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Chemosensors and competition sensing assays.

机译:化学传感器和竞争传感测定。

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摘要

The development and application of a synthetic fluorescent chemosensor for citrate and a competition sensing assay for glucose-6-phosphate based on a synthetic receptor are described. Chemosensor 2.0 was effective for determining citrate concentrations at the micromolar level in a highly competitive medium. The chemosensor is based on a mixed ligand system. Fluorescence spectroscopy studies determined citrate coordination with 2.0 modulated the fluorescence quenching of a Cu(II) ion bound in the 1,10-phenanthroline cleft of 2.0. Binding constants were determined using a modified Rose and Drago general equation. Chemosensor 2.0 bound Cu(II) with a binding constant of 3.4 x 104 M-1 in a buffered aqueous methyl alcohol solution at a pH of 7.4. Additionally, citrate was bound by 2.0 with a binding constant of 3.9 x 106 M-1 under the same experimental conditions as the Cu(II) binding experiment. The cooperative nature of the receptor-metal-citrate mixed ligand system was established through a cyclic equilibria analysis. When Cu(II) ions and citrate were both in solution, the binding constants for 2.0 with Cu(II) and citrate both doubled to 6.4 x 10 4 M-1 and 8.6 x 106 M -1 respectively.; Our competition-sensing assay was effective for determining glucose-6-phosphate concentrations at micromolar levels in a highly competitive medium. The competition assay was assembled around receptor 3.0, which positions boronic acid groups complementarily to the hydroxyl and phosphate functionality of glucose-6-phosphate. Additionally, the phosphate functionality can be involved in an electrostatic attraction with three protonated secondary amines of 3.0. The indicator in our competition assay (5-carboxyfluorescein) was bound by 3.0 with a binding constant of 3 x 10 2 M-1 under Benesi-Hildebrand conditions. The equilibrium between 5-carboxyfluorescein, 3. 0, and the 5-carboxyfluorescein- 3.0 complex produced a spectrophotometric response. Introduction of glucose-6-phosphate to the indicator-receptor ensemble resulted in a change of this equilibrium state. Analysis of spectrophotometric: data related to this change in equilibrium produced a 6 x 103 M -1 binding constant between glucose-6-phosphate and 3.0 .
机译:描述了用于柠檬酸盐的合成荧光化学传感器的开发和应用以及基于合成受体的6-磷酸葡萄糖的竞争感测法。化学传感器2.0可有效测定竞争激烈的培养基中微摩尔水平的柠檬酸盐浓度。化学传感器基于混合配体系统。荧光光谱研究确定了柠檬酸盐与2.0的配位关系,调节了1,10-菲咯啉裂隙为2.0的Cu(II)离子的荧光猝灭。使用改良的Rose和Drago通用方程式确定结合常数。在7.4的缓冲甲醇水溶液中,Chemosensor 2.0以3.4 x 104 M-1的结合常数结合了Cu(II)。此外,在与Cu(II)结合实验相同的实验条件下,柠檬酸盐以3.9 x 106 M-1的结合常数被2.0结合。通过循环平衡分析建立了受体-金属-柠檬酸盐混合配体系统的合作性质。当Cu(II)离子和柠檬酸盐都在溶液中时,与Cu(II)和柠檬酸盐的2.0的结合常数都分别翻倍至6.4×10 4 M-1和8.6×106M -1。我们的竞争感应分析法可有效测定竞争激烈的培养基中微摩尔水平的6-磷酸葡萄糖浓度。竞争分析是围绕受体3.0进行的,该受体将硼酸基团与葡萄糖6磷酸的羟基和磷酸官能团互补地定位。另外,磷酸盐官能团可以与3.0的三个质子化仲胺参与静电吸引。在Benesi-Hildebrand条件下,我们竞争分析中的指示剂(5-羧基荧光素)被3.0结合,结合常数为3 x 10 2 M-1。 5-羧基荧光素3. 0和5-羧基荧光素3.0复合物之间的平衡产生了分光光度法响应。将6-磷酸葡萄糖引入指示剂受体集合导致该平衡状态的改变。分光光度法的分析:与平衡变化有关的数据在6磷酸葡萄糖和3.0之间产生了6 x 103 M -1的结合常数。

著录项

  • 作者

    Cabell, Larry Allen.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 197 p.
  • 总页数 197
  • 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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