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Mediterranean diet, gut microbiota, and cognitive decline in older adults with obesity/overweight and metabolic syndrome: a prospective cohort study
Mediterranean diet, gut microbiota, and cognitive decline in older adults with obesity/overweight and metabolic syndrome: a prospective cohort study
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Mediterranean diet, gut microbiota, and cognitive decline in older adults with obesity/overweight and metabolic syndrome: a prospective cohort study
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Mediterranean diet, gut microbiota, and cognitive decline in older adults with obesity/overweight and metabolic syndrome: a prospective cohort study
Mediterranean diet, gut microbiota, and cognitive decline in older adults with obesity/overweight and metabolic syndrome: a prospective cohort study

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Mediterranean diet, gut microbiota, and cognitive decline in older adults with obesity/overweight and metabolic syndrome: a prospective cohort study
Mediterranean diet, gut microbiota, and cognitive decline in older adults with obesity/overweight and metabolic syndrome: a prospective cohort study
Journal Article

Mediterranean diet, gut microbiota, and cognitive decline in older adults with obesity/overweight and metabolic syndrome: a prospective cohort study

2025
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Overview
Background Emerging evidence highlights that diet dynamically shapes the gut microbiome, which in turn influences cognitive function through bidirectional gut-brain communication, offering a promising target for mitigating cognitive decline and neurodegenerative disorders. While the Mediterranean diet (MedDiet) is a well-established dietary pattern with demonstrated neuroprotective benefits, the interplay between MedDiet adherence, gut microbiota, and longitudinal cognitive trajectories remains poorly understood. We aimed to identify a gut microbial signature of the MedDiet adherence and prospectively examine the associations of MedDiet adherence and MedDiet gut microbial signature (MedDiet-GMS) with cognitive changes over time in older adults at high risk of cognitive decline. Methods This study included 746 participants (mean age 65 ± 5 years, 48% women) with overweight/obesity and metabolic syndrome. Adherence to the MedDiet was assessed using a validated 14-item Mediterranean Diet Adherence Screener (MEDAS). Baseline gut microbiota composition was profiled via 16S rRNA sequencing. Cognitive function was evaluated at baseline, 2, 4, and 6 years using a comprehensive neuropsychological battery. Elastic net regressions were applied to derive a MedDiet-GMS, and linear mixed models were used to assess associations of both MEDAS and MedDiet-GMS with trajectories of cognitive function, adjusting for potential confounders. Results Higher adherence to the MedDiet was associated with greater gut microbial diversity ( p  < 0.05) and distinct microbial composition (PERMANOVA, p  = 0.001). The MedDiet-GMS comprised 20 taxa, including short-chain fatty acid-producers (e.g., Barnesiella , Butyricicoccus ) positively weighted and pro-inflammatory taxa (e.g., Eggerthella ) negatively weighted. Both higher MEDAS scores ( p  = 0.007) and MedDiet-GMS ( p  = 0.036) were independently associated with slower global cognitive decline. The MedDiet-GMS was additionally linked to preserved executive function ( p  = 0.049), while MEDAS was associated with attenuated general cognitive decline ( p  = 0.028). Eggerthella , inversely associated with MedDiet adherence, was linked to greater executive function decline (FDR < 0.05). Conclusions Greater adherence to the MedDiet was associated with a favorable gut microbiota profile and slower cognitive decline over 6-year of follow-up. A microbiome-derived signature of MedDiet adherence was prospectively associated with favorable cognitive trajectories in older adults at risk of cognitive decline. External validation and experimental research are warranted to translate these findings into targeted microbiome-based dietary interventions for healthy cognitive aging.
Publisher
BioMed Central,BioMed Central Ltd,BMC
Subject

Aged

/ Aged patients

/ Analysis

/ Biomedicine

/ Brain-Gut Axis - physiology

/ Cognition disorders

/ Cognitive decline

/ Cognitive Dysfunction - diagnosis

/ Cognitive Dysfunction - microbiology

/ Cognitive Dysfunction - physiopathology

/ Cognitive Dysfunction - prevention & control

/ Cognitive function

/ Complications and side effects

/ Diet therapy

/ Diet, Mediterranean - statistics & numerical data

/ DNA, Bacterial - isolation & purification

/ Executive Function - physiology

/ Feces - microbiology

/ Female

/ Follow-Up Studies

/ Gastrointestinal Microbiome - physiology

/ Gastrointestinal system

/ Gut microbiota

/ Gut microbiota: New treatments of human disease

/ Health aspects

/ Humans

/ Male

/ Medical research

/ Medicine

/ Medicine & Public Health

/ Medicine, Experimental

/ Mediterranean diet (MedDiet)

/ Metabolic Syndrome - complications

/ Metabolic Syndrome - diet therapy

/ Metabolic Syndrome - microbiology

/ Metabolic Syndrome - psychology

/ Metabolic syndrome X

/ Microbiota (Symbiotic organisms)

/ Microbiota-gut-brain axis

/ Middle Aged

/ Nervous system diseases

/ Neuropsychological Tests

/ Obesity

/ Obesity - complications

/ Obesity - diet therapy

/ Obesity - microbiology

/ Obesity - psychology

/ Overweight - complications

/ Overweight - diet therapy

/ Overweight - microbiology

/ Overweight - psychology

/ Patient Compliance - statistics & numerical data

/ Physiological aspects

/ Prevention

/ Prospective Studies

/ Risk factors

/ RNA

/ RNA, Ribosomal, 16S - genetics

/ Surveys and Questionnaires - statistics & numerical data

/ Type 2 diabetes