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Updated: Sep 24, 2025

A Mouse Model for Vascular Cognitive Impairment and Dementia Based on Needle-guided Asymmetric Bilateral Common Carotid Artery Stenosis
Published on: November 22, 2024
Perspectives on Cognitive Phenotypes and Models of Vascular Disease
Selen C Muratoglu1, Marc F Charette1, Zorina S Galis1
1National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD (S.C.M., M.F.C., Z.S.G.).
Insights
Vascular conditions are linked to dementia, but specific deficiencies remain unclear. This study proposes using genetically modified mouse models to connect vascular signaling pathways with cognitive deficits for better dementia research.
Area of Science:
- Neuroscience and Vascular Biology
- Dementia Research
- Animal Models in Disease Research
Background:
- Vascular conditions are established risk factors for dementia, yet specific links between vascular deficiencies and cognitive impairments are not well understood.
- The multi-factorial nature and long progression of vascular dementia complicate direct human studies.
- Existing animal models, primarily mice with genetic mutations, offer potential for studying specific vascular functions and their neurological impact.
Purpose of the Study:
- To explore the utility of comprehensive cognitive phenotyping in established mouse models of vascular disease.
- To bridge the gap between vascular biology and neurobehavioral research communities.
- To identify specific vascular signaling pathways associated with distinct cognitive and neurobehavioral deficits relevant to dementia.
Main Methods:
- Convened a workshop with experts from vascular biology and neurobehavioral research domains.
- Discussed the comprehensive phenotypic cognitive assessment of selected mouse models representing a spectrum of vascular disorders.
- Emphasized considerations for age, sex, rigor, and reproducibility in model selection and assessment.
Main Results:
- Highlighted the potential of well-characterized vascular disease mouse models.
- Emphasized the importance of validated cognitive outcomes for linking vascular mechanisms to dementia.
- Showcased the possibility of associating specific vascular signaling pathways with particular cognitive and neurobehavioral deficits.
Conclusions:
- Integrating vascular disease models with cognitive assessments can advance understanding of vascular dementia.
- This approach facilitates the identification of specific molecular targets for therapeutic interventions.
- Improved information sharing between research communities is crucial for progress in vascular dementia research.
Abstract:
Clinical investigations have established that vascular-associated medical conditions are significant risk factors for various kinds of dementia. And yet, we are unable to associate certain types of vascular deficiencies with specific cognitive impairments. The reasons for this are many, not the least of which are that most vascular disorders are multi-factorial and the development of vascular dementia in humans is often a multi-year or multi-decade progression. To better study vascular disease and its underlying causes, the National Heart, Lung, and Blood Institute of the National Institutes of Health has invested considerable resources in the development of animal models that recapitulate various aspects of human vascular disease. Many of these models, mainly in the mouse, are based on genetic mutations, frequently using single-gene mutations to examine the role of specific proteins in vascular function. These models could serve as useful tools for understanding the association of specific vascular signaling pathways with specific neurological and cognitive impairments related to dementia. To advance the state of the vascular dementia field and improve the information sharing between the vascular biology and neurobehavioral research communities, National Heart, Lung, and Blood Institute convened a workshop to bring in scientists from these knowledge domains to discuss the potential utility of establishing a comprehensive phenotypic cognitive assessment of a selected set of existing mouse models, representative of the spectrum of vascular disorders, with particular attention focused on age, sex, and rigor and reproducibility. The workshop highlighted the potential of associating well-characterized vascular disease models, with validated cognitive outcomes, that can be used to link specific vascular signaling pathways with specific cognitive and neurobehavioral deficits.
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