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Optical monosaccharide detection using anionic fluorescent dyes and boronic acid-modified viologen quenchers.

机译:使用阴离子荧光染料和硼酸修饰的紫精猝灭剂进行光学单糖检测。

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摘要

Glucose is the body's main source of energy and the regulation of physiological glucose levels is critical to human health. Glucose monitoring systems can provide patients and clinicians with real-time data and allow them to make the necessary interventions to maintain proper levels. Our lab has pursued a two-component approach to glucose sensing in which a boronic acid saccharide receptor is covalently attached to a viologen quencher molecule. In the absence of glucose, this boronic acid-modified viologen will quench, or turn off, the fluorescence of the dye. However, when glucose or other monosaccharides are added and bind to the boronic acid, the quenching ability of the viologen is diminished and fluorescence increases. Thus, the fluorescence of the dye can be correlated with glucose concentrations. Both the quenching and sugar sensing results are explained by an electrostatic interaction between dye and quencher.; We have pursued this two-component approach to glucose sensor design and explored the use of a variety of dye and quencher molecules in both solution studies and in immobilized form. The research reported herein involves the design, synthesis, characterization, and evaluation of different dye and quencher components for use in this two-component system. These compounds were assessed both in solution studies and immobilized sensor configurations.; The first chapter of the thesis provides background information on common glucose sensing strategies and offers the reader a primer on the essentials of related spectroscopy. The second and third chapters deal, respectively, with variations in the quencher and dye components in our system. The fourth and final chapter details our efforts to immobilize the sensing components in a hydrogel matrix for continuous glucose monitoring. The ultimate goal of this research was to prepare a continuous glucose sensing system for in vivo use.
机译:葡萄糖是人体的主要能量来源,生理葡萄糖水平的调节对人体健康至关重要。葡萄糖监测系统可以为患者和临床医生提供实时数据,并允许他们进行必要的干预以维持适当水平。我们的实验室采用了一种由两部分组成的葡萄糖传感方法,其中硼酸糖类受体共价连接至紫精猝灭剂分子。在没有葡萄糖的情况下,这种经硼酸修饰的紫精将猝灭或关闭染料的荧光。然而,当添加葡萄糖或其他单糖并结合至硼酸时,紫精的猝灭能力降低并且荧光增加。因此,染料的荧光可以与葡萄糖浓度相关。猝灭和糖感测结果均通过染料和猝灭剂之间的静电相互作用来解释。我们在葡萄糖传感器设计中采用了这种由两部分组成的方法,并探索了溶液研究和固定化形式中各种染料和猝灭剂分子的使用。本文报道的研究涉及该双组分体系中使用的不同染料和猝灭剂组分的设计,合成,表征和评估。在溶液研究和固定传感器配置中对这些化合物进行了评估。本文的第一章提供了有关常见葡萄糖传感策略的背景信息,并为读者提供了相关光谱学基础知识的入门。第二章和第三章分别讨论了系统中淬灭剂和染料组分的变化。第四章也是最后一章详细介绍了我们将传感组件固定在水凝胶基质中以进行连续葡萄糖监测的努力。这项研究的最终目的是为体内使用准备一个连续的葡萄糖传感系统。

著录项

  • 作者

    Cordes, David B.;

  • 作者单位

    University of California, Santa Cruz.;

  • 授予单位 University of California, Santa Cruz.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 347 p.
  • 总页数 347
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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