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Endothelial Dysfunction and Amyloid-β-Induced Neurovascular Alterations
Kenzo Koizumi1, Gang Wang1, Laibaik Park2
1Feil Family Brain and Mind Research Institute, Weill Cornell Medical College, 407 East 61st Street; RR-410, New York, NY, 10065, USA.
Cellular and Molecular Neurobiology
|September 3, 2015
Summary
Alzheimer's disease involves amyloid-beta damaging brain blood vessels. This damage activates TRPM2 channels, causing calcium overload and impaired blood flow, contributing to Alzheimer's progression.
Area of Science:
- Neuroscience
- Vascular Biology
- Pathophysiology
Background:
- Alzheimer's disease (AD) and cerebrovascular diseases share risk factors impacting brain blood vessel regulation.
- Endothelial cells are crucial for neurovascular homeostasis, and their injury is an early sign of impaired vasoregulation.
- Amyloid-beta (Aβ) accumulation is central to AD pathogenesis and detrimentally affects cerebral blood vessels.
Purpose of the Study:
- To investigate the role of vascular oxidative stress and TRPM2 channels in Aβ-induced neurovascular dysfunction in Alzheimer's disease.
- To elucidate the mechanisms by which Aβ impacts endothelial cells and cerebrovascular function.
Main Methods:
- Examined the effects of Aβ on endothelial cells and cerebrovascular regulation.
- Investigated the involvement of oxidative stress and the TRPM2 channel in Aβ-induced endothelial dysfunction.
- Assessed the impact of Aβ-induced cerebrovascular dysfunction on cerebral blood supply and Aβ accumulation.
Main Results:
- Aβ triggers the opening of TRPM2 channels in endothelial cells.
- TRPM2 channel activation leads to intracellular calcium overload and vasomotor dysfunction.
- Cerebrovascular dysfunction induced by Aβ may exacerbate AD by reducing cerebral blood flow and promoting Aβ deposition.
Conclusions:
- Vascular oxidative stress and TRPM2 channel activation are key mechanisms in Aβ-induced neurovascular dysfunction.
- Cerebrovascular dysfunction is implicated in the pathogenesis and progression of Alzheimer's disease.
- Targeting vascular factors presents a promising strategy for preventing and treating Alzheimer's disease.

