aldosterone induces oxidative stress via nadph oxidase and downregulates the endothelial no synthesase in human endothelial cells
نویسندگان
چکیده
aldosterone is traditionally viewed as a hormone regulating electrolyte and blood pressure homeostasis. recent studies suggest that aldo can cause microvascular damage, oxidative stress and endothelial dysfunction. however, its exact cellular mechanisms remain obscure. this study was undertaken to examine the effect of aldo on superoxide production in human umbilical artery endothelial cells (huaecs) . moreover we attempted to investigate possible roles of nadph oxiadse isoforms nox2 and nox4 as well as p47phox and p22phox subunits. in addition, we examine how aldo regulates endothelial no synthase [1] in these settings. huaecs were incubated for 2h hours [2] with aldo 10 –7 mol/l . nadph oxidase expression and activity were estimated by lucigenin-enhanced chemiluminescence . moreover, enos expression was also determined. the present results showed that stimulation of huaecs with aldo (10–7 mol/l) resulted in a significant upregulation in each of nox2, p47 phox and p22 phox protein levels, whose effects were abolished by the mineralcorticod receptor antagonist spironolactone [3] . however, aldo did not exhibit any significant change in nox4 protein level. functionally, these effect were reflected on increased oxidative stress markers as evidenced by increased nadph oxidase activity and superoxide production in addition to 3-nitrotyrosine (3-nt). aldo-induced increased in superoxide production and nitrosative stress were inhibited by spiro. on the other hand, aldo significantly inhibited enos protein expression and pretreatment with spiro restored enos to normal level. taken together, the present results demonstrate that aldo induces oxidative ? nitrosative via mr receptor-mediated activation of the nadph-oxidase isoform nox2 and downregulates enos in huaecs.
منابع مشابه
Aldosterone Induces Oxidative Stress Via NADPH Oxidase and Downregulates the Endothelial NO Synthesase in Human Endothelial Cells
Aldosterone is traditionally viewed as a hormone regulating electrolyte and blood pressure homeostasis. Recent studies suggest that Aldo can cause microvascular damage, oxidative stress and endothelial dysfunction. However, its exact cellular mechanisms remain obscure. This study was undertaken to examine the effect of Aldo on superoxide production in human umbilical artery endothelial cel...
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Accumulating evidence indicates that aldosterone plays a critical role in the mediation of oxidative stress and vascular damage. NADPH oxidase has been recognized as a major source of oxidative stress in vasculature. However, the relation between NADPH oxidase in aldosterone-mediated oxidative stress in endothelial cells remains to be ascertained. The present study aimed to investigate the rel...
متن کاملSpironolactone Inhibits NADPH Oxidase-Mediated Oxidative Stress and Dysregulation of the Endothelial NO Synthase in Human Endothelial Cells
Accumulating evidence indicates that aldosterone plays a critical role in the mediation of oxidative stress and vascular damage. NADPH oxidase has been recognized as a major source of oxidative stress in vasculature. However, the relation between NADPH oxidase in aldosterone-mediated oxidative stress in endothelial cells remains to be ascertained. The present study aimed to investigate the rel...
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accumulating evidence indicates that aldosterone plays a critical role in the mediation of oxidative stress and vascular damage. nadph oxidase has been recognized as a major source of oxidative stress in vasculature. however, the relation between nadph oxidase in aldosterone-mediated oxidative stress in endothelial cells remains to be ascertained. the present study aimed to investigate the rele...
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Accumulating evidence indicates that aldosterone plays a critical role in the mediation of oxidative stress and vascular damage. NADPH oxidase has been recognized as a major source of oxidative stress in vasculature. However, the relation between NADPH oxidase in aldosterone-mediated oxidative stress in endothelial cells remains to be ascertained. The present study aimed to investigate the rele...
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عنوان ژورنال:
iranian journal of pharmacology and therapeuticsجلد ۹، شماره ۲، صفحات ۸۹-۰
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