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Optical signaling strategies for use in a multi-component sensor array.

机译:用于多组件传感器阵列的光信号传输策略。

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摘要

This dissertation consists of four chapters that focus on various methods and signaling strategies by which different analytes in solution can be detected within a multi-component sensor array. The first chapter of this dissertation is a review of recent work in the area of chemical sensing. A discussion is provided here of the concepts and basic mechanisms required for a sensing event and different approaches to designing molecular receptors. Next, chemical sensing is described through examples of detection strategies documented in the literature. The introductory chapter concludes by relating different sensory mimics to current methods for vapor and solution phase analyte detection using multicomponent sensor arrays and discussing the importance of pattern recognition protocols for the successful application of sensor arrays.; Chapter 2 discusses competitive indicator-displacement methods for the solution-based UV-Visible analysis of citrate and calcium in beverages. A host compound containing three guanidinium moieties on a triethylbenzene core is employed to bind citrate. Improvements to the sensing scheme via complexometric dyes known to bind calcium ion and the host are described. Application of artificial neural networks to the spectral data also allowed for the evaluation of citrate and calcium concentrations in flavored vodkas.; Chapter 3 describes a new sensing protocol by coupling a combinatorial library of resin-bound receptors to a multi-component sensor array. The anchored receptor includes a rationally designed scaffold with peptide libraries and is used to bind various nucleotide phosphates. Analyte detection is accomplished by a competition assay using fluorescein as the signaling compound. Principal component analysis shows that the sensing ensembles create a fingerprint response for each compound analyzed in the sensor array.; Chapter 4 applies the combinatorial array sensor system described in the previous chapter toward the detection of nerve agent hydrolysis products. First, the synthesis of a control resin-bound peptide library is presented to elucidate the role of the scaffold plays in binding analytes. Studies that lend to an understanding of the sensing protocol mechanism are discussed next in the context of redesigning and optimizing assay conditions. The importance of data processing on the outcome of the principal component analysis is also described. Finally, ideas for expanding the utility of this sensing protocol toward the detection of other classes of analytes via the combinatorial approach are proposed.
机译:本论文共分四章,重点介绍了在多组分传感器阵列中检测溶液中不同分析物的各种方法和信号策略。本文的第一章回顾了化学传感领域的最新进展。这里提供了感应事件所需的概念和基本机制以及设计分子受体的不同方法的讨论。接下来,通过文献中记载的检测策略的例子来描述化学感测。引言部分的结尾是通过将不同的感官模拟与使用多组分传感器阵列的当前气相和溶液相分析物检测方法相关联,并讨论了模式识别协议对于成功应用传感器阵列的重要性。第2章讨论了用于溶液中饮料中柠檬酸和钙的紫外可见分析的竞争性指标置换方法。使用在三乙苯核上包含三个胍基部分的主体化合物结合柠檬酸盐。描述了通过已知结合钙离子和主体的络合染料对传感方案的改进。将人工神经网络应用于光谱数据还可以评估调味伏特加酒中柠檬酸和钙的浓度。第3章通过将树脂结合受体的组合库耦合到多组分传感器阵列来描述一种新的传感方案。锚定受体包括具有肽库的合理设计的支架,并用于结合各种核苷酸磷酸。通过使用荧光素作为信号传导化合物的竞争测定法来完成分析物的检测。主成分分析表明,传感组件为传感器阵列中分析的每种化合物产生了指纹响应。第4章将上一章中描述的组合阵列传感器系统应用于神经剂水解产物的检测。首先,提出了对照树脂结合的肽文库的合成,以阐明支架在结合分析物中的作用。接下来将在重新设计和优化测定条件的背景下讨论有助于理解感应方案机制的研究。还描述了数据处理对主成分分析结果的重要性。最后,提出了将这种传感方案的实用性扩展到通过组合方法检测其他类别的分析物的想法。

著录项

  • 作者

    McCleskey, Shawn Catherine.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Chemistry Analytical.; Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ; 有机化学 ;
  • 关键词

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