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Assessment of Social Transmission of Food Preferences Behaviors
Published on: January 25, 2018
Dietary preference, biological aging, and incident dementia: a prospective cohort study
Mengtong Sun1, Feng Huang2,3, Na Sun4
1Department of Infectious Diseases and Public Health, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong SAR, China.
Abstract:
Dietary patterns are modifiable determinants of dementia risk, but the interactions between individual dietary preference profiles, biological aging, and dementia risk remain unclear. We aimed to investigate associations of dietary preference profiles with biological aging and incident dementia, as well as the potential modifying effect of genetic susceptibility. Dietary preference profiles were identified using latent profile analysis on food preferences questionnaire data. Cox models estimated the association between dietary preferences and dementia risk and their interaction with genetic risk. Associations with biological aging acceleration (Klemera-Doubal method biological age [KDM-BA] acceleration, phenotypic age (PhenoAge) acceleration, leucocyte telomere length [LTL]) were assessed with linear regression. Mediation analysis explored potential mediators. Three dietary preference profiles were identified: health-aligned, broad-preference, and sweet-tooth. The sweet-tooth group showed a 79% higher risk of all-cause dementia, 62% higher risk of Alzheimer's disease, and 202% higher risk of vascular dementia compared to the health-aligned group. The sweet-tooth profile was associated with accelerated KDM-BA, PhenoAge, and shorter LTL. A significant additive interaction between sweet-tooth profile and high genetic risk amplified dementia risk. Exploratory mediation analyses suggested that biological aging markers statistically accounted for 2.28-4.82% of the observed association. Sweet-tooth dietary preference was associated with higher dementia risk and accelerated biological aging, particularly among individuals with high genetic susceptibility. These findings support targeted dietary interventions for dementia prevention, especially in genetically at-risk populations.
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