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Metabolite Identification Using a Nanoelectrospray LC-EC-array-MS Integrated System

机译:使用纳米电喷雾LC-EC-array-MS集成系统进行代谢物鉴定

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摘要

A novel approach to the parallel coupling of normal-bore high-performance liquid chromatography (LC) with electrochemical-array detection (EC-array) and nanoelectrospray mass spectrometry (MS), based on the use of a nanosplitting interface, is described where both detectors are utilized at their optimal detection mode for parallel configuration. The dual detection platform was shown to maintain full chromatographic integrity with retention times and peak widths at half-height between the EC-array and MS displaying high reproducibility with relative standard deviations of <2%. Detection compatibility between the two detectors at the part per billion level injected on-column was demonstrated using selected metabolites representative of the diversity typically encountered in physiological systems. Metabolites were detected with equal efficiency whether neat or in serum, demonstrating the system's ability to handle biological samples with limited sample cleanup and reduced concern for biological matrix effects. Direct quantification of known analytes from the EC-array signal using Faraday's law can eliminate the need for isotopically labeled internal standards. The system was successfully applied to the detection and characterization of metabolites of phenylbutyrate from serum samples of Huntington's disease patients in an example that illustrates the complementarity of the dual detection nanoelectrospray LC-EC-array-MS system.
机译:基于纳米分离界面的使用,描述了一种将正孔高效液相色谱(LC)与电化学阵列检测(EC-array)和纳米电喷雾质谱(MS)并行偶联的新方法,其中检测器以其最佳检测模式用于并行配置。双重检测平台显示可保持完整的色谱完整性,并且保留时间和EC阵列与MS之间半峰的峰宽显示出高重现性,相对标准偏差<2%。使用代表生理系统中通常遇到的多样性的所选代谢物,证明了按柱上注入的十亿分之一水平在两个检测器之间的检测兼容性。无论是纯净的还是血清中的代谢物,检测效率均相等,这证明了系统在有限的样品净化范围内处理生物样品的能力,并减少了对生物基质效应的担忧。使用法拉第定律从EC阵列信号直接量化已知分析物可以消除对同位素标记内标的需要。该系统已成功应用于亨廷顿氏病患者血清样品中苯丁酸代谢物的检测和表征,该实例说明了双重检测纳米电喷雾LC-EC-array-MS系统的互补性。

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