4.4 Article

Analysis of dammar resin with MALDI-FT-ICR-MS and APCI-FT-ICR-MS

Journal

JOURNAL OF MASS SPECTROMETRY
Volume 47, Issue 3, Pages 392-409

Publisher

WILEY
DOI: 10.1002/jms.2971

Keywords

MALDI; APCI; FT-ICR-MS; dammar resin; mass resolution; mass accuracy

Funding

  1. Estonian National R & D infrastructure development program of Measure 2.3 'Promotion of development activities and innovation' [34]
  2. Enterprise Estonia foundation
  3. Estonian Science Foundation [8689]
  4. Estonian Ministry of Education and Science [SF0180061s08]

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Comprehensive analysis of high-resolution mass spectra of aged natural dammar resin obtained with Fourier transform ion cyclotron resonance mass spectrometer (FT-ICR-MS) using matrix-assisted laser desorption/ionization (MALDI) and atmospheric pressure chemical ionization (APCI) is presented. Dammar resin is one of the most important components of painting varnishes. Dammar resin is a terpenoid resin (dominated by triterpenoids) with intrinsically very complex composition. This complexity further increases with aging. Ten different solvents and two- component solvent mixtures were tested for sample preparation. The most suitable solvent mixtures for the MALDI- FT- ICR- MS analysis were dichloromethane- acetone and dichloromethane- ethanol. The obtained MALDI- FTMS mass spectrum contains nine clusters of peaks in the m/ z range of 420- 2200, and the obtained APCI- FTMS mass spectrum contains three clusters of peaks in the m/z range of 380- 910. The peaks in the clusters correspond to the oxygenated derivatives of terpenoids differing by the number of C15H24 units. The clusters, in turn, are composed of subclusters differing by the number of oxygen atoms in the molecules. Thorough analysis and identification of the components (or groups of components) by their accurate m/z ratios was carried out, and molecular formulas (elemental compositions) of all major peaks in the MALDI-FTMS and APCI-FTMS spectra were identified (and groups of possible isomeric compounds were proposed). In the MALDI-FTMS and APCI-FTMS mass spectrum, besides the oxidized C-30, triterpenoids also peaks corresponding to C-29 and C-31 derivatives of triterpenoids (demethylated and methylated, correspondingly) were detected. MALDI and APCI are complementary ionization sources for the analysis of natural dammar resin. In the MALDI source, preferably polar (extensively oxidized) components of the resin are ionized (mostly as Na+ adducts), whereas in the APCI source, preferably nonpolar (hydrocarbon and slightly oxidized) compounds are ionized (by protonation). Either of the two ionization methods, when used alone, gives an incomplete picture of the dammar resin composition. Copyright (C) 2012 John Wiley & Sons, Ltd.

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