Issue 10, 2012

Stable-isotope dilution GC-MS method for ethanol in vapour ethanol and microdialysis systems based on carbonate-catalyzed extractive pentafluorobenzoylation

Abstract

Common ethanol detection methods are not applicable to cell culture media and microdialysates due to interference with medium constituents including amino acids and pH indicators. We present a novel GC-MS method for the accurate and precise analysis of ethanol in cell cultures and microdialysates. The method is based on the carbonate-catalyzed extractive pentafluorobenzoylation of ethanol and deuterium-labelled ethanol serving as the internal standard and on their GC-MS analysis in the electron-capture negative-ion chemical ionization mode. The method was used to optimize experimental conditions in a custom-made ethanol vapour system utilized for studies examining ethanol influences on neuronal cell lines and in microdialysis.

Graphical abstract: Stable-isotope dilution GC-MS method for ethanol in vapour ethanol and microdialysis systems based on carbonate-catalyzed extractive pentafluorobenzoylation

Supplementary files

Article information

Article type
Paper
Submitted
21 Nov 2011
Accepted
29 Feb 2012
First published
27 Mar 2012

Analyst, 2012,137, 2480-2485

Stable-isotope dilution GC-MS method for ethanol in vapour ethanol and microdialysis systems based on carbonate-catalyzed extractive pentafluorobenzoylation

M. Haschemi Nassab, A. Mitschke, M. Suchy, F. Gutzki, A. A. Zoerner, M. Rhein, T. Hillemacher, H. Frieling, J. Jordan and D. Tsikas, Analyst, 2012, 137, 2480 DOI: 10.1039/C2AN16135D

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