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PMID: 16230485 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, U.S. Gov't, P.H.S.

Nox1 overexpression potentiates angiotensin II-induced hypertension and vascular smooth muscle hypertrophy in transgenic mice.

Circulation ·Vol. 112 ·No. 17 ·2005-10-25 ·Pages 2668-76

Dikalova A, Clempus R, Lassègue B, Cheng G, McCoy J, Dikalov S, San Martin A, Lyle A, Weber DS, Weiss D, Taylor WR, Schmidt HH, Owens GK, Lambeth JD, Griendling KK

Abstract

Reactive oxygen species (ROS) have been implicated in the development of cardiovascular pathologies. NAD(P)H oxidases (Noxes) are major sources of reactive oxygen species in the vessel wall, but the importance of individual Nox homologues in specific layers of the vascular wall is unclear. Nox1 upregulation has been implicated in cardiovascular pathologies such as hypertension and restenosis. To investigate the pathological role of Nox1 upregulation in vascular smooth muscle, transgenic mice overexpressing Nox1 in smooth muscle cells (TgSMCnox1) were created, and the impact of Nox1 upregulation on the medial hypertrophic response during angiotensin II (Ang II)-induced hypertension was studied. These mice have increased expression of Nox1 protein in the vasculature, which is accompanied by increased superoxide production. Infusion of Ang II (0.7 mg/kg per day) into these mice for 2 weeks led to a potentiation of superoxide production compared with similarly treated negative littermate controls. Systolic blood pressure and aortic hypertrophy were also markedly greater in TgSMCnox1 mice than in their littermate controls. To confirm that this potentiation of vascular hypertrophy and hypertension was due to increased ROS formation, additional groups of mice were coinfused with the antioxidant Tempol. Tempol decreased the level of Ang II-induced aortic superoxide production and partially reversed the hypertrophic and hypertensive responses in these animals. These data indicate that smooth muscle-specific Nox1 overexpression augments the oxidative, pressor, and hypertrophic responses to Ang II, supporting the concept that medial Nox1 participates in the development of cardiovascular pathologies.

MeSH Terms
Angiotensin II/pharmacology Animals Genes, Reporter Green Fluorescent Proteins/genetics Humans Hypertension/genetics,physiopathology Hypertrophy Mice Mice, Transgenic Muscle, Smooth, Vascular/pathology NADPH Oxidase 1 NADPH Oxidases/genetics
Chemicals
Angiotensin II Green Fluorescent Proteins NADPH Oxidase 1 NADPH Oxidases NOX1 protein, human
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Dikalova Anna
Division of Cardiology, Emory University, Atlanta, GA 30322, USA.
Clempus Roza
Lassègue Bernard
Cheng Guangjie
McCoy James
Dikalov Sergey
San Martin Alejandra
Lyle Alicia
Weber David S
Weiss Daiana
Taylor W Robert
Schmidt Harald H H W
Owens Gary K
Lambeth J David
Griendling Kathy K
Article Info
Journal
Circulation
Abbr.
Circulation
ISSN
1524-4539
Published
2005-10-25
Epub
2005-00-17
Pages
2668-76
Language
English
Region
United States
NLM ID
0147763
Subset
IM
Grants
NCI NIH HHS · CA84138 · United States
NHLBI NIH HHS · HL38206 · United States
NHLBI NIH HHS · HL38854 · United States
NHLBI NIH HHS · HL57353 · United States
NHLBI NIH HHS · HL58000 · United States
Corrections
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