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Updated: Jul 2, 2026

Longitudinal In Vivo Imaging of the Cerebrovasculature: Relevance to CNS Diseases
Published on: December 6, 2016
Meningeal vascular Aβ deposition associates with cerebral hypoperfusion and compensatory collateral remodeling
Alexandra M Kaloss1, Jack L Browning2,3, Jiangtao Li2,3
1Department of Biomedical Sciences and Pathobiology, Virginia Tech, Blacksburg, VA, 24061, USA.
Background:
Global reductions in cerebral blood flow (CBF) are among the earliest and most consistent abnormalities observed in Alzheimer's disease (AD), preceding both cortical plaque formation and cognitive decline. While the pial arterial network-a critical supplier of intracortical perfusion-has been overlooked in this context, it may play a pivotal role in early vascular pathology. Here, we report extensive cerebral amyloid angiopathy (CAA) within the pial artery and arteriole network in the J20 (PDGF-APPSw, Ind) mouse model of AD.
Methods:
Using premortem delivery of Methoxy-XO4 to label Aβ, and arterial vascular labeling, we assessed Aβ burden on the pial artery/arteriole network and cerebral blood flow in aged male and female WT and J20 AD mice.
Results:
We show that 12-month-old J20 mice exhibit significant Aβ deposition across major leptomeningeal arteries (ACA, MCA) and pial collaterals, with ~ 40% vessel coverage in males and ~ 20% in females-substantially exceeding Aβ levels in cortical or hippocampal vessels. This vascular Aβ burden was accompanied by compensatory enlargement and increased tortuosity of pial collateral vessels. Yet, despite this apparent remodeling, CBF was reduced by ~ 15% in J20 mice, and this decline was significantly associated with leptomeningeal CAA burden.
Conclusions:
This is the first study to comprehensively characterize meningeal arterial Aβ accumulation in a preclinical model of vascular AD, mirroring recent observations in early-stage human disease. Our findings implicate meningeal CAA as a potential driver of early CBF disruption and suggest that pial collateral remodeling may reflect a compensatory response to vascular insufficiency. Moreover, we identify robust sex differences in CAA burden, paralleling sex-specific patterns of parenchymal Aβ pathology in humans. These results highlight the leptomeningeal vasculature as a novel and understudied locus for early AD pathology and a potential therapeutic target to preserve cerebrovascular integrity.
Insights
Alzheimer's disease (AD) involves early cerebral blood flow (CBF) reductions linked to amyloid-beta buildup in meningeal arteries. This study in J20 mice reveals meningeal cerebral amyloid angiopathy (CAA) drives CBF decline, with sex differences observed.
Area of Science:
- Neuroscience
- Vascular Biology
- Alzheimer's Disease Research
Background:
- Global reductions in cerebral blood flow (CBF) are early indicators of Alzheimer's disease (AD), preceding cognitive decline.
- The pial arterial network's role in early AD vascular pathology has been understudied.
- This study investigates cerebral amyloid angiopathy (CAA) in the pial arterial network of a mouse model of AD.
Purpose of the Study:
- To characterize Aβ deposition in the meningeal arterial network of J20 AD mice.
- To assess the impact of meningeal CAA on cerebral blood flow (CBF).
- To investigate sex differences in meningeal CAA burden.
Main Methods:
- Premortem Aβ labeling with Methoxy-XO4 and arterial vascular labeling.
- Assessment of Aβ burden in pial arteries and arterioles.
- Measurement of cerebral blood flow (CBF) in aged male and female WT and J20 AD mice.
Main Results:
- Significant Aβ deposition was found in major leptomeningeal arteries and pial collaterals of J20 mice (40% in males, 20% in females).
- Vascular Aβ burden was associated with compensatory enlargement and tortuosity of pial collateral vessels.
- CBF was reduced by approximately 15% in J20 mice, significantly correlated with leptomeningeal CAA burden.
Conclusions:
- This study comprehensively characterizes meningeal arterial Aβ accumulation in a preclinical AD model, mirroring human disease.
- Meningeal CAA is implicated as a driver of early CBF disruption in AD.
- Pial collateral remodeling may be a compensatory response to vascular insufficiency, with significant sex differences in CAA burden observed.
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