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Metabolite patterns predicting sex and age in participants of the Karlsruhe Metabolomics and Nutrition (KarMeN) study

Physiological and functional parameters, such as body composition, or physical fitness are known to differ between men and women and to change with age. The goal of this study was to investigate how sex and age-related physiological conditions are reflected in the metabolome of healthy humans and wh...

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Autores principales: Rist, Manuela J., Roth, Alexander, Frommherz, Lara, Weinert, Christoph H., Krüger, Ralf, Merz, Benedikt, Bunzel, Diana, Mack, Carina, Egert, Björn, Bub, Achim, Görling, Benjamin, Tzvetkova, Pavleta, Luy, Burkhard, Hoffmann, Ingrid, Kulling, Sabine E., Watzl, Bernhard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5558977/
https://www.ncbi.nlm.nih.gov/pubmed/28813537
http://dx.doi.org/10.1371/journal.pone.0183228
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author Rist, Manuela J.
Roth, Alexander
Frommherz, Lara
Weinert, Christoph H.
Krüger, Ralf
Merz, Benedikt
Bunzel, Diana
Mack, Carina
Egert, Björn
Bub, Achim
Görling, Benjamin
Tzvetkova, Pavleta
Luy, Burkhard
Hoffmann, Ingrid
Kulling, Sabine E.
Watzl, Bernhard
author_facet Rist, Manuela J.
Roth, Alexander
Frommherz, Lara
Weinert, Christoph H.
Krüger, Ralf
Merz, Benedikt
Bunzel, Diana
Mack, Carina
Egert, Björn
Bub, Achim
Görling, Benjamin
Tzvetkova, Pavleta
Luy, Burkhard
Hoffmann, Ingrid
Kulling, Sabine E.
Watzl, Bernhard
author_sort Rist, Manuela J.
collection PubMed
description Physiological and functional parameters, such as body composition, or physical fitness are known to differ between men and women and to change with age. The goal of this study was to investigate how sex and age-related physiological conditions are reflected in the metabolome of healthy humans and whether sex and age can be predicted based on the plasma and urine metabolite profiles. In the cross-sectional KarMeN (Karlsruhe Metabolomics and Nutrition) study 301 healthy men and women aged 18–80 years were recruited. Participants were characterized in detail applying standard operating procedures for all measurements including anthropometric, clinical, and functional parameters. Fasting blood and 24 h urine samples were analyzed by targeted and untargeted metabolomics approaches, namely by mass spectrometry coupled to one- or comprehensive two-dimensional gas chromatography or liquid chromatography, and by nuclear magnetic resonance spectroscopy. This yielded in total more than 400 analytes in plasma and over 500 analytes in urine. Predictive modelling was applied on the metabolomics data set using different machine learning algorithms. Based on metabolite profiles from urine and plasma, it was possible to identify metabolite patterns which classify participants according to sex with > 90% accuracy. Plasma metabolites important for the correct classification included creatinine, branched-chain amino acids, and sarcosine. Prediction of age was also possible based on metabolite profiles for men and women, separately. Several metabolites important for this prediction could be identified including choline in plasma and sedoheptulose in urine. For women, classification according to their menopausal status was possible from metabolome data with > 80% accuracy. The metabolite profile of human urine and plasma allows the prediction of sex and age with high accuracy, which means that sex and age are associated with a discriminatory metabolite signature in healthy humans and therefore should always be considered in metabolomics studies.
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spelling pubmed-55589772017-08-25 Metabolite patterns predicting sex and age in participants of the Karlsruhe Metabolomics and Nutrition (KarMeN) study Rist, Manuela J. Roth, Alexander Frommherz, Lara Weinert, Christoph H. Krüger, Ralf Merz, Benedikt Bunzel, Diana Mack, Carina Egert, Björn Bub, Achim Görling, Benjamin Tzvetkova, Pavleta Luy, Burkhard Hoffmann, Ingrid Kulling, Sabine E. Watzl, Bernhard PLoS One Research Article Physiological and functional parameters, such as body composition, or physical fitness are known to differ between men and women and to change with age. The goal of this study was to investigate how sex and age-related physiological conditions are reflected in the metabolome of healthy humans and whether sex and age can be predicted based on the plasma and urine metabolite profiles. In the cross-sectional KarMeN (Karlsruhe Metabolomics and Nutrition) study 301 healthy men and women aged 18–80 years were recruited. Participants were characterized in detail applying standard operating procedures for all measurements including anthropometric, clinical, and functional parameters. Fasting blood and 24 h urine samples were analyzed by targeted and untargeted metabolomics approaches, namely by mass spectrometry coupled to one- or comprehensive two-dimensional gas chromatography or liquid chromatography, and by nuclear magnetic resonance spectroscopy. This yielded in total more than 400 analytes in plasma and over 500 analytes in urine. Predictive modelling was applied on the metabolomics data set using different machine learning algorithms. Based on metabolite profiles from urine and plasma, it was possible to identify metabolite patterns which classify participants according to sex with > 90% accuracy. Plasma metabolites important for the correct classification included creatinine, branched-chain amino acids, and sarcosine. Prediction of age was also possible based on metabolite profiles for men and women, separately. Several metabolites important for this prediction could be identified including choline in plasma and sedoheptulose in urine. For women, classification according to their menopausal status was possible from metabolome data with > 80% accuracy. The metabolite profile of human urine and plasma allows the prediction of sex and age with high accuracy, which means that sex and age are associated with a discriminatory metabolite signature in healthy humans and therefore should always be considered in metabolomics studies. Public Library of Science 2017-08-16 /pmc/articles/PMC5558977/ /pubmed/28813537 http://dx.doi.org/10.1371/journal.pone.0183228 Text en © 2017 Rist et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Rist, Manuela J.
Roth, Alexander
Frommherz, Lara
Weinert, Christoph H.
Krüger, Ralf
Merz, Benedikt
Bunzel, Diana
Mack, Carina
Egert, Björn
Bub, Achim
Görling, Benjamin
Tzvetkova, Pavleta
Luy, Burkhard
Hoffmann, Ingrid
Kulling, Sabine E.
Watzl, Bernhard
Metabolite patterns predicting sex and age in participants of the Karlsruhe Metabolomics and Nutrition (KarMeN) study
title Metabolite patterns predicting sex and age in participants of the Karlsruhe Metabolomics and Nutrition (KarMeN) study
title_full Metabolite patterns predicting sex and age in participants of the Karlsruhe Metabolomics and Nutrition (KarMeN) study
title_fullStr Metabolite patterns predicting sex and age in participants of the Karlsruhe Metabolomics and Nutrition (KarMeN) study
title_full_unstemmed Metabolite patterns predicting sex and age in participants of the Karlsruhe Metabolomics and Nutrition (KarMeN) study
title_short Metabolite patterns predicting sex and age in participants of the Karlsruhe Metabolomics and Nutrition (KarMeN) study
title_sort metabolite patterns predicting sex and age in participants of the karlsruhe metabolomics and nutrition (karmen) study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5558977/
https://www.ncbi.nlm.nih.gov/pubmed/28813537
http://dx.doi.org/10.1371/journal.pone.0183228
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