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

Anal Chem

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

Published: September 2024

AI Article Synopsis

  • - Charge detection mass spectrometry (CD-MS) allows for the analysis of large and complex analytes by examining individual ion signals, but it requires long analysis times due to the need for numerous scans to achieve reliable data.
  • - The slow speed of CD-MS presents challenges for integration with fast techniques like chromatography, as limited scans may not provide adequate ion statistics from a single injection.
  • - UniChromCD, a new module in the open-source UniDec package, simplifies the processing of CD-MS data by combining it with advanced demultiplexing methods, enhancing analysis and visualization of time-resolved data while supporting techniques like size-exclusion chromatography and ion mobility.

Article 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.

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Source
http://dx.doi.org/10.1021/acs.analchem.4c03250DOI Listing

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