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The tandem of free radicals and methylglyoxal
Authors:Kalapos Miklós Péter
Institution:Theoretical Biology Research Group, Budapest, Hungary. MKalapos@Freestart.Hu
Abstract:Methylglyoxal is an alpha-oxoaldehyde inevitably produced from triose-phosphate intermediates of phosphorylating glycolysis, and also from amino acids and acetone. Recently, the attention has been focused on the involvement of free radicals in methylglyoxal toxicity. In this review, a summary of the relationship between methylglyoxal metabolism and free radical production is presented, extending discussion from the possible metabolic routes to the toxicological events by reviewing the role of free radicals in both generation and degradation of this 1,2-dicarbonyl as well as in the modification of biological macromolecules, and focusing on the action of methylglyoxal upon cellular glutathione content. Methylglyoxal-provoked free radical generation involving reactive oxygen species (ROS), reactive nitrogen species (RNS) as well as organic radicals like methylglyoxal radial or crosslinked protein radical as potential risk factors to tissue damage propagation, is thoroughly discussed. Special attention is paid to the potential therapeutic interventions. The paper arrives at the conclusion that a tight junction exists between methylglyoxal toxicity and free radical (particularly ROS) generation, though the toxicity of 1,2-dicarbonyl evolves even under anaerobic conditions, too. The events follow a sequence beginning with carbonyl stress essential for the toxicity, leading to free radical formation and finally ending in either apoptosis or necrosis. Both oxidative and nitrosative stress play important but not indispensable role in the development of methylglyoxal toxicity.
Keywords:AG  aminoguanidine  AGE  advanced glycation end-product  ASK1  apoptosis signal-regulating kinase 1  BSA  bovine serum albumin  ATP  adenosine triphosphate  BSO  butionine sulfoximine  CYP2E1  cytochrome P450 2E1  DCFH-DA  5-(and 6)-carboxy-2′  7′-dichlorodihydrofluorescein-diacetate  DDC  diethyldithiocarbamate  DMSO  dimethyl sulfoxide  DPI  diphenylene iodonium  EDTA  ethylenediamine-tetraacetic acid  EPR  electron paramagnetic resonance  ESR  electron spin resonance  GSH  reduced glutathione  GSSG  oxidized glutathione  IDDM  insulin-dependent diabetes mellitus  NAC  N-acetyl-cysteine  l-NAME" target="_blank">l-NAME  nitro-arginine-methylester  NIDDM  non-insulin-dependent diabetes mellitus  NO  nitric oxide  PAGE  polyacrylamide gel electrophoresis  RNS  reactive nitrogen species  ROS  reactive oxygen species  SGPT  serum glutamate pyruvate transaminase  SOD  superoxide dismutase  SSAO  semicarbazide-sensitive amine oxidase  VSMC  vascular smooth muscle cell
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