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Updated: Jan 7, 2026

Using Retinal Imaging to Study Dementia
Published on: November 6, 2017
Distinct cerebrovascular pathways underlying Alzheimer's disease-related neurodegeneration
Rosaleena Mohanty1,2, Sophia Wheatley3, Konstantinos Chiotis3
1Division of Clinical Geriatrics, Center for Alzheimer Research, Department of Neurobiology, Care Sciences and Society, Karolinska Institutet, Stockholm, Sweden. rosaleena.mohanty@ki.se.
Insights
Cerebrovascular pathology in Alzheimer's disease (AD) involves two main pathways: arteriolosclerosis, independent of AD, and cerebral amyloid angiopathy (CAA), linked to AD pathology. Understanding these distinct pathways is crucial for AD treatment strategies.
Area of Science:
- Neurology
- Neuroscience
- Pathology
Background:
- Cerebrovascular pathology is a significant factor in neurodegenerative diseases, but its relationship with Alzheimer's disease (AD) pathology requires further clarification.
- Distinct neurodegenerative pathways may arise from independent or synergistic roles of cerebrovascular and AD pathologies.
- The Alzheimer's Disease Neuroimaging Initiative (ADNI) provides valuable data for investigating these complex interactions.
Purpose of the Study:
- To evaluate the interplay between various postmortem cerebrovascular markers and their in vivo neuroimaging, clinical, and neuropathologic correlates.
- To elucidate distinct neurodegenerative pathways by examining the relationship between cerebrovascular pathology and AD pathology.
- To determine if cerebrovascular pathology influences eligibility or adverse events for disease-modifying therapies in AD.
Main Methods:
- Postmortem characterization of cerebrovascular pathology in 109 individuals, including atherosclerosis, cerebral amyloid angiopathy (CAA), arteriolosclerosis, and infarcts.
- Assessment of in vivo neuroimaging (e.g., cortical thickness, white matter lesions, fractional anisotropy), cognitive function, and neuropathologic measures (e.g., AD pathology, Lewy body, TDP-43).
- Statistical analysis, including multiple correspondence analysis and regression models, to identify associations between cerebrovascular markers and other measures.
Main Results:
- Arteriolosclerosis and CAA were identified as the dominant cerebrovascular markers.
- Severe arteriolosclerosis correlated with white matter lesion burden and hippocampal atrophy, independent of AD pathology.
- Severe CAA was associated with reduced white matter integrity, cortical atrophy, AD pathology, and poorer memory function.
Conclusions:
- Two distinct cerebrovascular pathways exist: one driven by arteriolosclerosis, unrelated to AD pathology, and another driven by CAA, specifically associated with AD pathology.
- Cerebrovascular pathology's association with AD pathology is etiology-dependent.
- These findings have implications for patient eligibility and potential adverse events related to disease-modifying therapies for AD.
Abstract:
The etiology of cerebrovascular pathology is heterogeneous. Independent or synergistic role of this pathology relative to Alzheimer's disease (AD) pathology is necessary to clarify distinct neurodegenerative pathways. We evaluated the interplay of various cerebrovascular markers postmortem and their in vivo neuroimaging, clinical and neuropathologic correlates using data from the Alzheimer's Disease Neuroimaging Initiative (ADNI). In 109 individuals, postmortem cerebrovascular pathology (atherosclerosis of the circle of Willis, cerebral amyloid angiopathy [CAA], arteriolosclerosis, white matter rarefaction, old infarcts, microinfarcts, hemorrhages, other ischemic/vascular changes) was characterized. Additionally, we assessed in vivo neuroimaging (cortical thickness, subcortical volume, white matter lesion burden, glucose standardized uptake value ratio, fractional anisotropy of white matter tracts, cerebral blood flow), cognitive, and neuropathologic measures (atrophy, AD pathology and copathologies including Lewy body, TDP-43, hippocampal sclerosis). The study sample had mean (standard deviation) age of 82.9 (7.2) years and included 29 women (27%) and 84 (77%) with intermediate/high AD neuropathologic change. Arteriolosclerosis and CAA emerged as dominant cerebrovascular markers using multiple correspondence analysis. More severe arteriolosclerosis was explained by higher white matter lesion burden and greater postmortem hippocampal atrophy (β = 143.2, 95% CI 63.9 to 230.1, p = 0.0003), but not AD pathology. More severe CAA was explained by fractional anisotropy (β = - 20, 95% CI - 41.5 to -3.1, p = 0.02) adjusted for AD pathology and reduced integrity of superior cerebellar peduncle, posterior thalamic radiation, and sagittal stratum tracts (rho < - 0.6, false discovery rate corrected p < 0.05). More severe CAA was also explained by cortical atrophy and AD pathology (β = 0.6, 95% CI 0.2 to 1.2, p = 0.007), and associated with poorer memory (β = - 0.2, 95% CI - 0.3 to -0.09, p = 0.0009). Results demonstrate two dominant cerebrovascular pathways. An arteriolosclerosis-driven pathway is unspecific to AD pathology, whereas a CAA-driven pathway is specific to AD pathology. Cerebrovascular pathology is associated with AD pathology in an etiology-dependent manner which may influence eligibility for treatment or treatment-emergent adverse events in disease-modifying therapies for AD.
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