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  4. Identification and Quantification of Any Isoforms of Carbohydrates by 2D UV-MS Fingerprinting of Cold Ions
 
research article

Identification and Quantification of Any Isoforms of Carbohydrates by 2D UV-MS Fingerprinting of Cold Ions

Saparbaev, Erik
•
Kopysov, Vladimir  
•
Aladinskaia, Viktoriia  
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November 3, 2020
Analytical Chemistry

Biological functionality of isomeric carbohydrates may differ drastically, making their identifications indispensable in many applications of life science. Because of the large number of isoforms, structural assignment of saccharides is challenging and often requires a use of different orthogonal analytical techniques. We demonstrate that isomeric carbohydrates of any isoforms can be distinguished and quantified using solely the library-based method of 2D ultraviolet fragmentation spectroscopy-mass spectrometry (2D UV-MS) of cold ions. The two-dimensional "fingerprint" identities of UV transparent saccharides were revealed by photofragmentation of their noncovalent complexes with aromatic molecules. We assess the accuracy of the method by comparing the known relative concentrations of isomeric carbohydrates mixed in solution with the concentrations that were mathematically determined from the measured in the gas-phase fingerprints of the complexes. For the tested sets with up to five isomers of di- to heptasaccharides, the root-mean-square deviation of 3-5% was typically achieved. This indicates the expected level of accuracy in analysis of unknown mixtures for isomeric carbohydrates of similar complexity.

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Type
research article
DOI
10.1021/acs.analchem.0c03122
Web of Science ID

WOS:000589246100045

Author(s)
Saparbaev, Erik
Kopysov, Vladimir  
Aladinskaia, Viktoriia  
Ferrieres, Vincent
Legentil, Laurent
Boyarkin, Oleg, V  
Date Issued

2020-11-03

Published in
Analytical Chemistry
Volume

92

Issue

21

Start page

14624

End page

14632

Subjects

Chemistry, Analytical

•

Chemistry

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCPM  
Available on Infoscience
December 29, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/174333
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