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A Mouse Model for Vascular Cognitive Impairment and Dementia Based on Needle-guided Asymmetric Bilateral Common Carotid Artery Stenosis
Published on: November 22, 2024
Carotid arteries in cerebral small vessel disease and dementia
Erika Kitajima1,2, Ashley Suwanda3, Dan Jobson3
1Neurovascular Research Group, Translational and Clinical Research Institute, Campus for Ageing & Vitality, Newcastle University, NE4 5PL, Newcastle Upon Tyne, UK. k_erika@gm.himeji.
Insights
Carotid artery disease (CAD) contributes to cerebral small vessel disease (SVD) and dementia by altering blood flow. Atherosclerosis in the internal carotid artery (ICA) is linked to SVD pathology and cognitive decline.
Area of Science:
- Neurology
- Pathology
- Vascular Biology
Background:
- Carotid artery disease (CAD) is a known stroke cause, but its link with cerebral small vessel disease (SVD) and dementia is unclear.
- Cerebral SVD and dementia significantly impact public health, necessitating research into underlying pathologies.
Purpose of the Study:
- To investigate the hypothesis that CAD in older individuals promotes cerebral SVD by affecting cerebral perfusion.
- To determine the association between internal carotid artery (ICA) stenosis and SVD pathology, vascular lesions, and cognitive function.
Main Methods:
- A clinicopathological study involving postmortem internal carotid artery (ICA) and brain tissue samples from patients with dementia and SVD.
- Neuropathological examination assessed ICA stenosis, sclerosis, and SVD markers.
- Regression analyses correlated ICA pathology with SVD scores, vascular lesions, and cognitive assessments (MMSE, CAMCOG).
Main Results:
- Severity of ICA stenosis strongly correlated with clinical stroke, brain infarction, and SVD pathology scores.
- ICA stenosis was associated with dementia due to cerebrovascular disease and mixed Alzheimer's disease/SVD pathologies.
- Moderate to severe ICA stenosis correlated with lower cognitive scores (MMSE, CAMCOG) and increased small white matter lesions.
Conclusions:
- Carotid atherosclerosis promotes SVD-type changes in intracerebral arteries, suggesting extracranial ICA pathology influences subcortical and white matter integrity.
- Findings highlight the role of carotid artery disease in the development of SVD and its contribution to cognitive impairment and dementia.
Abstract:
Carotid artery disease (CAD) is a recognised cause of stroke. However, the relationships between CAD, cerebral small vessel disease (SVD) and dementia remain unclear. We hypothesised that CAD in older individuals contributes to cerebral SVD pathology by altering cerebral perfusion. We performed a clinicopathological study in patients from the Cognitive Function After Stroke (CogFAST) study and prospectively recruited patients with various dementia diagnoses and evidence of cerebral SVD. In addition to brain tissues, we collected postmortem samples of the internal carotid arteries (ICA) from these cohorts in the Newcastle Brain Tissue Resource. Standard neuropathological examination was performed for diagnosis and assignment of the cases per current diagnostic criteria for vascular and neurodegenerative dementias, which were assessed for the presence of vascular pathology including the degree of stenosis and sclerosis in vascular tissues. We evaluated a total of 159 ICA samples and brain tissues from all cases with evidence of SVD. Severity of ICA stenosis and sclerotic index correlated strongly with both clinical stroke and brain infarction (P < 0.001). More than 90% of the subjects had one subtype of ICA lesion in the order: intimal thickening > fibrocalcific > fibrous cap (thick) > fibrous cap (thin) > thrombus group with a strong inflammatory reaction in fibrocalcific atheromas. Regression analyses showed that ICA stenosis was positively correlated to both SVD pathology scores (P < 0.034) and the total number of vascular lesions (P < 0.001). ICA stenosis was also related to dementia caused by cerebrovascular disease (P < 0.001) and by mixed pathologies characterised by Alzheimer's disease and SVD (P = 0.025). Severity of stenosis was related to subcortical and white matter (WM) vascular lesions within the anterior circulation. ICA stenosis and sclerosis were moreover correlated with the total intracranial artery pathology scores (P < 0.001). In the CogFAST group analysis, we observed that MMSE and CAMCOG scores were lower in subjects with moderate to severe stenosis scores compared to the mild stenosis group (P < 0.05). In these CogFAST cases, by far the majority of lesions in the WM were small in size (< 5 mm, range 72-91%) but not in the cortex or basal ganglia and thalamus. Linear regression analysis further indicated that there were greater numbers of these small lesions in the WM with increasing severity of ICA stenosis (P < 0.05). Our observations suggest carotid atherosclerosis promotes cerebral SVD types of change within the intracerebral arteries. It is conceivable that extracranial ICA pathology may influence perfusion and integrity of subcortical structures including the deep WM.
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