International audiencePURPOSE: Low molecular weight carbonyl compounds, such as the alpha-ketoaldehydes methylglyoxal (MGO) and glyoxal (GO), are formed under hyperglycemic conditions and behave as advanced glycation end product (AGE) precursors. They form adducts on proteins, thereby inducing cellular dysfunctions involved in chronic complications of diabetes. METHODS AND MAIN FINDINGS: Nontoxic concentrations of GO or MGO altered the PDGF-induced PDGFRbeta-phosphorylation, ERK1/2-activation, and nuclear translocation, and the subsequent proliferation of mesenchymal cells (smooth muscle cells and skin fibroblasts). This resulted mainly from inhibition of the intrinsic tyrosine kinase of PDGFRbeta and in part from altered PDGF-BB binding to...
OBJECTIVE To study whether modification of LDL by methylglyoxal (MG), a potent arginine-directed gly...
none3Advanced glycation end products (AGEs) are a group of molecules that are generated through non-...
Diabetes impairs physiological angiogenesis by molecular mechanisms that are not fully understood. M...
International audiencePURPOSE: Low molecular weight carbonyl compounds, such as the alpha-ketoaldehy...
The formation and accumulation of methylglyoxal (MGO), a highly reactive dicarbonyl compound, has be...
Diabetes is associated with vascular injury and the onset of macrovascular complications. Advanced g...
The formation and accumulation of advanced glycation endproducts (AGEs) are related to diabetes and ...
Late vascular complications play a prominent role in the diabetes-induced increase in morbidity and ...
The dicarbonyl compound methylglyoxal (MGO) is a major precursor in the formation of advanced glycat...
Background Endothelial dysfunction is one of the key figures in diabetes-related multi-organ damages...
Methylglyoxal (MG), a metabolite of glucose, causes non-enzymatic glycation of proteins to form irre...
The posttranslational modification of macromolecules caused by highly reactive and toxic α-dicarbony...
Diabetes mellitus (DM) is closely related to cardiovascular morbidity and mortality, but the specifi...
AIMS/HYPOTHESIS: Chronic hyperglycaemia aggravates insulin resistance, at least in part, by incre...
Background/Aim: Accumulation of advanced glycation end products (AGEs) is a major cause of diabetes ...
OBJECTIVE To study whether modification of LDL by methylglyoxal (MG), a potent arginine-directed gly...
none3Advanced glycation end products (AGEs) are a group of molecules that are generated through non-...
Diabetes impairs physiological angiogenesis by molecular mechanisms that are not fully understood. M...
International audiencePURPOSE: Low molecular weight carbonyl compounds, such as the alpha-ketoaldehy...
The formation and accumulation of methylglyoxal (MGO), a highly reactive dicarbonyl compound, has be...
Diabetes is associated with vascular injury and the onset of macrovascular complications. Advanced g...
The formation and accumulation of advanced glycation endproducts (AGEs) are related to diabetes and ...
Late vascular complications play a prominent role in the diabetes-induced increase in morbidity and ...
The dicarbonyl compound methylglyoxal (MGO) is a major precursor in the formation of advanced glycat...
Background Endothelial dysfunction is one of the key figures in diabetes-related multi-organ damages...
Methylglyoxal (MG), a metabolite of glucose, causes non-enzymatic glycation of proteins to form irre...
The posttranslational modification of macromolecules caused by highly reactive and toxic α-dicarbony...
Diabetes mellitus (DM) is closely related to cardiovascular morbidity and mortality, but the specifi...
AIMS/HYPOTHESIS: Chronic hyperglycaemia aggravates insulin resistance, at least in part, by incre...
Background/Aim: Accumulation of advanced glycation end products (AGEs) is a major cause of diabetes ...
OBJECTIVE To study whether modification of LDL by methylglyoxal (MG), a potent arginine-directed gly...
none3Advanced glycation end products (AGEs) are a group of molecules that are generated through non-...
Diabetes impairs physiological angiogenesis by molecular mechanisms that are not fully understood. M...