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用于解复用时间分辨电荷检测质谱数据的UniChromCD

UniChromCD for Demultiplexing Time-Resolved Charge Detection-Mass Spectrometry Data.

作者信息

Sanders James D, Owen October N, Tran Brian H, Juetten Kyle J, Marty Michael T

机构信息

Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona 85721, United States.

Department of Chemistry, The University of Texas at Austin, Austin, Texas 78712, United States.

出版信息

Anal Chem. 2024 Sep 17;96(37):15014-15022. doi: 10.1021/acs.analchem.4c03250. Epub 2024 Sep 3.

Abstract

Charge detection mass spectrometry (CD-MS) enables characterization of large, heterogeneous analytes through the analysis of individual ion signals. Because hundreds to thousands of scans must be acquired to produce adequate ion statistics, CD-MS generally requires long analysis times. The slow acquisition speed of CD-MS complicates efforts to couple it with time-dispersive techniques, such as chromatography and ion mobility, because it is not always possible to acquire enough scans from a single sample injection to generate sufficient ion statistics. Multiplexing methods based on Hadamard and Fourier transforms offer an attractive solution to this problem by improving the duty cycle of the separation while preserving retention/drift time information. However, integrating multiplexing with CD-MS data processing is complex. Here, we present UniChromCD, a new module in the open-source UniDec package that incorporates CD-MS time-domain data processing with demultiplexing tools. Following a detailed description of the algorithm, we demonstrate its capabilities using two multiplexed CD-MS workflows: Hadamard-transform size-exclusion chromatography and Fourier-transform ion mobility. Overall, UniChromCD provides a user-friendly interface for analysis and visualization of time-resolved CD-MS data.

摘要

电荷检测质谱法(CD-MS)通过分析单个离子信号,能够对大型异质分析物进行表征。由于必须采集数百到数千次扫描才能产生足够的离子统计数据,CD-MS通常需要较长的分析时间。CD-MS缓慢的采集速度使得将其与时间分散技术(如色谱法和离子迁移率)联用变得复杂,因为从单次样品进样中不一定总能采集到足够的扫描次数以生成足够的离子统计数据。基于哈达玛变换和傅里叶变换的复用方法通过提高分离的占空比同时保留保留时间/漂移时间信息,为这个问题提供了一个有吸引力的解决方案。然而,将复用与CD-MS数据处理集成很复杂。在这里,我们展示了UniChromCD,这是开源UniDec软件包中的一个新模块,它将CD-MS时域数据处理与解复用工具相结合。在详细描述算法之后,我们使用两种复用CD-MS工作流程展示了它的功能:哈达玛变换尺寸排阻色谱法和傅里叶变换离子迁移率。总体而言,UniChromCD为时间分辨CD-MS数据的分析和可视化提供了一个用户友好的界面。

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