A specific brain aging phenotype is suggested as a potential intermediate pathway linking tau-related pathology to cognition prior to clinical impairment in cognitively unimpaired adults.
Abstract
Deep learning-based brain age models quantify regional deviations from normative aging and may capture structural changes relevant to dementia risk. Plasma phosphorylated tau-217 (p-tau217) is a scalable Alzheimer’s disease biomarker, but its relationship to brain aging and cognition in cognitively unimpaired adults is unclear. In this cross-sectional study, we tested whether brain age patterns serve as indirect pathways linking plasma p-tau217 to cognition in the Aging Brain Cohort (ABC). Neuroimaging data from 518 adults (mean age = 43.7 years, 70.8% female) were analyzed using a validated deep learning brain age model, and decomposed via exploratory factor analysis into six gradients: frontal, dorsal, ventral, left frontotemporal, right frontotemporoparietal, and bilateral parietal. In a parallel mediation model including all six gradients as simultaneous mediators in adults aged ≥60 years (N = 71), a significant specific indirect effect of plasma p-tau217 on Montreal Cognitive Assessment (MoCA) scores was observed through accelerated right frontotemporoparietal aging (β = −0.111, 95% CI [−0.313, −0.010], p = 0.031). No other indirect pathways were significant, and neither the total nor direct effect was significant. These findings suggest a specific brain aging phenotype as a potential intermediate pathway linking tau-related pathology to cognition prior to clinical impairment.
BAG is a reliable non-invasive marker of structural brain health sensitive to AD pathology and to modifiable AD risk and supports its relevance for early risk stratification and prevention-oriented research.
E. Kuhn, G. Antopoulos, L. Kleineidam et al.· medRxiv· 0 citations
Brain-age models use neuroimaging features to predict chronological age. The resulting brain-age gap (BAG), defined as predicted brain age minus chronological age, quantifies deviations from age-expected brain characteristics. Structural brain-age acceleration is well established in schizophrenia spectrum disorders (SS...
S. Volkmer, S. Fritze, D. Altinok et al.· Translational Psychiatry· 0 citations
BACKGROUND
Currently, no single biomarker can reliably identify preclinical Alzheimer's disease (AD), particularly at or before the mild cognitive impairment (MCI) stage. Given the heterogeneity of MCI, integrative approaches are needed to improve early risk stratification.
OBJECTIVES
(i) To derive robust latent cogn...
Ana S. Perez, Hugo L. Hammer, V. Andersson et al.· GeroScience· 0 citations
Higher plasma YKL‐40 was associated with greater white matter hyperintensity (WMH), whereas higher plasma GFAP was related to increased 18F‐florbetapir (FBP) standardized uptake value ratio (SUVR) and higher plasma p‐tau217 was associated with reduced MTL cortical thickness and hippocampal volume.
Batool Rizvi, Jenna N. Adams, Alison R. Bamford et al.· Alzheimer's & Dementia· 1 citation
ABSTRACT Objective To identify inflammatory analytes in cerebrospinal fluid (CSF) and plasma associated with cognitive decline in cognitively normal (CN) older adults at risk for Alzheimer's disease (AD). Methods In a longitudinal study of 118 CN older adults (65–80 years, 54% APOE ε4, 26% preclinical AD), 1331 CSF and...
Jagan A. Pillai, Audrey Zhu, Chun-Xuan Ma et al.· Annals of Clinical and Trans...· 0 citations
Circulating LDL-C was associated with modest heterogeneity in the cross-sectional Aβ–EC relationship, with more clearly negative conditional associations observed at higher LDL-C levels, and a similar interaction was observed for non-HDL cholesterol, suggesting that the pattern may reflect a broader atherogenic lipid c...
Minh Le Tran, Kahye Kim, Jaeuk U. Kim et al.· Frontiers in Aging Neuroscie...· 0 citations
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