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Oxidative Stress and Stress-Activated Signaling Pathways: A Unifying Hypothesis of Type 2 Diabetes

Endocrine Reviews · 2002 · Vol. 23(5) · pp. 599–622
Joseph L. EvansIra D. GoldfineBetty A. MadduxGerold M. Grodsky

Abstract

In both type 1 and type 2 diabetes, the late diabetic complications in nerve, vascular endothelium, and kidney arise from chronic elevations of glucose and possibly other metabolites including free fatty acids (FFA). Recent evidence suggests that common stress-activated signaling pathways such as nuclear factor-kappaB, p38 MAPK, and NH2-terminal Jun kinases/stress-activated protein kinases underlie the development of these late diabetic complications. In addition, in type 2 diabetes, there is evidence that the activation of these same stress pathways by glucose and possibly FFA leads to both insulin resistance and impaired insulin secretion. Thus, we propose a unifying hypothesis whereby hyperglycemia and FFA-induced activation of the nuclear factor-kappaB, p38 MAPK, and NH2-terminal Jun kinases/stress-activated protein kinases stress pathways, along with the activation of the advanced glycosylation end-products/receptor for advanced glycosylation end-products, protein kinase C, and sorbitol stress pathways, plays a key role in causing late complications in type 1 and type 2 diabetes, along with insulin resistance and impaired insulin secretion in type 2 diabetes. Studies with antioxidants such as vitamin E, alpha-lipoic acid, and N-acetylcysteine suggest that new strategies may become available to treat these conditions.

Biochemical Acid Research StudiesAdipose Tissue and MetabolismAdvanced Glycation End Products researchInsulin resistanceType 2 diabetesEndocrinologyKinaseAdvanced glycation end-productp38 mitogen-activated protein kinasesInternal medicineOxidative stressInsulin receptorSignal transduction

MeSH terms

AnimalsAntioxidantsDiabetes Mellitus, Type 2HumansHyperglycemiaInsulin ResistanceIslets of LangerhansLymphokinesSignal TransductionEndothelial Growth FactorsNF-kappa BReactive Oxygen SpeciesOxidative StressMitogen-Activated Protein KinasesIntercellular Signaling Peptides and Proteins
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References
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Alpha-lipoic acid as a biological antioxidant
Free Radical Biology and Medicine · 1995 · 1,954 citations
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Journal of Clinical Investigation · 1994 · 3,471 citations
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