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Updated: Jun 13, 2026

A Mouse Model for Vascular Cognitive Impairment and Dementia Based on Needle-guided Asymmetric Bilateral Common Carotid Artery Stenosis
Published on: November 22, 2024
A mouse model characterizing features of vascular dementia with hippocampal atrophy
Keiko Nishio1, Masafumi Ihara, Nobuyuki Yamasaki
1Department of Neurology, Faculty of Medicine, Kyoto University, Sakyo-Ku, Kyoto 606-8507 Japan. ihara@kuhp.kyoto-u.ac.jp.
Background And Purpose:
We have previously described effects of chronic cerebral hypoperfusion in mice with bilateral common carotid artery stenosis (BCAS) using microcoils for 30 days. These mice specifically exhibit working memory deficits attributable to frontal-subcortical circuit damage without apparent gray matter changes, indicating similarities with subcortical ischemic vascular dementia. However, as subcortical ischemic vascular dementia progresses over time, the longer-term effects that characterize the mouse model are not known.
Methods:
Comprehensive behavioral test batteries and histological examinations were performed in mice subjected to BCAS for up to 8 months. Laser speckle flowmetry and (18)F-fluorodeoxyglucose positron emission tomography were performed to assess cerebral blood flow and metabolism at several time points.
Results:
At 2 hours after BCAS, cerebral blood flow in the cerebral cortex temporarily decreased to as much as 60% to 70% of the control value but gradually recovered to >80% at 1 to 3 months. At 5 to 6 months after BCAS, reference and working memory were impaired as demonstrated by the Barnes and radial arm maze tests, respectively. Furthermore, (18)F-fluorodeoxyglucose positron emission tomography demonstrated that hippocampal glucose utilization was impaired at 6 months after BCAS. Consistent with these behavioral and metabolic abnormalities, histological analyses demonstrated hippocampal atrophy with pyknotic and apoptotic cells at 8 months after BCAS.
Conclusions:
These results suggest that the longer-term BCAS model replicates advanced stages of subcortical ischemic vascular dementia when hippocampal neuronal loss becomes significant.
Insights
Chronic cerebral hypoperfusion in mice with bilateral common carotid artery stenosis (BCAS) for up to 8 months leads to significant hippocampal atrophy and neuronal loss. This mouse model replicates advanced stages of subcortical ischemic vascular dementia.
Area of Science:
- Neuroscience
- Vascular Dementia Research
- Animal Models
Background:
- Chronic cerebral hypoperfusion is implicated in vascular dementia.
- Previous studies established a 30-day mouse model of bilateral common carotid artery stenosis (BCAS) showing working memory deficits.
- Longer-term effects of this BCAS model were previously unknown.
Purpose of the Study:
- To investigate the long-term effects of chronic cerebral hypoperfusion using the BCAS mouse model.
- To characterize the progression of neurological and histological changes over 8 months.
- To determine if the BCAS model replicates advanced stages of subcortical ischemic vascular dementia.
Main Methods:
- Mice underwent bilateral common carotid artery stenosis (BCAS) for up to 8 months.
- Comprehensive behavioral tests (Barnes maze, radial arm maze) assessed cognitive function.
- Cerebral blood flow (laser speckle flowmetry) and metabolism (FDG-PET) were measured.
- Histological analyses examined brain tissue for neuronal damage and atrophy.
Main Results:
- Cerebral blood flow initially decreased but recovered to over 80% within 3 months.
- Working and reference memory impairments were observed at 5-6 months post-BCAS.
- Hippocampal glucose utilization was reduced at 6 months.
- Histology at 8 months revealed hippocampal atrophy with significant neuronal cell death (pyknotic and apoptotic cells).
Conclusions:
- The long-term BCAS mouse model effectively replicates advanced stages of subcortical ischemic vascular dementia.
- Significant hippocampal neuronal loss characterizes these advanced stages.
- This model provides a valuable tool for studying progressive vascular dementia.
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