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The Gut-Muscle Axis in Older Subjects with Low Muscle Mass and Performance: A Proof of Concept Study Exploring Fecal Microbiota Composition and Function with Shotgun Metagenomics Sequencing

The gut microbiota could influence the pathophysiology of age-related sarcopenia through multiple mechanisms implying modulation of chronic inflammation and anabolic resistance. The aim of this study was to compare the fecal microbiota composition and functionality, assessed by shotgun metagenomics...

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Autores principales: Ticinesi, Andrea, Mancabelli, Leonardo, Tagliaferri, Sara, Nouvenne, Antonio, Milani, Christian, Del Rio, Daniele, Lauretani, Fulvio, Maggio, Marcello Giuseppe, Ventura, Marco, Meschi, Tiziana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7728056/
https://www.ncbi.nlm.nih.gov/pubmed/33255677
http://dx.doi.org/10.3390/ijms21238946
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author Ticinesi, Andrea
Mancabelli, Leonardo
Tagliaferri, Sara
Nouvenne, Antonio
Milani, Christian
Del Rio, Daniele
Lauretani, Fulvio
Maggio, Marcello Giuseppe
Ventura, Marco
Meschi, Tiziana
author_facet Ticinesi, Andrea
Mancabelli, Leonardo
Tagliaferri, Sara
Nouvenne, Antonio
Milani, Christian
Del Rio, Daniele
Lauretani, Fulvio
Maggio, Marcello Giuseppe
Ventura, Marco
Meschi, Tiziana
author_sort Ticinesi, Andrea
collection PubMed
description The gut microbiota could influence the pathophysiology of age-related sarcopenia through multiple mechanisms implying modulation of chronic inflammation and anabolic resistance. The aim of this study was to compare the fecal microbiota composition and functionality, assessed by shotgun metagenomics sequencing, between two groups of elderly outpatients, differing only for the presence of primary sarcopenia. Five sarcopenic elderly subjects and twelve non-sarcopenic controls, classified according to lower limb function and bioimpedance-derived skeletal muscle index, provided a stool sample, which was analyzed with shotgun metagenomics approaches, to determine the overall microbiota composition, the representation of bacteria at the species level, and the prediction of bacterial genes involved in functional metabolic pathways. Sarcopenic subjects displayed different fecal microbiota compositions at the species level, with significant depletion of two species known for their metabolic capacity of producing short-chain fatty acids (SCFAs), Faecalibacterium prausnitzii and Roseburia inulinivorans, and of Alistipes shahii. Additionally, their fecal metagenome had different representation of genes belonging to 108 metabolic pathways, namely, depletion of genes involved in SCFA synthesis, carotenoid and isoflavone biotransformation, and amino acid interconversion. These results support the hypothesis of an association between microbiota and sarcopenia, indicating novel possible mediators, whose clinical relevance should be investigated in future studies.
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spelling pubmed-77280562020-12-11 The Gut-Muscle Axis in Older Subjects with Low Muscle Mass and Performance: A Proof of Concept Study Exploring Fecal Microbiota Composition and Function with Shotgun Metagenomics Sequencing Ticinesi, Andrea Mancabelli, Leonardo Tagliaferri, Sara Nouvenne, Antonio Milani, Christian Del Rio, Daniele Lauretani, Fulvio Maggio, Marcello Giuseppe Ventura, Marco Meschi, Tiziana Int J Mol Sci Article The gut microbiota could influence the pathophysiology of age-related sarcopenia through multiple mechanisms implying modulation of chronic inflammation and anabolic resistance. The aim of this study was to compare the fecal microbiota composition and functionality, assessed by shotgun metagenomics sequencing, between two groups of elderly outpatients, differing only for the presence of primary sarcopenia. Five sarcopenic elderly subjects and twelve non-sarcopenic controls, classified according to lower limb function and bioimpedance-derived skeletal muscle index, provided a stool sample, which was analyzed with shotgun metagenomics approaches, to determine the overall microbiota composition, the representation of bacteria at the species level, and the prediction of bacterial genes involved in functional metabolic pathways. Sarcopenic subjects displayed different fecal microbiota compositions at the species level, with significant depletion of two species known for their metabolic capacity of producing short-chain fatty acids (SCFAs), Faecalibacterium prausnitzii and Roseburia inulinivorans, and of Alistipes shahii. Additionally, their fecal metagenome had different representation of genes belonging to 108 metabolic pathways, namely, depletion of genes involved in SCFA synthesis, carotenoid and isoflavone biotransformation, and amino acid interconversion. These results support the hypothesis of an association between microbiota and sarcopenia, indicating novel possible mediators, whose clinical relevance should be investigated in future studies. MDPI 2020-11-25 /pmc/articles/PMC7728056/ /pubmed/33255677 http://dx.doi.org/10.3390/ijms21238946 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ticinesi, Andrea
Mancabelli, Leonardo
Tagliaferri, Sara
Nouvenne, Antonio
Milani, Christian
Del Rio, Daniele
Lauretani, Fulvio
Maggio, Marcello Giuseppe
Ventura, Marco
Meschi, Tiziana
The Gut-Muscle Axis in Older Subjects with Low Muscle Mass and Performance: A Proof of Concept Study Exploring Fecal Microbiota Composition and Function with Shotgun Metagenomics Sequencing
title The Gut-Muscle Axis in Older Subjects with Low Muscle Mass and Performance: A Proof of Concept Study Exploring Fecal Microbiota Composition and Function with Shotgun Metagenomics Sequencing
title_full The Gut-Muscle Axis in Older Subjects with Low Muscle Mass and Performance: A Proof of Concept Study Exploring Fecal Microbiota Composition and Function with Shotgun Metagenomics Sequencing
title_fullStr The Gut-Muscle Axis in Older Subjects with Low Muscle Mass and Performance: A Proof of Concept Study Exploring Fecal Microbiota Composition and Function with Shotgun Metagenomics Sequencing
title_full_unstemmed The Gut-Muscle Axis in Older Subjects with Low Muscle Mass and Performance: A Proof of Concept Study Exploring Fecal Microbiota Composition and Function with Shotgun Metagenomics Sequencing
title_short The Gut-Muscle Axis in Older Subjects with Low Muscle Mass and Performance: A Proof of Concept Study Exploring Fecal Microbiota Composition and Function with Shotgun Metagenomics Sequencing
title_sort gut-muscle axis in older subjects with low muscle mass and performance: a proof of concept study exploring fecal microbiota composition and function with shotgun metagenomics sequencing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7728056/
https://www.ncbi.nlm.nih.gov/pubmed/33255677
http://dx.doi.org/10.3390/ijms21238946
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