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首页> 外文期刊>Analytical chemistry >Nontarget Analysis of Urine by Electrospray Ionization-High Field Asymmetric Waveform Ion Mobility-Tandem Mass Spectrometry
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Nontarget Analysis of Urine by Electrospray Ionization-High Field Asymmetric Waveform Ion Mobility-Tandem Mass Spectrometry

机译:电喷雾电离-高场非对称波形离子淌度-串联质谱法对尿液进行非目标分析

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摘要

Nearly a decade after first commercialization, high field asymmetric waveform ion mobility spectrometry (FAIMS) has yet to find its place in routine chemical analysis. Prototypes have been used to demonstrate the utility of this separation technique combined with mass spectrometry (MS). Unfortunately, first generation commercial FAIMS instruments have gone practically unused by early adopters. Here, we show this to be due to poor ion transmission in the FAIMS-MS source interface. We present simple instrumental modifications and optimization of experimental conditions to achieve good performance from the first generation commercial FAIMS device (the Ionalytics Selectra) coupled to a high resolution Q-TOF-MS. In combination with nanospray ionization, we demonstrate for the first time the nontarget analysis of urine by FAIMS with minimal sample preparation. We show the unique suitability of electrospray ionization (ESI)-FAIMS-MS for identification of low abundance species such as urinary biomarkers of damage of nucleic acids in a complex biological matrix. The elimination of electrospray noise and matrix components by FAIMS and the continuous flow of analytes through FAIMS for accurate and tandem mass analysis produce high quality spectral data suitable for structural identification of unknowns. These characteristics make ESI-FAIMS-MS ideal for nontarget identification, even when compared to high efficiency LC-ESI-MS.
机译:在首次商业化应用近十年后,高场非对称波形离子迁移谱(FAIMS)尚未在常规化学分析中找到其位置。原型已被用来证明该分离技术与质谱法(MS)结合使用。不幸的是,第一代商业FAIMS工具实际上已经被早期采用者所使用。在这里,我们证明这是由于FAIMS-MS源接口中的离子传输不良所致。我们提出了简单的仪器修改和实验条件的优化,以从第一代商用FAIMS设备(Ionalytics Selectra)与高分辨率Q-TOF-MS耦合获得良好的性能。结合纳米喷雾电离,我们首次展示了用FAIMS进行的非目标尿液分析,样品制备量最少。我们显示出电喷雾电离(ESI)-FAIMS-MS独特的适用性,用于鉴定低丰度物种,例如复杂生物基质中核酸损伤的尿液生物标志物。通过FAIMS消除电喷雾噪声和基质成分,并通过FAIMS连续进行分析物以进行准确的串联质量分析,可产生适用于未知结构鉴定的高质量光谱数据。这些特性使ESI-FAIMS-MS成为非目标识别的理想选择,即使与高效LC-ESI-MS相比也是如此。

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