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Multi-waveform fast-scan cyclic voltammetry mapping of adsorption/desorption kinetics of biogenic amines and their metabolites

机译:生物胺和代谢物的吸附/解吸动力学的多波形快速扫描循环伏安映射

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摘要

Fast-scan cyclic voltammetry (FSCV) is an effective method for investigating electro-active neurochemical species. In recent years, FSCV has been used to measure electro-active neurotransmitters in a variety of neuroscience studies. We previously reported on the use of paired-pulse voltammetry (PPV) that enables FSCV to differentiate various analytes and minimize confounding factors by taking advantage of the adsorption characteristics of the analyte on carbon fiber microelectrodes. In spite of a number of studies regarding adsorption/desorption characteristics of neurotransmitters, the difference in adsorption/desorption properties among neurotransmitters has yet to be fully explored. To calculate adsorption/desorption constants for neurotransmitters, we propose the use of multi-waveform FSCV (M-FSCV), which consists of ten triangular waveforms in a single scan. Within the multiple waveforms, the voltammetric response of dopamine decayed exponentially because of the decreased adsorption time period. The decay pattern was mathematically described using adsorption/desorption characteristics and two additional initial points: an exponential decay constant (K) and an initial quantity (A), which were extracted from the decay equation. Using this method, we were able to quantify the decay constant (K-map) and an initial quantity (A-map) color plot in addition to a conventional pseudo color plot. M-FSCV was evaluated with two biogenic amine groups (catecholamines and indolamines) to characterize their inherent adsorption/desorption constants. As a result, the A-map showed a high correlation with concentration and the K-map for each group to be significantly differentiated. These results demonstrate that M-FSCV has the potential to be a useful technique for acquiring additional adsorption/desorption information regarding neurotransmitters.
机译:快速扫描循环伏安法(FSCV)是研究电活性神经化学物质的有效方法。近年来,FSCV已被用于测量各种神经科学研究中的电活性神经递质。我们以前报道了使用配对脉冲伏安法(PPV),使FSCV能够通过利用碳纤维微电极对分析物的吸附特性来区分各种分析物并最大限度地减少混淆因子。尽管有关于神经递质的吸附/解吸特性的许多研究,但神经递质的吸附/解吸性能差异尚未得到充分探索。为了计算神经递质的吸附/解吸常数,我们提出了使用多波形FSCV(M-FSCV),其包括在单个扫描中的十个三角波形。在多个波形中,由于吸附时间段降低,多巴胺的伏安响应呈指数衰减。使用吸附/解吸特性和两个附加初始点以及从衰减方程提取的指数衰减常数(k)和初始量(a)的数学描述衰减模式。使用该方法,除了传统的伪颜色图之外,我们还能够量化衰减常数(k-map)和初始数量(a-映射)颜色图。用两种生物胺基(儿茶酚胺和吲哚胺)评价M-FSCV,以表征其固有的吸附/解吸常数。结果,A-MAP显示与每个组的浓度和k映射的高相关性显着差异化。这些结果表明,M-FSCV有可能成为获取关于神经递质的附加吸附/解吸信息的有用技术。

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  • 来源
    《Analytical methods》 |2018年第24期|共10页
  • 作者单位

    Hanyang Univ Dept Biomed Engn 222 Wangsimni Ro Seoul South Korea;

    Mayo Clin Dept Neurol Surg Rochester MN 55905 USA;

    Hanyang Univ Dept Biomed Engn 222 Wangsimni Ro Seoul South Korea;

    Hanyang Univ Dept Biomed Engn 222 Wangsimni Ro Seoul South Korea;

    Mayo Clin Dept Neurol Surg Rochester MN 55905 USA;

    Mayo Clin Dept Neurol Surg Rochester MN 55905 USA;

    Hanyang Univ Dept Biomed Engn 222 Wangsimni Ro Seoul South Korea;

    Mayo Clin Dept Neurol Surg Rochester MN 55905 USA;

    Hanyang Univ Dept Biomed Engn 222 Wangsimni Ro Seoul South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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