Literature DB >> 21411981

Cerebral amyloid angiopathy, blood-brain barrier disruption and amyloid accumulation in SAMP8 mice.

Jaume del Valle1, Joaquim Duran-Vilaregut, Gemma Manich, Mercè Pallàs, Antoni Camins, Jordi Vilaplana, Carme Pelegrí.   

Abstract

Cerebrovascular dysfunction and β-amyloid peptide deposition on the walls of cerebral blood vessels might be an early event in the development of Alzheimer's disease. Here we studied the time course of amyloid deposition in blood vessels and blood-brain barrier (BBB) disruption in the CA1 subzone of the hippocampus of SAMP8 mice and the association between these two variables. We also studied the association between the amyloid deposition in blood vessels and the recently described amyloid clusters in the parenchyma, as well as the association of these clusters with vessels in which the BBB is disrupted. SAMP8 mice showed greater amyloid deposition in blood vessels than age-matched ICR-CD1 control mice. Moreover, at 12 months of age the number of vessels with a disrupted BBB had increased in both strains, especially SAMP8 animals. At this age, all the vessels with amyloid deposition showed BBB disruption, but several capillaries with an altered BBB showed no amyloid on their walls. Moreover, amyloid clusters showed no spatial association with vessels with amyloid deposition, nor with vessels in which the BBB had been disrupted. Finally, we can conclude that vascular amyloid deposition seems to induce BBB alterations, but BBB disruption may also be due to other factors.
Copyright © 2011 S. Karger AG, Basel.

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Year:  2011        PMID: 21411981     DOI: 10.1159/000324757

Source DB:  PubMed          Journal:  Neurodegener Dis        ISSN: 1660-2854            Impact factor:   2.977


  19 in total

1.  Amyloid and tau pathology of familial Alzheimer's disease APP/PS1 mouse model in a senescence phenotype background (SAMP8).

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2.  Diabetes exacerbates amyloid and neurovascular pathology in aging-accelerated mice.

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Authors:  Sandra Sanchez-Roige; Jaume F Lalanza; María Jesús Alvarez-López; Marta Cosín-Tomás; Christian Griñan-Ferré; Merce Pallàs; Perla Kaliman; Rosa M Escorihuela
Journal:  Age (Dordr)       Date:  2014-08-17

4.  TAT-PEP Enhanced Neurobehavioral Functional Recovery by Facilitating Axonal Regeneration and Corticospinal Tract Projection After Stroke.

Authors:  Bin Deng; Liya Li; Xingchun Gou; Hao Xu; Zhaohua Zhao; Qiang Wang; Lixian Xu
Journal:  Mol Neurobiol       Date:  2016-12-16       Impact factor: 5.590

5.  Early brain injury alters the blood-brain barrier phenotype in parallel with β-amyloid and cognitive changes in adulthood.

Authors:  Viorela Pop; Dane W Sorensen; Joel E Kamper; David O Ajao; M Paul Murphy; Elizabeth Head; Richard E Hartman; Jérôme Badaut
Journal:  J Cereb Blood Flow Metab       Date:  2012-11-14       Impact factor: 6.200

6.  A neurovascular perspective for long-term changes after brain trauma.

Authors:  V Pop; J Badaut
Journal:  Transl Stroke Res       Date:  2011-12-01       Impact factor: 6.829

7.  An In Vitro Model of the Blood-Brain Barrier to Study Alzheimer's Disease: The Role of β-Amyloid and Its Influence on PBMC Infiltration.

Authors:  Simona Federica Spampinato; Yukio Takeshita; Birgit Obermeier
Journal:  Methods Mol Biol       Date:  2022

8.  SPION-enhanced magnetic resonance imaging of Alzheimer's disease plaques in AβPP/PS-1 transgenic mouse brain.

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Review 9.  Vascular cognitive impairment.

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10.  Dietary resveratrol prevents Alzheimer's markers and increases life span in SAMP8.

Authors:  David Porquet; Gemma Casadesús; Sergi Bayod; Alberto Vicente; Anna M Canudas; Jordi Vilaplana; Carme Pelegrí; Coral Sanfeliu; Antoni Camins; Mercè Pallàs; Jaume del Valle
Journal:  Age (Dordr)       Date:  2012-11-07
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