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EDITORIAL BOARD 2026-20-1
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Case Report
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EDITORIAL BOARD 2026-20-1
Editorial I
Editorial II
Original Article
Review
Review Article
Systematic Review
Systematic Review and Meta-Analysis
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Original Article
10 (
2
); 261-277

Prevention of non-enzymatic glycosylation (glycation): Implication in the treatment of diabetic complication

Licence
This is an open-access article distributed under the terms of the Creative Commons Attribution-Non Commercial-Share Alike 4.0 License, which allows others to remix, transform, and build upon the work non-commercially, as long as the author is credited and the new creations are licensed under the identical terms.
Disclaimer:
This article was originally published by Qassim University and was migrated to Scientific Scholar after the change of Publisher.

Abstract

Non-enzymatic glycosylation (glycation) plays an important role in the development of physiological and pathophysiological processes such as aging, diabetes, atherosclerosis, neurodegenerative diseases and chronic renal failure. Preventing glycation can minimize diabetic complications. Glycation can be prevented by the natural defence system in the body, synthetic inhibitors and natural inhibitors. Synthetic inhibitors may prevent glycation through several possible mechanisms. They might inhibit the glycation by interfering with the attachment of sugars with proteins, by inhibiting the late stage of glycation or by preventing Amadori product formation. Furthermore, their ability to scavenge free radicals and to break cross-links might be other mechanisms responsible for their potential to inhibit glycation. Naturally occurring phytochemicals/products have been found to be relatively non-toxic as compared to synthetic compounds, and are inexpensive and available in an ingestible form. A large number of plants and natural biomolecules have been shown to have antidiabetic effects. Several hypoglycaemic compounds have anti-oxidant properties. The present review describes the various ways in which glycation can be prevented.

Keywords

Glycation
diabetic complications
natural defence system
synthetic inhibitors
natural inhibitors Abbreviations: AGEs
advanced glycation end products; ROS
reactive oxygen species; GSH
gluthathione; MG
methyglyoxal; RNS
reactive nitrogen species; AG
aminoguanidine; ARIs
Aldose reductase inhibitors

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