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Linear and Nonlinear Regimes of Electrospray Signal Response in Analysis of Urine by Electrospray Ionization-High Field Asymmetric Waveform Ion Mobility Spectrometry-MS and Implications for Nontarget Quantification

机译:电喷雾电离-高场非对称波形离子迁移谱-MS分析尿液中电喷雾信号响应的线性和非线性机制及其对非目标定量的意义

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摘要

Quantitative nontarget analysis is intended to provide a measurement of concentration of newly identified components in complex biological or environmental samples for which authentic or labeled standard do not exist. Electrospray ionization-high field asymmetric waveform ion mobility spectrometry-mass spectrometry (ESI-FAIMS-MS) has unique advantages that allowed us to develop a novel approach for quantification of nontarget analytes. In the nontarget analysis of urinary metabolites by ESI-FAIMS-MS, we find it practical and beneficial to analyze highly diluted urine samples. We show that urine extracts can be analyzed directly at very high dilutions (up to 20 000 times) by extending MS analysis times during slow FAIMS scanning. We explore the effects of sample dilution on ionization efficiency and ionization suppression in direct electrospray of complex sample matrixes. We consistently observe two distinct regimes in ESI operation related to the limited ionization capacity of this method. In the linear dynamic concentration range below the limiting ionization capacity, the analytical sensitivity of an analyte is constant and does not depend on matrix composition and concentration. Once the capacity of ESI is exceeded, all species exhibit log-log linearity in signal response. We show how quantification can be carried out using two different approaches, one for analytes which can be detected in the linear regime and another for those only detected in the suppression regime that overcomes the effects of ionization suppression. Our new insight into ionization suppression effects in ESI is of broad interest to anyone using ESI as an ionization technique for the MS analysis of complex samples.
机译:定量非目标分析旨在提供对复杂生物或环境样品中新鉴定出的成分的浓度的测量,而对于这些样品,不存在真实或标记的标准品。电喷雾电离-高场非对称波形离子淌度质谱-质谱(ESI-FAIMS-MS)具有独特的优势,这使我们能够开发出一种新颖的定量非目标分析物的方法。在通过ESI-FAIMS-MS对尿液代谢产物进行非目标分析时,我们发现分析高度稀释的尿液样品是实用且有益的。我们显示,通过在慢速FAIMS扫描过程中延长MS分析时间,可以直接以非常高的稀释度(最多2万倍)分析尿液提取物。我们探讨了样品稀释对复杂样品基质直接电喷雾中电离效率和电离抑制的影响。我们一直在ESI操作中观察到两种与该方法有限的电离能力有关的不同机制。在低于极限电离容量的线性动态浓度范围内,分析物的分析灵敏度是恒定的,并且与基质组成和浓度无关。一旦超过了ESI的容量,所有物种都会在信号响应中表现出对数-对数线性。我们展示了如何使用两种不同的方法进行定量,一种方法是针对可以在线性范围内检测到的分析物,另一种方法是针对那些克服了电离抑制作用的抑制方案中的检测物。对于使用ESI作为用于复杂样品的MS分析的电离技术的人,我们对ESI中电离抑制作用的新见解引起了广泛的兴趣。

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