Plant-based Diet in Older People: What Consequences for Muscle Health?
Plant-based Diet in Older People: What Consequences for Muscle Health?
This randomized, controlled, two-arm clinical study aims to determine how increasing the proportion of plant-based foods in the diet affects skeletal muscle strength, mass and function, protein metabolism, microbiota and key metabolic markers in healthy older men and women. We hypothesize that diets enriched with animal-based foods will maintain maximal quadriceps strength-the primary outcome of the study-more effectively after the 3-month nutritional intervention than plant-based diets. Proteomic analyses will be performed to identify molecular mechanisms and potential muscle biomarkers reflecting metabolic adaptations of skeletal muscle to plant-enriched diets. In addition, metabolic health markers and micronutrient status will be evaluated to better understand the overall health effects of dietary plant-based transition in older adults.
This exploratory, open-label, randomized, controlled, two-arm clinical study aims to evaluate how increasing the proportion of plant-based foods in the diet affects skeletal muscle health in older adults. The primary objective is to assess the impact of a plant-enriched diet on physical performance, specifically maximal quadriceps strength after a 3-month nutritional intervention.
Secondary objectives are to determine the effects of a plant-enriched diet on: (1) whole-body and muscle protein metabolism, (2) modifications in the skeletal muscle proteome and metabolome, (3) functional capacities, (4) body composition, (5) gut microbiota composition, and (6) sex-related differences in metabolic adaptability. The study will compare diets containing different proportions of plant-based foods in healthy older men and women.
Participants will undergo medical evaluation, nutritional follow-up, body composition measurements, muscle function testing, indirect calorimetry, and biological sampling including blood tests, and microbiota profiling. BBlood samples will be collected for proteomic and metabolomic analyses to identify molecular pathways and potential muscle biomarkers associated with adaptations to plant-enriched diets. In parallel, circulating amino acid concentrations will be measured to assess protein bioavailability, and blood samples will be incubated with skeletal muscle cells to evaluate the anabolic potential of the ingested proteins. Digestive tolerance, micronutrient status, and metabolic health markers will also be monitored.
The procedures are associated with minimal anticipated risks. Blood sampling may cause bruising and indirect calorimetry may result in mild discomfort. Plant-enriched diets may induce transient digestive symptoms or weight loss, which will be closely monitored. Participants experiencing clinically significant weight loss will be withdrawn from the intervention and followed until stabilization.
The findings of this study may strengthen public health recommendations promoting sustainable dietary transitions in older adults and help develop nutritional strategies aimed at maintaining optimal muscle health and supporting healthy aging.
Inclusion Criteria:
Exclusion Criteria:
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