Demonstrating voxel-by-voxel (V × V) single-point calibration in liver tissue by IR-MALDESI quantitative MSI
Emily R. Bruce, Russell R. Kibbe, Logan J. Opperman, David C. Muddiman

TL;DR
A new method for quantitative mass spectrometry imaging in liver tissue is introduced, offering better precision and simpler sample preparation.
Contribution
The novel voxel-by-voxel (V × V) quantification method provides internal calibration for each voxel, simplifying sample prep and accounting for local matrix effects.
Findings
V × V quantification showed high precision across a wide concentration range of glutathione.
The method allows PRM imaging, enhancing specificity in mass spectrometry imaging.
Results indicate feasibility of V × V quantification through concentration heatmaps.
Abstract
Quantitative mass spectrometry imaging (qMSI) provides information regarding the colocalization, relative abundance, and concentration of a target analyte in a tissue without homogenization. Ionization sources, including IR-MALDESI, commonly utilize an on-tissue spatial calibration curve approach; however, this approach has several limitations including tedious sample preparation, and this approach does not account for local matrix effects. To compensate for these two limitations, we developed voxel-by-voxel (V × V) quantification to provide an internal standard calibration point for every voxel which requires a simple sample preparation and accounts for local matrix effects. In this work, we evaluate the performance of V × V quantification against the spatial calibration curve to assess the quantitative capacity of this newly developed method. Quantification of glutathione (GSH) on a…
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Taxonomy
TopicsMass Spectrometry Techniques and Applications · Metabolomics and Mass Spectrometry Studies · Analytical Chemistry and Chromatography
