4.8 Article

Optimization and Comparison of Multiple MALDI Matrix Application Methods for Small Molecule Mass Spectrometric Imaging

Journal

ANALYTICAL CHEMISTRY
Volume 86, Issue 20, Pages 10030-10035

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ac5028534

Keywords

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Funding

  1. NIH [P41GM103399, NCRR S10RR029531]
  2. Biological Magnetic Resonance Data Bank (BMRB) [R01 GM109046]
  3. National Science Foundation (NSF) [DGE-1256259]
  4. University of Wisconsin Graduate School
  5. Wisconsin Alumni Research Foundation (WARP)
  6. Romnes Faculty Research Fellowship program

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The matrix application technique is critical to the success of a matrix-assisted laser desorption/ionization (MALDI) experiment. This work presents a systematic study aiming to evaluate three different matrix application techniques for MALDI mass spectrometric imaging (MSI) of endogenous metabolites from legume plant, Medicago truncatula, root nodules. Airbrush, automatic sprayer, and sublimation matrix application methods were optimized individually for detection of metabolites in the positive ionization mode exploiting the two most widely used MALDI matrices, 2,5-dihydroxybenzoic acid (DHB) and a-cyano-4-hydroxycinnamic acid (CHCA). Analytical reproducibility and analyte diffusion were examined and compared side-by-side for each method. When using DHB, the optimized method developed for the automatic matrix sprayer system resulted in approximately double the number of metabolites detected when compared to sublimation and airbrush. The automatic sprayer method also showed more reproducible results and less analyte diffusion than the airbrush method. Sublimation matrix deposition yielded high spatial resolution and reproducibility but fewer analytes in the higher m/z range (500-1000 m/z). When the samples were placed in a humidity chamber after sublimation, there was enhanced detection of higher mass metabolites but increased analyte diffusion in the lower mass range. When using CHCA, the optimized automatic sprayer method and humidified sublimation method resulted in double the number of metabolites detected compared to standard airbrush method.

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