Arteriosclerosis Thrombosis and Vascular Biology · 2002 · 272 citations · 35 references
Vascular DiseaseLipid PeroxidationCell DeathReactive Oxygen SpeciesRedox BiologyOxidative StressInflammationAbdominal Aortic AneurysmAtherosclerosisBiochemistryVascular BiologyReactive Oxygen SpeciePharmacologyCardiovascular DiseasePhysiologyEndothelial DysfunctionArterial DiseaseMedicineExtracellular Matrix
Abdominal aortic aneurysm (AAA) is an inflammatory disorder characterized by localized connective tissue degradation and smooth muscle cell (SMC) apoptosis, leading to aortic dilatation and rupture. Reactive oxygen species are abundantly produced during inflammatory processes and can stimulate connective tissue-degrading proteases and apoptosis of SMCs. We hypothesized that reactive oxygen species are locally increased in AAA and lead to enhanced oxidative stress. In aortas from patients undergoing surgical repair, superoxide levels (measured by lucigenin-enhanced chemiluminescence) were 2.5-fold higher in the AAA segments compared with the adjacent nonaneurysmal aortic (NA) segments (6638+/-2164 versus 2675+/-1027 relative light units for 5 minutes per millimeter squared, respectively; n=7). Formation of thiobarbituric acid-reactive substances and conjugated dienes, 2 indices of lipid peroxidation, were increased 3-fold in AAA compared with NA segments. Immunostaining for nitrotyrosine was significantly greater in AAA tissue. Dihydroethidium staining indicated that increased superoxide in AAA segments was localized to infiltrating inflammatory cells and to SMCs. Expression of the NADPH oxidase subunits p47(phox) and p22(phox) and NAD(P)H oxidase activity were increased in AAA segments compared with NA segments. Thus, oxidative stress is markedly increased in AAA, in part through the activation of NAD(P)H oxidase, and may contribute to the disease pathogenesis.
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Sanjay Rajagopalan, Santhini Ramasamy, David G. Harrison et al. · Journal of Clinical Investigation · 1996 · 1.1K citations · Full text
The Regulation of Reactive Oxygen Species Production during Programmed Cell Death
Shirlee Tan, Yutaka Sagara, Yuanbin Liu et al. · The Journal of Cell Biology · 1998 · 727 citations · Full text