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research article

New Approach for the Identification of Isobaric and Isomeric Metabolites

Ben Faleh, Ahmed  
•
Warnke, Stephan  
•
Van Wieringen, Teun
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April 29, 2023
Analytical Chemistry

The structural elucidation of metabolite molecules is important in many branches of the life sciences. However, the isomeric and isobaric complexity of metabolites makes their identification extremely challenging, and analytical standards are often required to confirm the presence of a particular compound in a sample. We present here an approach to overcome these challenges using high-resolution ion mobility spectrometry in combination with cryogenic vibrational spectroscopy for the rapid separation and identification of metabolite isomers and isobars. Ion mobility can separate isomeric metabolites in tens of milliseconds, and cryogenic IR spectroscopy provides highly structured IR fingerprints for unambiguous molecular identification. Moreover, our approach allows one to identify metabolite isomers automatically by comparing their IR fingerprints with those previously recorded in a database, obviating the need for a recurrent introduction of analytical standards. We demonstrate the principle of this approach by constructing a database composed of IR fingerprints of eight isomeric/isobaric metabolites and use it for the identification of these isomers present in mixtures. Moreover, we show how our fast IR fingerprinting technology allows to probe the IR fingerprints of molecules within just a few seconds as they elute from an LC column. This approach has the potential to greatly improve metabolomics workflows in terms of accuracy, speed, and cost.

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Type
research article
DOI
10.1021/acs.analchem.2c04962
Web of Science ID

WOS:000984927800001

Author(s)
Ben Faleh, Ahmed  
•
Warnke, Stephan  
•
Van Wieringen, Teun
•
Abikhodr, Ali H.  
•
Rizzo, Thomas R.  
Date Issued

2023-04-29

Published in
Analytical Chemistry
Volume

95

Issue

18

Start page

7118

End page

7126

Subjects

Chemistry, Analytical

•

Chemistry

•

mass-spectrometry

•

traveling-waves

•

metabolomics

•

metabonomics

•

spectroscopy

•

kaempferol

•

apoptosis

•

peptides

•

extract

•

acids

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCPM  
Available on Infoscience
June 5, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/197908
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