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Biomedical subjects

Anna Picca

Publications and source records attributed to Anna Picca.

2 recordsLinked to original sources

Adherence to the Mediterranean diet and incident cardiovascular outcomes among older adults.

AIM: The present study examined the prospective associations between adherence to the Mediterranean (MED) diet, its individual components, and incident cardiovascular disease (CVD) among community-dwelling older adults. METHODS: Data were obtained from the English Longitudinal Study of Ageing (ELSA). Participants aged ≥65 years without hypertension at baseline (Wave 9, 2018-2019) were followed through Wave 11 (2023-2024). Adherence to the MED diet was assessed using the Medi-Lite score. Incident hypertension, myocardial infarction, and stroke were identified through self-reported physician diagnoses. Logistic regression analyses were performed to examine the prospective associations between MED diet adherence, individual dietary components, and cardiovascular outcomes, adjusting for age, sex, and caloric intake. RESULTS: A total of 338 participants (74.6 ± 6.2 years; 56.6% women) were included. During follow-up, the incidence of hypertension, myocardial infarction, and stroke was 12.4%, 2.6%, and 2.6%, respectively. No statistically significant associations were detected between overall MED diet adherence and incident hypertension (OR = 0.992, 95% CI = 0.586-1.679), myocardial infarction (OR = 1.422, 95% CI = 0.381-5.302), or stroke (OR = 0.808, 95% CI = 0.360-1.811). Likewise, none of the individual MED diet components was significantly associated with incident CVD outcomes. CONCLUSION: In conclusion, no statistically significant associations were detected between adherence to the MED diet and incident CVD among community-dwelling older adults in England. However, given the relatively low number of cardiovascular events, particularly myocardial infarction and stroke, these findings should be interpreted with caution. Further studies with longer follow-up periods and larger numbers of CVD events are warranted to provide more precise estimates and further clarify these associations.

diet pattern

DNA methylation signatures in skeletal muscle associated with physical function in healthy older adults.

Despite the substantial variability in physical function among older adults, the molecular mechanisms remain poorly characterized, particularly within skeletal muscle. This study aimed to determine the patterns of DNA methylation in skeletal muscle associated with physical function in healthy older adults. We analyzed DNA methylation (EPIC v2 array; 875,554 CpG sites) in skeletal muscle from 92 healthy older adults (median age 74; 62% female). Associations were examined across five phenotypes: Short Physical Performance Battery (SPPB), 6-min walk test (6MWT), handgrip strength, perceived disability (PAT-D), and lifestyle health (modified Life's Essential 8). Linear regression models adjusted for age, sex, race, BMI, and muscle fiber composition. Genomic inflation corrected via the BACON method (FDR&#x2009;<&#x2009;0.05). Gene set enrichment analysis was performed on suggestive hits (FDR&#x2009;<&#x2009;0.1). We identified significant differentially methylated probes (DMPs) and regions (DMRs) across all phenotypes: SPPB (70 DMPs, 22 DMRs), 6MWT (16 DMPs, 566 DMRs), handgrip strength (2 DMRs), PAT-D (19 DMPs, 1 DMR), and lifestyle health (2 DMPs). DMRs largely overlapped promoters. Identified genes overlapped known musculoskeletal and neurological GWAS hits, including RUNX2 and FOXL1 (bone mineral density), IGFBP3 (muscle mass), and NEK1 and SHANK1 (neurological function). Enrichment analysis revealed that 6MWT-associated genes relate to nervous and skeletal system development, while handgrip-associated genes involve cytoskeletal dynamics and protein assembly. Epigenetic variation in aging skeletal muscle is associated with physical function. The enrichment of pathways related to nervous and musculoskeletal development suggests specific epigenetic mechanisms underlying functional decline, offering potential targets for intervention in older adults.

DNA methylation