Scinovex
review Open AccessTop 1% cited

Vascular Dysfunction in Alzheimer’s Disease: A Prelude to the Pathological Process or a Consequence of It?

Journal of Clinical Medicine · 2019 · Vol. 8(5) · pp. 651–651
Karan GovindpaniLaura G McNamaraNicholas R SmithChitra VinnakotaHenry J. WaldvogelRichard L. M. FaullAndrea Kwakowsky

Abstract

Alzheimer's disease (AD) is the most prevalent form of dementia. Despite decades of research following several theoretical and clinical lines, all existing treatments for the disorder are purely symptomatic. AD research has traditionally been focused on neuronal and glial dysfunction. Although there is a wealth of evidence pointing to a significant vascular component in the disease, this angle has been relatively poorly explored. In this review, we consider the various aspects of vascular dysfunction in AD, which has a significant impact on brain metabolism and homeostasis and the clearance of β-amyloid and other toxic metabolites. This may potentially precede the onset of the hallmark pathophysiological and cognitive symptoms of the disease. Pathological changes in vessel haemodynamics, angiogenesis, vascular cell function, vascular coverage, blood-brain barrier permeability and immune cell migration may be related to amyloid toxicity, oxidative stress and apolipoprotein E (APOE) genotype. These vascular deficits may in turn contribute to parenchymal amyloid deposition, neurotoxicity, glial activation and metabolic dysfunction in multiple cell types. A vicious feedback cycle ensues, with progressively worsening neuronal and vascular pathology through the course of the disease. Thus, a better appreciation for the importance of vascular dysfunction in AD may open new avenues for research and therapy.

Alzheimer's disease research and treatmentsNeurological Disease Mechanisms and TreatmentsNeurological Disorders and TreatmentsMedicineDementiaDiseaseVascular dementiaEndothelial dysfunctionPathologyNeurosciencePathologicalVascular diseaseApolipoprotein E

Funding

  • Auckland Medical Research Foundation
  • Maurice and Phyllis Paykel Trust
  • Neurological Foundation of New Zealand
  • Health Research Council of New Zealand
Citations
278
FWCI
12.79
field-weighted impact
References
494
Percentile
99%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.