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Pathway-based metabolomics study of sarcopenia-related traits in two US cohorts

We aimed to validate two metabolites, aspartic acid and glutamic acid, which were associated with sarcopenia-related traits, muscle mass and strength, in our previous untargeted metabolomics study and to identify novel metabolites from five metabolic pathways involving these two metabolites. We incl...

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Autores principales: Zhao, Qi, Shen, Hui, Liu, Jiawang, Chiu, Chi-Yang, Su, Kuan-Jui, Tian, Qing, Kakhniashvili, David, Qiu, Chuan, Zhao, Lan-Juan, Luo, Zhe, Deng, Hong-Wen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8954970/
https://www.ncbi.nlm.nih.gov/pubmed/35235538
http://dx.doi.org/10.18632/aging.203926
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author Zhao, Qi
Shen, Hui
Liu, Jiawang
Chiu, Chi-Yang
Su, Kuan-Jui
Tian, Qing
Kakhniashvili, David
Qiu, Chuan
Zhao, Lan-Juan
Luo, Zhe
Deng, Hong-Wen
author_facet Zhao, Qi
Shen, Hui
Liu, Jiawang
Chiu, Chi-Yang
Su, Kuan-Jui
Tian, Qing
Kakhniashvili, David
Qiu, Chuan
Zhao, Lan-Juan
Luo, Zhe
Deng, Hong-Wen
author_sort Zhao, Qi
collection PubMed
description We aimed to validate two metabolites, aspartic acid and glutamic acid, which were associated with sarcopenia-related traits, muscle mass and strength, in our previous untargeted metabolomics study and to identify novel metabolites from five metabolic pathways involving these two metabolites. We included a discovery cohort of 136 white women aged 20-40 years (used for the previous untargeted metabolomics analysis) and a validation cohort of 174 subjects aged ≥ 60 years, including men and women of white and black. A targeted LC-MS assay successfully detected 12 important metabolites from these pathways. Aspartic acid was associated with muscle mass and strength in the discovery cohort, but not in the validation cohort. However, glutamic acid was associated with these sarcopenia traits in both cohorts. Additionally, N-acetyl-L-aspartic acid and carnosine were the newly identified metabolites that were associated with muscle strength in the discovery and validation cohorts, respectively. We did not observe any significant sex and race differences in the associations of these metabolites with sarcopenia traits in the validation cohort. Our findings indicated that glutamic acid might be consistently associated with sarcopenia-related traits across age, sex, and race. They also suggested that age-specific metabolites and metabolic pathways might be involved in muscle regulation.
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spelling pubmed-89549702022-03-28 Pathway-based metabolomics study of sarcopenia-related traits in two US cohorts Zhao, Qi Shen, Hui Liu, Jiawang Chiu, Chi-Yang Su, Kuan-Jui Tian, Qing Kakhniashvili, David Qiu, Chuan Zhao, Lan-Juan Luo, Zhe Deng, Hong-Wen Aging (Albany NY) Research Paper We aimed to validate two metabolites, aspartic acid and glutamic acid, which were associated with sarcopenia-related traits, muscle mass and strength, in our previous untargeted metabolomics study and to identify novel metabolites from five metabolic pathways involving these two metabolites. We included a discovery cohort of 136 white women aged 20-40 years (used for the previous untargeted metabolomics analysis) and a validation cohort of 174 subjects aged ≥ 60 years, including men and women of white and black. A targeted LC-MS assay successfully detected 12 important metabolites from these pathways. Aspartic acid was associated with muscle mass and strength in the discovery cohort, but not in the validation cohort. However, glutamic acid was associated with these sarcopenia traits in both cohorts. Additionally, N-acetyl-L-aspartic acid and carnosine were the newly identified metabolites that were associated with muscle strength in the discovery and validation cohorts, respectively. We did not observe any significant sex and race differences in the associations of these metabolites with sarcopenia traits in the validation cohort. Our findings indicated that glutamic acid might be consistently associated with sarcopenia-related traits across age, sex, and race. They also suggested that age-specific metabolites and metabolic pathways might be involved in muscle regulation. Impact Journals 2022-03-02 /pmc/articles/PMC8954970/ /pubmed/35235538 http://dx.doi.org/10.18632/aging.203926 Text en Copyright: © 2022 Zhao et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zhao, Qi
Shen, Hui
Liu, Jiawang
Chiu, Chi-Yang
Su, Kuan-Jui
Tian, Qing
Kakhniashvili, David
Qiu, Chuan
Zhao, Lan-Juan
Luo, Zhe
Deng, Hong-Wen
Pathway-based metabolomics study of sarcopenia-related traits in two US cohorts
title Pathway-based metabolomics study of sarcopenia-related traits in two US cohorts
title_full Pathway-based metabolomics study of sarcopenia-related traits in two US cohorts
title_fullStr Pathway-based metabolomics study of sarcopenia-related traits in two US cohorts
title_full_unstemmed Pathway-based metabolomics study of sarcopenia-related traits in two US cohorts
title_short Pathway-based metabolomics study of sarcopenia-related traits in two US cohorts
title_sort pathway-based metabolomics study of sarcopenia-related traits in two us cohorts
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8954970/
https://www.ncbi.nlm.nih.gov/pubmed/35235538
http://dx.doi.org/10.18632/aging.203926
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