Physical fitness in community-dwelling older adults is linked to dietary intake, gut microbiota, and metabolomic signatures.
Aged
Aged, 80 and over
Aging
/ physiology
Bacteria
/ genetics
Body Composition
Cross-Sectional Studies
DNA, Bacterial
/ genetics
Eating
/ physiology
Energy Intake
/ physiology
Exercise
/ physiology
Female
Gastrointestinal Microbiome
/ genetics
Humans
Independent Living
Life Style
Male
Metabolome
Metabolomics
/ methods
Phenotype
Physical Fitness
/ physiology
aging
energy and dietary fiber intake
gut microbiota
host metabolome
physical fitness
proinsulin-C-peptide
Journal
Aging cell
ISSN: 1474-9726
Titre abrégé: Aging Cell
Pays: England
ID NLM: 101130839
Informations de publication
Date de publication:
03 2020
03 2020
Historique:
received:
16
08
2019
revised:
28
11
2019
accepted:
30
12
2019
pubmed:
23
1
2020
medline:
11
5
2021
entrez:
23
1
2020
Statut:
ppublish
Résumé
When humans age, changes in body composition arise along with lifestyle-associated disorders influencing fitness and physical decline. Here we provide a comprehensive view of dietary intake, physical activity, gut microbiota (GM), and host metabolome in relation to physical fitness of 207 community-dwelling subjects aged +65 years. Stratification on anthropometric/body composition/physical performance measurements (ABPm) variables identified two phenotypes (high/low-fitness) clearly linked to dietary intake, physical activity, GM, and host metabolome patterns. Strikingly, despite a higher energy intake high-fitness subjects were characterized by leaner bodies and lower fasting proinsulin-C-peptide/blood glucose levels in a mechanism likely driven by higher dietary fiber intake, physical activity and increased abundance of Bifidobacteriales and Clostridiales species in GM and associated metabolites (i.e., enterolactone). These factors explained 50.1% of the individual variation in physical fitness. We propose that targeting dietary strategies for modulation of GM and host metabolome interactions may allow establishing therapeutic approaches to delay and possibly revert comorbidities of aging.
Identifiants
pubmed: 31967716
doi: 10.1111/acel.13105
pmc: PMC7059135
doi:
Substances chimiques
DNA, Bacterial
0
Types de publication
Journal Article
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
e13105Informations de copyright
© 2020 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd.
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