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Updated: Aug 10, 2026

Quantitative 3D In Silico Modeling (q3DISM) of Cerebral Amyloid-beta Phagocytosis in Rodent Models of Alzheimer's Disease
Published on: December 26, 2016
Parallel neuroinflammatory pathways to cerebrovascular burden and amyloid beta in Alzheimer's disease
Batool Rizvi1,2,3, Jenna N Adams1,2, Alison Bamford2,4
1Center for the Neurobiology of Learning and Memory University of California Irvine California USA.
Introduction:
Upstream neuroinflammation plays an important role in Alzheimer's disease (AD) but remains poorly understood. We tested whether two distinct neuroinflammatory markers are associated with cerebrovascular burden and amyloid beta (Aβ), and downstream, with plasma phosphorylated tau (p-tau217), medial temporal lobe (MTL) cortical and hippocampal atrophy, and memory deficits.
Methods:
Cognitively unimpaired older adults without dementia or mild cognitive impairment were recruited from a community sample (Biomarker Exploration in Aging, Cognition, and Neurodegeneration; [BEACoN]; N = 126). We used structural equation modeling to test whether plasma chitinase-3-like protein 1 (YKL-40) and glial fibrillary acidic protein (GFAP) contribute to distinct pathways.
Results:
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). Higher plasma GFAP, WMH, and FBP SUVR were independently associated with increased p-tau217. Plasma p-tau217 was associated with reduced MTL cortical thickness and hippocampal volume. Reduced hippocampal volume was related to worse memory.
Discussion:
Future work can further investigate these neuroinflammatory pathways as potential therapeutic targets for AD.
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