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β-Cell Glucose Toxicity, Lipotoxicity, and Chronic Oxidative Stress in Type 2 Diabetes

Diabetes · 2004 · Vol. 53(suppl_1) · pp. S119–S124
R. Paul RobertsonJamie S. HarmonPhuong Oanh T. TranVincent Poitout

Abstract

The relentless decline in beta-cell function frequently observed in type 2 diabetic patients, despite optimal drug management, has variously been attributed to glucose toxicity and lipotoxicity. The former theory posits hyperglycemia, an outcome of the disease, as a secondary force that further damages beta-cells. The latter theory suggests that the often-associated defect of hyperlipidemia is a primary cause of beta-cell dysfunction. We review evidence that patients with type 2 diabetes continually undergo oxidative stress, that elevated glucose concentrations increase levels of reactive oxygen species in beta-cells, that islets have intrinsically low antioxidant enzyme defenses, that antioxidant drugs and overexpression of antioxidant enzymes protect beta-cells from glucose toxicity, and that lipotoxicity, to the extent it can be attributable to hyperlipidemia, occurs only in the context of preexisting hyperglycemia, whereas glucose toxicity can occur in the absence of hyperlipidemia.

Pancreatic function and diabetesMetabolism, Diabetes, and CancerDiabetes Management and ResearchLipotoxicityOxidative stressHyperlipidemiaInternal medicineEndocrinologyDiabetes mellitusContext (archaeology)ToxicityAntioxidantBeta cell

MeSH terms

AnimalsDiabetes Mellitus, Type 2HumansHyperglycemiaIslets of LangerhansLipid PeroxidesOxidative StressRats

Funding

  • National Institutes of Health
Citations
907
FWCI
33.69
field-weighted impact
References
60
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100%
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