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Proton NMR Enables the Absolute Quantification of Aqueous Metabolites and Lipid Classes in Unique Mouse Liver Samples.

Authors :
Amiel, Aurélien
Tremblay-Franco, Marie
Gautier, Roselyne
Ducheix, Simon
Montagner, Alexandra
Polizzi, Arnaud
Debrauwer, Laurent
Guillou, Hervé
Bertrand-Michel, Justine
Canlet, Cécile
Source :
Metabolites (2218-1989); Jan2020, Vol. 10 Issue 1, p9, 1p
Publication Year :
2020

Abstract

Hepatic metabolites provide valuable information on the physiological state of an organism, and thus, they are monitored in many clinical situations. Typically, monitoring requires several analyses for each class of targeted metabolite, which is time consuming. The present study aimed to evaluate a proton nuclear magnetic resonance (<superscript>1</superscript>H-NMR) method for obtaining quantitative measurements of aqueous and lipidic metabolites. We optimized the extraction protocol, the standard samples, and the organic solvents for the absolute quantification of lipid species. To validate the method, we analyzed metabolic profiles in livers of mice fed three different diets. We compared our results with values obtained with conventional methods and found strong correlations. The <superscript>1</superscript>H-NMR protocol enabled the absolute quantification of 29 aqueous metabolites and eight lipid classes. Results showed that mice fed a diet enriched in saturated fatty acids had higher levels of triglycerides, cholesterol ester, monounsaturated fatty acids, lactate, 3-hydroxy-butyrate, and alanine and lower levels of glucose, compared to mice fed a control diet. In conclusion, proton NMR provided a rapid overview of the main lipid classes (triglycerides, cholesterol, phospholipids, fatty acids) and the most abundant aqueous metabolites in liver. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
22181989
Volume :
10
Issue :
1
Database :
Complementary Index
Journal :
Metabolites (2218-1989)
Publication Type :
Academic Journal
Accession number :
141334130
Full Text :
https://doi.org/10.3390/metabo10010009