4.7 Article

Amyloid, Vascular, and Resilience Pathways Associated with Cognitive Aging

Journal

ANNALS OF NEUROLOGY
Volume 86, Issue 6, Pages 866-877

Publisher

WILEY
DOI: 10.1002/ana.25600

Keywords

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Funding

  1. National Institute of Neurological Disorders and Stroke (NINDS) [U01 AG006786, R01 NS097495, R01 AG056366, P50 AG016574/P1, P50 AG016574, R37 AG011378, R01 AG041851, R01 AG034676]
  2. National Institute on Aging (NIA) [U01 AG006786, R01 NS097495, R01 AG056366, P50 AG016574/P1, P50 AG016574, R37 AG011378, R01 AG041851, R01 AG034676]
  3. Gerald and Henrietta Rauenhorst Foundation
  4. Alexander Family Alzheimer's Disease Research Professorship of the Mayo Foundation
  5. Alzheimer's Association (Zenith Fellows Award)
  6. Liston Award
  7. Elsie and Marvin Dekelboum Family Foundation
  8. Schuler Foundation
  9. Opus building NIH grant [C06 RR018898]
  10. Millis Family

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Objective To investigate the multifactorial processes underlying cognitive aging based on the hypothesis that multiple causal pathways and mechanisms (amyloid, vascular, and resilience) influence longitudinal cognitive decline in each individual through worsening brain health. Methods We identified 1,230 elderly subjects (aged >= 50 years) with an average of 4.9 years of clinical follow-up and with amyloid positron emission tomography, diffusion tensor imaging, and structural magnetic resonance imaging scans from the population-based Mayo Clinic Study of Aging. We examined imaging markers of amyloid and brain health (white matter microstructural integrity and cortical thinning), systemic vascular health preceding the imaging markers, and early to midlife intellectual enrichment to predict longitudinal cognitive trajectories. We used latent growth curve models for modeling longitudinal cognitive decline. Results All the pathways (amyloid, vascular, resilience) converged through their effects on cortical thinning and worsening cognition and together explained patterns in cognitive decline. Resilience and vascular pathways (aging process, sex differences, education/occupation, and systemic vascular health) had significant impact on white matter microstructural integrity. Education/occupation levels contributed to white matter integrity through systemic vascular health. Worsening white matter integrity contributed to significant cortical thinning and subsequently longitudinal cognitive decline. Baseline amyloidosis contributed to a significant proportion of cognitive decline that accelerated with longer follow-up times, and its primary impact was through cortical thinning. Interpretation We developed an integrated framework to help explain the dynamic and complex process of cognitive aging by considering key causal pathways. Such an approach is important for both better comprehension of cognitive aging processes and will aid in the development of successful intervention strategies. ANN NEUROL 2019

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