Antioxidants and Redox Signaling · 2009 · 64 citations · 35 references
HyperlipidemiaEr StressEndoplasmic Reticulum StressOxidative StressInflammationMetabolic SyndromeHyperglycaemic Mouse ModelAutophagyMicrovascular DysfunctionAtherosclerosisDyslipidemiaHealth SciencesVascular BiologyCell BiologyPhysiologyDiabetesEndothelial DysfunctionHyperglycemia-associated Er StressEr-stress SignalingHyperglycemiaMedicine
We previously observed a correlation between elevated levels of vascular endoplasmic reticulum (ER) stress and accelerated atherosclerotic plaque development in chronically hyperglycemic apolipoprotein-deficient (ApoE(-/-)) mice. We hypothesize that ER stress plays a causative role in diabetic atherogenesis. Here we examine the temporal relation between the onset of hyperglycemia, glucosamine accumulation in the vessel wall, ER stress, and the development of atherosclerosis. We demonstrate, by using streptozotocin-induced hyperglycemic ApoE(-/-) mice, that conditions of hyperglycemia increase intracellular glucosamine levels and endothelial ER stress levels in the endothelium before the onset of atherosclerosis. At 15 weeks of age, hyperglycemic mice have significantly larger atherosclerotic lesions (0.120 +/- 0.023 vs. 0.065 +/- 0.021 mm2; p = 0.001) relative to normoglycemic mice. Significantly, hyperglycemia-associated accelerated atherosclerosis is observed before the onset of dyslipidemias, suggesting that leveled glucose is sufficient to promote atherogenesis independently. Diagnostic markers of elevated ER-stress levels are increased in macrophage-derived foam cells in early and advanced atherosclerotic lesions. Dietary supplementation with valproate, a small branched-chain fatty acid that interferes with ER-stress signaling, significantly attenuates accelerated atherogenesis in this model. Together, these data are consistent with a causative role for hyperglycemia-associated ER stress in the development and progression of diabetic atherosclerosis.
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Diabetes and cardiovascular disease. The Framingham study
William B. Kannel · JAMA · 1979 · 4K citations
Heart Failure, Coronary Artery Disease, Metabolic Syndrome +18
Endoplasmic Reticulum Stress Links Obesity, Insulin Action, and Type 2 Diabetes
Umut Özcan, Qiong Cao, Erkan Yılmaz et al. · Science · 2004 · 3.8K citations