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Published on: November 10, 2008
Differential presence of cerebral microbleeds in an amyloid mouse model compared with a CADASIL mouse model
Xiuli Yang1, Yuguo Li1,2, Adnan Bibic2
1Russell H. Morgan Department of Radiology and Radiological Science Johns Hopkins University School of Medicine Baltimore Maryland USA.
Introduction:
Cerebral microbleeds are commonly observed on susceptibility-based magnetic resonance imaging (MRI) in Alzheimer's disease (AD) and are often interpreted as markers of small-vessel disease. However, how microbleed occurrence differs between amyloid-associated vascular pathology and non-amyloid vascular conditions remains incompletely understood. In this study, we performed a comparative analysis between an amyloidosis mouse model and a non-amyloid arteriopathy cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) model to assess whether microbleed occurrence differs across these distinct vascular contexts.
Methods:
Multimodal in vivo MRI at 11.7T, including gradient echo (GRE), spin echo, and diffusion-weighted imaging, was performed in 5xFAD mice and a CADASIL mouse model across 9 to 20 months of age. Ex vivo high-resolution GRE imaging and Prussian blue staining were used to validate microbleeds. Quantitative analyses focused on microbleed counts, parenchymal and cerebrospinal fluid volumes, and regional apparent diffusion coefficient (ADC). In addition, blood-brain barrier (BBB) integrity was assessed in the CADASIL mice.
Results:
Both in vivo and ex vivo GRE MRI consistently revealed hippocampal microbleeds in 5xFAD mice, whereas no microbleeds were detected in CADASIL mice at any examined age. Microbleeds in 5xFAD mice occurred in the absence of brain atrophy or ventricular enlargement. ADC elevation was observed selectively in the midbrain of 5xFAD mice but not in other regions or in the CADASIL cohort. BBB permeability remained normal in CADASIL mice, indicating preserved vascular barrier integrity despite vascular smooth muscle cell loss.
Discussion:
Cerebral microbleeds emerged selectively in the amyloid model and were absent in a non-amyloid arteriopathy driven by vascular smooth muscle cell degeneration, suggesting that microbleed occurrence may depend on the underlying pathology. These findings show consistency with the possibility that cerebral microbleeds may reflect disease-associated vascular conditions, refining their interpretation as translational MRI biomarkers in AD.
Insights
Cerebral microbleeds were found in an Alzheimer's disease mouse model but not in a non-amyloid vascular disease model. This suggests microbleeds may indicate amyloid-related vascular issues, not just general small-vessel disease.
Area of Science:
- Neuroimaging
- Vascular Biology
- Neurodegenerative Diseases
Background:
- Cerebral microbleeds (CMBs) are common in Alzheimer's disease (AD) and linked to small-vessel disease.
- The distinction between amyloid-associated and non-amyloid vascular pathologies in CMB occurrence is unclear.
Purpose of the Study:
- To compare CMB occurrence in an amyloidosis mouse model (5xFAD) versus a non-amyloid arteriopathy model (CADASIL).
- To determine if CMBs are specific to amyloid-related vascular pathology.
Main Methods:
- Utilized multimodal in vivo and ex vivo MRI (11.7T GRE) in 5xFAD and CADASIL mice.
- Validated microbleeds with Prussian blue staining.
- Quantified microbleed counts, brain volumes, apparent diffusion coefficient (ADC), and blood-brain barrier (BBB) integrity.
Main Results:
- Hippocampal CMBs were detected in 5xFAD mice but absent in CADASIL mice.
- 5xFAD mice showed selective midbrain ADC elevation; CADASIL mice maintained normal BBB integrity.
- CMBs in 5xFAD mice occurred without brain atrophy or ventricular enlargement.
Conclusions:
- CMBs selectively appeared in the amyloid model, not the non-amyloid arteriopathy model.
- Microbleed occurrence may depend on specific underlying pathologies.
- Findings support CMBs as potential translational MRI biomarkers for AD-related vascular conditions.
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