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Afficher la notice complèteNMR metabolite quantification of a synthetic urine sample: an inter-laboratory comparison of processing workflows
DEBORDE, Catherine
Plateforme Bordeaux Metabolome
MetaboHUB-Bordeaux
Biologie du fruit et pathologie [BFP]
Plateforme Bordeaux Metabolome
MetaboHUB-Bordeaux
Biologie du fruit et pathologie [BFP]
CAHOREAU, Edern
Toulouse Biotechnology Institute [TBI]
MetaboHUB-MetaToul
MetaToul FluxoMet [TBI-MetaToul]
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Toulouse Biotechnology Institute [TBI]
MetaboHUB-MetaToul
MetaToul FluxoMet [TBI-MetaToul]
DEBORDE, Catherine
Plateforme Bordeaux Metabolome
MetaboHUB-Bordeaux
Biologie du fruit et pathologie [BFP]
Plateforme Bordeaux Metabolome
MetaboHUB-Bordeaux
Biologie du fruit et pathologie [BFP]
CAHOREAU, Edern
Toulouse Biotechnology Institute [TBI]
MetaboHUB-MetaToul
MetaToul FluxoMet [TBI-MetaToul]
Toulouse Biotechnology Institute [TBI]
MetaboHUB-MetaToul
MetaToul FluxoMet [TBI-MetaToul]
DA COSTA, Grégory
Unité de Recherche Œnologie [Villenave d'Ornon] [OENO]
MetaboHUB-Bordeaux
Plateforme Bordeaux Metabolome
Unité de Recherche Œnologie [Villenave d'Ornon] [OENO]
MetaboHUB-Bordeaux
Plateforme Bordeaux Metabolome
JACOB, Daniel
Plateforme Bordeaux Metabolome
MetaboHUB-Bordeaux
Biologie du fruit et pathologie [BFP]
Plateforme Bordeaux Metabolome
MetaboHUB-Bordeaux
Biologie du fruit et pathologie [BFP]
JOUSSE, Cyril
Institut de Chimie de Clermont-Ferrand [ICCF]
MetaboHUB-Clermont
Plateforme Exploration du Métabolisme [PFEM]
Institut de Chimie de Clermont-Ferrand [ICCF]
MetaboHUB-Clermont
Plateforme Exploration du Métabolisme [PFEM]
LE MAO, Inès
Unité de Recherche Œnologie [Villenave d'Ornon] [OENO]
MetaboHUB-Bordeaux
Plateforme Bordeaux Metabolome
Unité de Recherche Œnologie [Villenave d'Ornon] [OENO]
MetaboHUB-Bordeaux
Plateforme Bordeaux Metabolome
PEYRIGA, Lindsay
Toulouse Biotechnology Institute [TBI]
MetaboHUB-MetaToul
MetaToul FluxoMet [TBI-MetaToul]
Toulouse Biotechnology Institute [TBI]
MetaboHUB-MetaToul
MetaToul FluxoMet [TBI-MetaToul]
RICHARD, Tristan
Unité de Recherche Œnologie [Villenave d'Ornon] [OENO]
MetaboHUB-Bordeaux
Plateforme Bordeaux Metabolome
Unité de Recherche Œnologie [Villenave d'Ornon] [OENO]
MetaboHUB-Bordeaux
Plateforme Bordeaux Metabolome
SILVESTRE, Virginie
Magnetic resonance, Isotopomics, Metabolomics, Monitoring [MIMM]
Chimie Et Interdisciplinarité : Synthèse, Analyse, Modélisation [CEISAM]
MetaboHUB-Grand-Ouest
Magnetic resonance, Isotopomics, Metabolomics, Monitoring [MIMM]
Chimie Et Interdisciplinarité : Synthèse, Analyse, Modélisation [CEISAM]
MetaboHUB-Grand-Ouest
TRAÏKIA, Mounir
Institut de Chimie de Clermont-Ferrand [ICCF]
MetaboHUB-Clermont
Plateforme Exploration du Métabolisme [PFEM]
Institut de Chimie de Clermont-Ferrand [ICCF]
MetaboHUB-Clermont
Plateforme Exploration du Métabolisme [PFEM]
MOING, Annick
Biologie du fruit et pathologie [BFP]
Plateforme Bordeaux Metabolome
MetaboHUB-Bordeaux
Biologie du fruit et pathologie [BFP]
Plateforme Bordeaux Metabolome
MetaboHUB-Bordeaux
GIRAUDEAU, Patrick
Magnetic resonance, Isotopomics, Metabolomics, Monitoring [MIMM]
Chimie Et Interdisciplinarité : Synthèse, Analyse, Modélisation [CEISAM]
MetaboHUB-Grand-Ouest
< Réduire
Magnetic resonance, Isotopomics, Metabolomics, Monitoring [MIMM]
Chimie Et Interdisciplinarité : Synthèse, Analyse, Modélisation [CEISAM]
MetaboHUB-Grand-Ouest
Langue
en
Article de revue
Ce document a été publié dans
Metabolomics. 2023-07-07, vol. 19, n° 7, p. 65
Springer Verlag
Résumé en anglais
Introduction Absolute quantification of individual metabolites in complex biological samples is crucial in targeted metabolomic profiling. Objectives An inter-laboratory test was performed to evaluate the impact of the NMR ...Lire la suite >
Introduction Absolute quantification of individual metabolites in complex biological samples is crucial in targeted metabolomic profiling. Objectives An inter-laboratory test was performed to evaluate the impact of the NMR software, peak-area determination method (integration vs. deconvolution) and operator on quantification trueness and precision. Methods A synthetic urine containing 32 compounds was prepared. One site prepared the urine and calibration samples, and performed NMR acquisition. NMR spectra were acquired with two pulse sequences including water suppression used in routine analyses. The pre-processed spectra were sent to the other sites where each operator quantified the metabolites using internal referencing or external calibration, and his/her favourite in-house, open-access or commercial NMR tool. Results For 1D NMR measurements with solvent presaturation during the recovery delay (zgpr), 20 metabolites were successfully quantified by all processing strategies. Some metabolites could not be quantified by some methods. For internal referencing with TSP, only one half of the metabolites were quantified with a trueness below 5%. With peak integration and external calibration, about 90% of the metabolites were quantified with a trueness below 5%. The NMRProcFlow integration module allowed the quantification of several additional metabolites. The number of quantified metabolites and quantification trueness improved for some metabolites with deconvolution tools. Trueness and precision were not significantly different between zgpr- and NOESYpr-based spectra for about 70% of the variables. Conclusion External calibration performed better than TSP internal referencing. Inter-laboratory tests are useful when choosing to better rationalize the choice of quantification tools for NMR-based metabolomic profiling and confirm the value of spectra deconvolution tools.< Réduire
Mots clés en anglais
Deconvolution
Quantitative NMR
Synthetic urine
Metabolomic profiling
Peak integration
Projet Européen
summit
Project ANR
Développement d'une infrastructure française distribuée pour la métabolomique dédiée à l'innovation - ANR-11-INBS-0010
Origine
Importé de halUnités de recherche