Go Red for Women Gender Influences Cerebral Vascular Responses to Angiotensin II Through Nox2-Derived Reactive Oxygen Species
نویسندگان
چکیده
Background and Purpose—We tested whether gender influences cerebrovascular responses to angiotensin II (AngII) and the role(s) of Nox2. Methods and Results—AngII-stimulated superoxide (O2 ) production by cerebral arteries from male and female wild-type (WT) and Nox2 / mice was measured using lucigeninor L-012–enhanced chemiluminescence. Hydrogen peroxide (H2O2) production was measured using Amplex Red fluorescence. Western Blotting was used to measure expression of Nox2, endothelial nitric oxide synthase (eNOS), angiotensin receptors (AT1 and AT2), and superoxide dismutases (SOD1–3). Immunofluorescence was used to localize Nox2 in middle cerebral arteries (MCA). Vascular responses to AngII were assessed in a perfusion myograph. AngII-stimulated O2 and H2O2 production by cerebral arteries from female WT mice was 75% to 85% lower than in males (P 0.05). O2 production was 60% lower in Nox2 / versus WT males (P 0.05), whereas Nox2 deletion did not affect O2 production in females. Expression of Nox2, eNOS, AT receptors, and SOD isoforms was similar between genders. Nox2 immunofluorescence was similarly localized in adventitial and endothelial cells of MCA from both genders. AngII elicited smaller contractions of MCA from females vs males (P 0.05). Contractions were reduced in male, but not female, Nox2 / mice (P 0.05). The SOD mimetic, tempol, potentiated contractions to AngII in male WT mice (P 0.05), whereas the SOD/catalase mimetic, EUK-134, virtually abolished contractions (P 0.05). Conclusions—AngII-stimulated O2 and H2O2 production are greater in cerebral arteries from male versus female mice, and are associated with greater contractions to AngII mediated by H2O2. These gender differences are dependent on the expression of Nox2. (Stroke. 2009;40:1091-1097.)
منابع مشابه
Gender influences cerebral vascular responses to angiotensin II through Nox2-derived reactive oxygen species.
BACKGROUND AND PURPOSE We tested whether gender influences cerebrovascular responses to angiotensin II (AngII) and the role(s) of Nox2. METHODS AngII-stimulated superoxide (O(2)(-)) production by cerebral arteries from male and female wild-type (WT) and Nox2(-/-) mice was measured using lucigenin- or L-012-enhanced chemiluminescence. Hydrogen peroxide (H(2)O(2)) production was measured using ...
متن کاملDeficiency of Nox2 prevents angiotensin II-induced inward remodeling in cerebral arterioles
Angiotensin II is an important determinant of inward remodeling in cerebral arterioles. Many of the vascular effects of angiotensin II are mediated by reactive oxygen species (ROS) generated from homologs of NADPH oxidase with Nox2 predominating in small arteries and arterioles. Therefore, we tested the hypothesis that superoxide generated by Nox2 plays a role in angiotensin II-induced cerebral...
متن کاملRole of Nox isoforms in angiotensin II-induced oxidative stress and endothelial dysfunction in brain.
Angiotensin II (Ang II) promotes vascular disease through several mechanisms including by producing oxidative stress and endothelial dysfunction. Although multiple potential sources of reactive oxygen species exist, the relative importance of each is unclear, particularly in individual vascular beds. In these experiments, we examined the role of NADPH oxidase (Nox1 and Nox2) in Ang II-induced e...
متن کاملRole of Angiotensin II in Reactive Oxygen Species Production and Modulatory Role of Nitric Oxide (NO) in Vessel Responses to AngII in Acute Joint Inflammation in the Rabbit
Introduction: It has been approved that in most tissues NO production increases during acute inflammation and Angiotensin II has a role in production of reactive oxygen species (ROS). As regulation of joint blood flow (JBF) is important in this situation, this study was performed to investigate the interaction of local Ang II and ROS production and the modulatory role of NO on regulation of JBF...
متن کاملCerebrovascular nitrosative stress mediates neurovascular and endothelial dysfunction induced by angiotensin II.
OBJECTIVE Angiotensin II (AngII) disrupts the regulation of the cerebral circulation through superoxide, a reactive oxygen species (ROS) generated by a nox2-containing NADPH oxidase. We tested the hypothesis that AngII-derived superoxide reacts with nitric oxide (NO) to form peroxynitrite, which, in turn, contributes to the vascular dysfunction. METHODS AND RESULTS Cerebral blood flow (CBF) w...
متن کامل