It is suggested that brain iron may contribute to the clinical impact of CAA in older age and whether brain iron modulates the association of CAA with cognitive decline is investigated.
Abstract
Cerebral amyloid angiopathy (CAA) is a common brain pathology in older people and has been recently recognized as a major risk factor for amyloid-related imaging abnormalities during anti-amyloid antibody therapy. CAA pathophysiology may involve iron released from ruptured vessels, but the association between postmortem CAA and brain iron is unclear. This study investigates the association between CAA and brain iron and whether elevated iron modifies the association between CAA and cognitive decline. We studied 626 Rush Memory and Aging Project decedents (mean age at death = 90 [SD = 6.1] years, 70% women) who completed baseline and longitudinal cognitive assessments and underwent detailed neuropathologic evaluation for CAA, Alzheimer’s disease neuropathologic changes (ADNC), and other brain pathologies. Brain iron content was assessed from the inferior temporal cortex using Inductively Coupled Plasma Mass Spectrometry (ICP-MS). Linear regression and mixed-effects models were used for analysis. CAA was common: 266 (42%) had mild, 153 (24%) had moderate, and 75 (12%) had severe CAA. In analyses adjusted for demographics, intermediate/high ADNC, and other pathologies, the presence and severity of CAA were associated with elevated cortical brain iron (Est = 0.033, SE = 0.011, p = 0.002; Est = 0.017, SE = 0.004, p < 0.001, respectively). When examining associations with nonlinear cognitive change before death (mean follow-up = 7.7 [SD = 3.9] years), both CAA and elevated iron were independently associated with faster annual rates of decline in global cognition and semantic memory (all p < 0.04). Elevated iron was also associated with faster declines in episodic and working memory and perceptual speed (all p < 0.02). When exploring whether brain iron modulates the association of CAA with cognitive decline, we found that CAA had steeper decline in perceptual speed when elevated iron was present compared to when low iron was present (p = 0.03). Together, these findings suggest that brain iron may contribute to the clinical impact of CAA in older age.
CAA is not simply an independent cerebrovascular disorder but also serves as a critical synergistic risk factor for Alzheimer’s disease neuropathologic change (ADNC) progression.
Yi-Zhou Zhang, Meng-Yao Ye, Shixiong Mi et al.· Frontiers in Immunology· 0 citations
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Background and Objectives Cerebral amyloid angiopathy (CAA) is associated with intracerebral hemorrhage, cognitive decline, and dementia. We examined (1) associations between CAA, cognitive impairment, and depressive symptoms; (2) whether depressive symptoms mediate the relationship between CAA and cognition; and (3) w...
Nikita Nukala, Ryan T. Muir, Andrew E. Beaudin et al.· Neurology· 0 citations
BACKGROUND AND OBJECTIVES
Cerebral amyloid angiopathy (CAA) is currently diagnosed using MRI-based Boston criteria. However, imaging markers represent downstream consequences of vascular injury and may not fully reflect disease severity. CSF biomarkers, particularly β-amyloid 1-42 (Aβ42) and β-amyloid 1-40 (Aβ40), may...
ABSTRACT Objective Peak‐width of skeletonized mean diffusivity (PSMD) and diffusion tensor imaging–analysis along the perivascular space (DTI‐ALPS), reflecting white matter integrity and glymphatic function, are altered in Alzheimer's disease (AD). We evaluated whether these biomarkers differ between AD participants wi...
Debina Laishram, G. Du, Sangam Kanekar et al.· Annals of Clinical and Trans...· 0 citations
The emergence of blood-based biomarkers (BBMs) has transformed the diagnosis of Alzheimer’s disease (AD). 1,2 Plasma phosphorylated tau, glial fibrillary acidic protein (GFAP), and neurofilament light chain (NfL) have demonstrated remarkable accuracy in detecting amyloid pathology and predicting disease progression acr...
H. Kwon, Seong-Ho Koh· Journal of Clinical Neurolog...· 0 citations
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