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Fisetin lowers methylglyoxal dependent protein glycation and limits the complications of diabetes.

PLoS One.. 2011-06;  6(6):e21226
Maher P, Dargusch R, Ehren JL, Okada S, Sharma K, Schubert D. Cellular Neurobiology Laboratory, The Salk Institute for Biological Studies, La Jolla, California, United States of America
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摘要

The elevated glycation of macromolecules by the reactive dicarbonyl and α-oxoaldehyde methylglyoxal (MG) has been associated with diabetes and its complications. We have identified a rare flavone, fisetin, which increases the level and activity of glyoxalase 1, the enzyme required for the removal of MG, as well as the synthesis of its essential co-factor, glutathione. It is shown that fisetin reduces two major complications of diabetes in Akita mice, a model of type 1 diabetes. Although fisetin had no effect on the elevation of blood sugar, it reduced kidney hypertrophy and albuminuria and maintained normal levels of locomotion in the open field test. This correlated with a reduction in proteins glycated ... More

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