove Project, moving one step closer to directly connecting PM reactivity to health effects. Although the traditional absorbance DTT assay is the standard in assessing PM reactivity in air samples, and has been used for the last 15 years, the electrochemical assay is a robust, quick, and precise alternative method that can be readily performed using readily available components.
机译:众所周知,空气污染中的颗粒物(PM)对生物系统有负面影响,全球许多国家/地区都对其进行监管。监测能源和采矿业中PM的产生,以最大程度地减少其对人类健康的影响。尽管量化总的PM产生量(质量和数量)和暴露量可以帮助追踪健康风险,但最终仍需要开发出快速,高效,准确的方法来分析PM成分和健康影响。在过去的十年中,主要的理论认为,PM一旦被吸收到身体组织中,就会产生活性氧(ROS),导致氧化应激,从而催化细胞损伤。最近开发的分析电化学方案已显示出巨大的潜力,可用于研究PM引起氧化应激的可能性。本论文中讨论的工作着重于电化学分析的发展及其在实际PM样品中的应用。在此,研究良好的二硫苏糖醇(DTT)吸收光谱法的电化学形式的开发被提出作为一个平台。空气样品中PM的分析。流动注射安培法被用作主要的电化学方法。使用CH Instruments恒电位仪和带有DropSens撞击式射流池的商购DropSens修饰碳丝网印刷电极(SPE's)进行电流分析,从而使分析灵活性可在任何实验室中使用商购组件进行。先前的示例使用自制组件限制了对该字段的可访问性。使用廉价的可购买组件的能力可以简化故障排除和培训的过程,并有可能使测定更加灵活。流通池的使用还允许将测定法与其他分析方法联系起来,以进一步分析在测定法中可能不具有反应性的PM。极限,流体动力学,重现性和相对精度。电化学测定使用较短的反应时间,并且避免了在吸光度测定中使用额外的化学淬灭剂,从而可以进行批处理。将测定性能与模型氧化剂醌1,4-萘醌和痕量金属Cu(II)进行比较。然后将该测定方法应用于在弗雷斯诺,加利福尼亚和洪都拉斯收集的真实暴露样品。将这些样品的数据与通过传统DTT分析获得的数据进行关联,以研究准确性。洪都拉斯Cookstove项目的一部分将把洪都拉斯样品的分析与健康数据相关联,从而将PM反应与健康影响直接联系起来迈出了一步。尽管传统的DTT吸收测定法是评估空气样品中PM反应性的标准,并且已使用了15年,但电化学测定法是一种可靠,快速且精确的替代方法,可以使用容易获得的组件轻松进行。

著录项

  • 作者

    Turner, Laurelle Rose.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Chemical engineering.
  • 学位 M.S.
  • 年度 2017
  • 页码 83 p.
  • 总页数 83
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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