Skip to main content
Article
Direct Analysis of Stevia Leaves for Diterpene Glycosides by Desorption Electrospray Ionization Mass Spectrometry
Analyst
  • Ayanna U. Jackson, Purdue University
  • Alessandra Tata, Universita di Roma - Italy
  • Chunping Wu, Purdue University
  • Richard H. Perry, Stanford University
  • George Haas, Kraft Foods Global Brands LLC
  • Leslie West, Kraft Foods Global Brands LLC
  • R. Graham Cooks, Purdue University
Document Type
Article
Publication Date
5-1-2009
Abstract

The analysis of Stevia leaves has been demonstrated without any sample preparation using desorption electrospray ionization (DESI) mass spectrometry. Direct rapid analysis was achieved using minimal amounts of sample (∼0.15 cm × 0.15 cm leaf fragment). Characteristic constituents of the Stevia plant are observed in both the positive and negative ion modes including a series of diterpene ‘sweet’ glycosides. The presence of the glycosides was confirmed via tandem mass spectrometry analysis using collision-induced dissociation and further supported by exact mass measurements using an LTQ-Orbitrap. The analysis of both untreated and hexane-extracted dry leaves proved that DESI can be successfully used to analyze untreated leaf fragments as identical profiles were obtained from both types of samples. Characterization and semi-quantitative determination of the glycosides was achieved based on the glycoside profile within the full mass spectrum. In addition, the presence of characteristic glycosides in an all-natural commercial Stevia dietary supplement was confirmed. This study provides an example of the application of DESI to direct screening of plant materials, in this case diterpeneglycosides.

Comments

©The Royal Society of Chemistry 2009

Additional Comments
Thermo-Fisher grant #: 1320036658
DOI
10.1039/B823511B
Citation Information
Ayanna U. Jackson, Alessandra Tata, Chunping Wu, Richard H. Perry, et al.. "Direct Analysis of Stevia Leaves for Diterpene Glycosides by Desorption Electrospray Ionization Mass Spectrometry" Analyst Vol. 134 Iss. 5 (2009) p. 867 - 874 ISSN: 0003-2654
Available at: http://works.bepress.com/richard-perry/6/