Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
W. Drew Gill's research focuses on modeling neurovascular dysfunction in Alzheimer's disease, utilizing an isogenic brain-chip model. This work investigates the complex interplay within the brain's vascular system and its role in the progression of neurodegenerative conditions. Collaborations with Héctor Rosas-Hernández and Katelin S. Matazel at the National Center for Toxicological Research have resulted in shared publications exploring these themes. Gill's research contributes to a deeper understanding of cellular mechanisms underlying neurological disorders, with a specific emphasis on the blood-brain barrier and its potential dysfunction in Alzheimer's disease.
Metrics
- h-index: 1
- Publications: 5
- Citations: 2
Selected Publications
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Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model (2026)
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Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model (2026)
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Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model (2026)
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Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model (2026)
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Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model (2026)
Collaboration Network
Top Collaborators
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Additional file 1 of Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
- Modeling neurovascular dysfunction in Alzheimer’s disease using an isogenic brain-chip model
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