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Publication : Scavenger receptor CD36 is essential for the cerebrovascular oxidative stress and neurovascular dysfunction induced by amyloid-beta.

First Author  Park L Year  2011
Journal  Proc Natl Acad Sci U S A Volume  108
Issue  12 Pages  5063-8
PubMed ID  21383152 Mgi Jnum  J:170096
Mgi Id  MGI:4943997 Doi  10.1073/pnas.1015413108
Citation  Park L, et al. (2011) Scavenger receptor CD36 is essential for the cerebrovascular oxidative stress and neurovascular dysfunction induced by amyloid-{beta}. Proc Natl Acad Sci U S A 108(12):5063-8
abstractText  Increasing evidence indicates that cerebrovascular dysfunction plays a pathogenic role in Alzheimer's dementia (AD). Amyloid-beta (Abeta), a peptide central to the pathogenesis of AD, has profound vascular effects mediated, for the most part, by reactive oxygen species produced by the enzyme NADPH oxidase. The mechanisms linking Abeta to NADPH oxidase-dependent vascular oxidative stress have not been identified, however. We report that the scavenger receptor CD36, a membrane glycoprotein that binds Abeta, is essential for the vascular oxidative stress and neurovascular dysfunction induced by Abeta(1-40). Thus, topical application of Abeta(1-40) onto the somatosensory cortex attenuates the increase in cerebral blood flow elicited by neural activity or by endothelium-dependent vasodilators in WT mice but not in CD36-null mice (CD36(0/0)). The cerebrovascular effects of infusion of Abeta(1-40) into cerebral arteries are not observed in mice pretreated with CD36 blocking antibodies or in CD36(0/0) mice. Furthermore, CD36 deficiency prevents the neurovascular dysfunction observed in transgenic mice overexpressing the Swedish mutation of the amyloid precursor protein Tg2576 despite elevated levels of brain Abeta(1-40). CD36 is also required for the vascular oxidative stress induced by exogenous Abeta(1-40) or observed in Tg2576 mice. These observations establish CD36 as a key link between Abeta(1-40) and the NADPH oxidase-dependent vascular oxidative stress underlying the neurovascular dysfunction and suggest that CD36 is a potential therapeutical target to counteract the cerebrovascular dysfunction associated with Abeta.
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