4.7 Article

Reduction of the cerebrovascular volume in a transgenic mouse model of Alzheimer's disease

Journal

NEUROPHARMACOLOGY
Volume 56, Issue 4, Pages 808-813

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.neuropharm.2009.01.006

Keywords

Alzheimer; 3xTg-AD; Vascular pathology; Blood-brain barrier; Brain perfusion; Collagen

Funding

  1. Canadian Institutes of Health Research (CIHR) [MOP84251, MOP74443]
  2. Alzheimer Society Canada (F.C.)
  3. Canada Foundation for Innovation [10307]
  4. Clinical Research Initiative and the CIHR Institute of Aging [CAN76833]

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Combined evidence from neuroimaging and neuropathological studies shows that signs of vascular pathology and brain hypoperfusion develop early in Alzheimer's disease (AD). To investigate the functional implication of these abnormalities, we have studied the cerebrovascular volume and selected markers of blood-brain barrier (BBB) integrity in 11-month-old 3xTg-AD mice, using the in situ brain perfusion technique. The cerebrovascular volume of distribution of two vascular space markers, [H-3]-inulin and [C-14]-Sucrose, was significantly lower (-26% and -27%, respectively: p < 0.01) in the brain of 3xTg-AD mice compared to non-transgenic littermates. The vascular volume reduction was significant in the hippocampus (p < 0.01), but not in the frontal cortex and cerebellum. However, the brain transport coefficient (Clup) of [C-14]-D-glucose (1 mu M) and [H-3]-diazepam was similar between 3xTg-AD mice and controls, suggesting no difference in the functional integrity of the BBB. We also report a 32% increase (p < 0.001) in the thickness of basement membranes surrounding cortical microvessels along with a 20% increase (p < 0.05) of brain collagen content in 3xTg-AD mice compared to controls. The present data indicate that the cerebrovascular space is reduced in a mouse model of A beta and tau accumulation, an observation consistent with the presence of cerebrovascular pathology in AD. (C) 2009 Elsevier Ltd. All rights reserved.

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