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Electrochemical detection of acetylcholine and choline: application to the quantitative nonradiochemical evaluation of choline transport

机译:乙酰胆碱和胆碱的电化学检测:在胆碱转运的定量非放射化学评估中的应用

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摘要

The development of analytical methods for determining the cholinergic biomarkers acetylcholine (ACh) and choline (Ch) is important for assessing their role in neurological and cognitive functions. In this review, electrochemical (EC) strategies to detect ACh and Ch are summarized and compared to other analysis methods. Recent research focusing on the development of a versatile nonradiochemical in vitro assay to evaluate Ch transport is also described. The assay coupled to analysis by capillary electrophoresis (CE) with indirect EC detection at an enzyme-modified microelectrode affords exceptional selectivity and sensitivity. Femtomole or lower mass detection limits for ACh (1 fmol) and Ch (100 amol) have been readily achieved, opening up a new range of possible experiments for investigating transport or turnover of Ch and ACh in neurobiological systems. The value of this method is illustrated through the evaluation of the pharmacological efficacy and mode of inhibition of a new class of quaternary ammonium alkyl-substituted catechol-based inhibitors of high-affinity choline transport (CHT). This microanalytical approach is particularly useful when knowledge of endogenous concentrations of Ch or ACh is desired or when the amount of available compounds or the sample size is limited. A brief description of the principles of CE is also provided.
机译:确定胆碱能生物标志物乙酰胆碱(ACh)和胆碱(Ch)的分析方法的开发对于评估其在神经和认知功能中的作用非常重要。在这篇综述中,总结了检测ACh和Ch的电化学(EC)策略,并将其与其他分析方法进行了比较。还介绍了侧重于开发通用的非放射化学体外测定以评估Ch转运的最新研究。该分析方法与通过毛细管电泳(CE)进行的分析以及在酶修饰的微电极上进行的间接EC检测相结合,可提供出色的选择性和灵敏度。 Femtomole或较低的ACh(1 fmol)和Ch(100 amol)质量检测极限已经很容易实现,从而为研究神经生物学系统中Ch和ACh的运输或更新开辟了新的可能实验范围。通过评估一类新型的高亲和力胆碱转运(CHT)季铵烷基取代的邻苯二酚类抑制剂的药理作用和抑制方式,可以说明该方法的价值。当需要了解Ch或ACh的内源性浓度或可用化合物的量或样品量受到限制时,这种微量分析方法特别有用。还简要介绍了CE的原理。

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