Metabolic brain imaging is widely used to evaluate brain function and disease, and quantitative assays require local retention of compounds used to register changes in cellular activity. As labeled metabolites of 1-and 6-14 Cglucose are rapidly released in large quantities during brain activation, this study evaluated release of metabolites and proteins through perivascular fluid flow, a pathway that carries solutes from brain to peripheral lymphatic drainage sites. Assays with 3,4-14 Cglucose ruled out local oxidation of glucose-derived lactate as a major contributor of label loss. Brief infusion of 1-14 Cglucose and D-14 Clactate into the inferior colliculus of conscious rats during acoustic stimulation labeled the meninges, consistent with perivascular clearance of 14 Cmetabolites from interstitial fluid. Microinfusion of Evans blue albumin and amyloid-Β 140 (AΒ) caused perivascular labeling in the inferior colliculus, labeled the surrounding meninges, and AΒ-labeled-specific blood vessels in the caudate and olfactory bulb and was deposited in cervical lymph nodes. Efflux of extracellular glucose, lactate, and AΒ into perivascular fluid pathways is a normal route for clearance of material from the inferior colliculus that contributes to underestimates of brain energetics. Convergence of watershed drainage to common pathways may facilitate perivascular amyloid plaque formation and pathway obstruction in Alzheimer's disease. © 2010 ISCBFM All rights reserved.
CITATION STYLE
Ball, K. K., Cruz, N. F., Mrak, R. E., & Dienel, G. A. (2010). Trafficking of glucose, lactate, and amyloid-Β from the inferior colliculus through perivascular routes. Journal of Cerebral Blood Flow and Metabolism, 30(1), 162–176. https://doi.org/10.1038/jcbfm.2009.206
Mendeley helps you to discover research relevant for your work.