Role of superoxide anion in regulating pressor and vascular hypertrophic response to angiotensin II

HD Wang, DG Johns, S Xu… - American Journal of …, 2002 - journals.physiology.org
HD Wang, DG Johns, S Xu, RA Cohen
American Journal of Physiology-Heart and Circulatory Physiology, 2002journals.physiology.org
Our purpose was to address the role of NAPDH oxidase-derived superoxide anion in the
vascular response to ANG II. Blood pressure, aortic superoxide anion, 3-nitrotyrosine, and
medial cross-sectional area were compared in wild-type mice and in mice that overexpress
human superoxide dismutase (hSOD). The pressor response to ANG II was significantly less
in hSOD mice. Superoxide anion levels were increased twofold in ANG II-treated wild-type
mice but not in hSOD mice. 3-Nitrotyrosine increased in aortic endothelium and adventitia in …
Our purpose was to address the role of NAPDH oxidase-derived superoxide anion in the vascular response to ANG II. Blood pressure, aortic superoxide anion, 3-nitrotyrosine, and medial cross-sectional area were compared in wild-type mice and in mice that overexpress human superoxide dismutase (hSOD). The pressor response to ANG II was significantly less in hSOD mice. Superoxide anion levels were increased twofold in ANG II-treated wild-type mice but not in hSOD mice. 3-Nitrotyrosine increased in aortic endothelium and adventitia in wild-type but not hSOD mice. In contrast, aortic medial cross-sectional area increased 50% with ANG II in hSOD mice, comparable to wild-type mice. The lower pressor response to ANG II in the mice expressing hSOD is consistent with a pressor role of superoxide anion in wild-type mice, most likely because it reacts with nitric oxide. Despite preventing the increase in superoxide anion and 3-nitrotyrosine, the aortic hypertrophic response to ANG II in vivo was unaffected by hSOD.
American Physiological Society