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使用组合解复用和峰分解技术解决离子淌度中的同系物混合物。

Resolution of Isomeric Mixtures in Ion Mobility Using a Combined Demultiplexing and Peak Deconvolution Technique.

机构信息

Department of Chemistry, Vanderbilt University, Nashville, Tennessee 37235, United States.

RKResearch GmbH, 3662 Seftigen, Switzerland.

出版信息

Anal Chem. 2020 Jul 21;92(14):9482-9492. doi: 10.1021/acs.analchem.9b05718. Epub 2020 Jul 6.

Abstract

A combined data acquisition and data processing strategy for improving the sensitivity and resolution of ion mobility measurements is described. This strategy is implemented on a commercially available drift tube ion mobility-mass spectrometry (IM-MS) instrument and utilizes both an existing ion multiplexing strategy to achieve up to an 8-fold gain in ion signal and a new postacquisition data reconstruction technique, termed "high resolution demultiplexing" (HRdm), to improve resolution in the ion mobility dimension. A series of isomeric mixtures were qualitatively investigated with HRdm, including biologically relevant lipids and carbohydrates, which were successfully resolved by HRdm, including two monosaccharide regioisomers which differed in drift time by only 0.8%. For a complex trisaccharide isomer mixture, HRdm was able to resolve 5 out of 6 components. An analysis of two-peak resolution () and peak-to-peak separation (Δ) indicated that HRdm performs with an effective resolving power () of between 180 to 250 for the highest deconvolution settings. Overall analysis times and drift time measurement precision were found to be unaffected between standard and HRdm processed data sets, which allowed statistically identical collision cross section values to be directly determined from all ion mobility spectra.

摘要

描述了一种用于提高离子淌度测量灵敏度和分辨率的组合数据采集和数据处理策略。该策略在商业上可用的漂移管离子淌度-质谱(IM-MS)仪器上实现,利用现有的离子多路复用策略,将离子信号增益高达 8 倍,以及一种新的后采集数据重建技术,称为“高分辨率解复用”(HRdm),以提高离子淌度维度的分辨率。使用 HRdm 对一系列的异构体混合物进行了定性研究,包括具有生物学相关性的脂质和碳水化合物,这些混合物都可以通过 HRdm 成功分离,包括仅在淌度时间上相差 0.8%的两个单糖区域异构体。对于复杂的三糖异构体混合物,HRdm 能够分辨出 6 个成分中的 5 个。对双峰分辨率()和峰峰分离(Δ)的分析表明,HRdm 在最高解卷积设置下的有效分辨率()在 180 到 250 之间。标准和 HRdm 处理数据集之间的总分析时间和漂移时间测量精度不受影响,这允许直接从所有离子淌度谱确定统计学上相同的碰撞截面值。

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