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Compartmentalized Arrays of Matrix Droplets for Quantitative Mass Spectrometry Imaging of Adsorbed Peptides.

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Mass spectrometry imaging (MSI) based on matrix-assisted laser desorption/ionization (MALDI) provides information on identity and spatial distribution of biomolecules. Quantitative analysis, however, has been challenging largely due to heterogeneity in… Click to show full abstract

Mass spectrometry imaging (MSI) based on matrix-assisted laser desorption/ionization (MALDI) provides information on identity and spatial distribution of biomolecules. Quantitative analysis, however, has been challenging largely due to heterogeneity in both the size of the matrix crystals and the extraction area. In this work, we present a compartmentalized elastomeric stamp for quantitative MALDI-MSI of adsorbed peptides. Filling the compartments with matrix solution and stamping onto a planar substrate extract and concentrate analytes adsorbed in each compartment into a single analyte-matrix cocrystal over the entire stamped area. Walls between compartments help preserve spatial information of the adsorbates. Mass intensity of the cocrystals directly correlates with the surface coverage of analytes, which enables not only quantitative analysis but estimation of an equilibrium constant for the adsorption. We demonstrate via MALDI-MSI relative quantitation of peptides adsorbed along a microchannel with varying surface coverages.

Keywords: mass spectrometry; mass; adsorbed peptides; compartmentalized arrays; spectrometry imaging

Journal Title: Analytical chemistry
Year Published: 2020

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