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Electrogenerated chemiluminescence of isoluminol and acridinium esters in flow injection analysis and HPLC.

机译:流动注射分析和HPLC中异鲁米诺和a啶酯的电化学发光。

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摘要

Electrogenerated chemiluminescence (ECL) is the process in which electrochemically generated reactants undergo high energy electron transfer reactions in solution to generate excited state molecules which relax to the ground state with emission of light. Such reactions offer several advantages in analysis. Specifically, in situ reagent generation eliminates band-broadening and dilution effects associated with the solution addition of reagents. In addition precise control over the spatial and temporal characteristics of the light emission is gained. Motivated by these advantages, this research focused on the study and application of the electrogenerated chemiluminescence reactions of isoluminol and acridinium esters.;Initial research involved the ECL reaction of an isoluminol derivative, 4-isothiocyanatophthalhydrazide (ILITC). The derivative was synthesized and characterized prior to use as a label for amino acid determination. In analysis, chromatographic separation of ILITC-amino acids preceded the ECL detection. A drastic reduction in ECL efficiency was observed upon coupling of ILITC to the amino acid analytes. Experiments suggested that although an ILITC-amino acid coupling reaction occurs, the resultant product has lost CL activity. Additional studies illustrated a correlation between CL activity and the conditions used to couple ILITC to the analyte. In spite of difficulties associated with loss of CL activity, the ECL determination of ILITC-amino acids (1 nmol) and the feasibility of on-line analyte derivatization were demonstrated.;The ECL reaction of acridinium esters was studied and shown to proceed via the electrochemical generation of hydrogen peroxide (a reagent necessary for the CL reaction). In further fundamental studies of the acridinium ester decomposition reactions, kinetic parameters associated with this decay were determined and applied in a model for pH optimization. The use of ECL for the determination of acridinium ester-labeled species was demonstrated via the successful quantitation (to 50 fmol) of lysine labeled with a hydroxysuccinimide acridinium ester. Instrumental configurations for use of ECL detection in immunoassay were validated; however, loss of ECL signal in the presence of BSA and human TSH antibodies hindered application of acridinium ester ECL detection to model immunoassay reactions.
机译:电生成化学发光(ECL)是这样一种过程,其中电化学生成的反应物在溶液中经历高能电子转移反应,以生成激发态分子,该激发态分子随着光的释放而松弛到基态。这样的反应在分析中提供了几个优点。具体而言,原位试剂产生消除了与试剂溶液添加相关的谱带扩展和稀释效应。另外,获得了对发光的时空特性的精确控制。受这些优点的驱使,这项研究集中于异鲁米诺和a啶鎓酯的电致化学发光反应的研究和应用。合成衍生物并表征,然后用作氨基酸测定的标记。在分析中,ILITC氨基酸的色谱分离先于ECL检测。当ILITC与氨基酸分析物偶联后,观察到ECL效率大大降低。实验表明,尽管发生了ILITC-氨基酸偶联反应,但所得产物却失去了CL活性。其他研究表明,CL活性与将ILITC耦合至分析物的条件之间存在相关性。尽管存在与CL活性丧失相关的困难,但仍证明了ECL测定ILITC-氨基酸(1 nmol)的可行性以及在线分析物衍生化的可行性。;研究了cri啶酯的ECL反应,并表明通过via电化学生成过氧化氢(CL反应所需的试剂)。在further啶酯分解反应的进一步基础研究中,确定了与这种衰变有关的动力学参数,并将其应用于pH优化模型中。通过成功定量(至50 fmol)被羟基琥珀酰亚胺ide啶酯标记的赖氨酸,证实了ECL用于测定cri啶酯标记的物质。验证了在免疫测定中使用ECL检测的仪器配置;然而,在BSA和人TSH抗体存在下ECL信号的丢失阻碍了cri啶酯ECL检测在免疫分析反应模型中的应用。

著录项

  • 作者

    Littig, Janet Holmstrom.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 203 p.
  • 总页数 203
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-17 11:50:07

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