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AGEs and their interaction with AGE-receptors in vascular disease and diabetes mellitus. I. The AGE concept
Cardiovascular Research · 1998 · Vol. 37(3) · pp. 586–600
Angelika Bierhaus✉(Heidelberg University)
Abstract
AGEs elicit a wide range of cell-mediated responses that might contribute to the pathogenesis of diabetic complications, vascular and renal disease and Alzheimer's disease. Substances that inhibit AGE formation, reduce oxidative stress or destroy already formed crosslinks may limit the progression of disease and may offer new tools for therapeutic interventions in the therapy of AGEs mediated disease.
Advanced Glycation End Products researchNatural Antidiabetic Agents StudiesBiochemical effects in animalsGlycationDiabetes mellitusOxidative stressDiseaseAgeingMedicinePathogenesisReceptorIn vivoChemistry
MeSH terms
Diabetes MellitusEndothelium, VascularGlucoseHumansVascular DiseasesLipid PeroxidationMaillard ReactionGlycation End Products, Advanced
Citations
554
FWCI
12.78
field-weighted impact
References
157
Percentile
99%
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Citations per year
Cited by
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References
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Biochemical Journal · 1987 · 1,271 citations
Alpha-lipoic acid as a biological antioxidant
Free Radical Biology and Medicine · 1995 · 1,954 citations
Protein glycation and oxidative stress in diabetes mellitus and ageing
Free Radical Biology and Medicine · 1991 · 884 citations
Role of Oxidative Stress in Development of Complications in Diabetes
Diabetes · 1991 · 3,704 citations
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