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October 14, 2003Circulation Research412 citationsOpen Access

Contrasting Roles of NADPH Oxidase Isoforms in Pressure-Overload Versus Angiotensin II–Induced Cardiac Hypertrophy

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JBJonathan ByrneDGDavid GrieveJBJennifer K. Bendall

Key Points

  • The study aims to explore the roles of NADPH oxidase isoforms in left ventricular hypertrophy induced by pressure overload and angiotensin II.
  • Used gp91phox-/- mice and controls for chronic Ang II infusion or aortic constriction.

Structured PICO

Does gp91phox deficiency or N-acetyl-cysteine prevent Ang II-induced or pressure-overload-induced cardiac hypertrophy in mice?

P
Population
gp91phox-/- mice and matched wild-type controls
I
Intervention
Chronic Angiotensin II (Ang II) infusion, aortic constriction, or N-acetyl-cysteine
C
Comparator
Matched wild-type controls
O
Outcome
NADPH oxidase activity, atrial natriuretic factor (ANF) expression, and cardiac masssurrogate

Different NADPH oxidase isoforms mediate cardiac hypertrophy depending on the stimulus, with gp91phox mediating Ang II-induced LVH and Nox4 potentially mediating pressure-overload LVH.

Abstract

Increased production of reactive oxygen species (ROS) is implicated in the development of left ventricular hypertrophy (LVH). Phagocyte-type NADPH oxidases are major cardiovascular sources of ROS, and recent data indicate a pivotal role of a gp91phox-containing NADPH oxidase in angiotensin II (Ang II)-induced LVH. We investigated the role of this oxidase in pressure-overload LVH. gp91phox-/- mice and matched controls underwent chronic Ang II infusion or aortic constriction. Ang II-induced increases in NADPH oxidase activity, atrial natriuretic factor (ANF) expression, and cardiac mass were inhibited in gp91phox-/- mice, whereas aortic constriction-induced increases in cardiac mass and ANF expression were not inhibited. However, aortic constriction increased cardiac NADPH oxidase activity in both gp91phox-/- and wild-type mice. Myocardial expression of an alternative gp91phox isoform, Nox4, was upregulated after aortic constriction in gp91phox-/- mice. The antioxidant, N-acetyl-cysteine, inhibited pressure-overload-induced LVH in both gp91phox-/- and wild-type mice. These data suggest a differential response of the cardiac Nox isoforms, gp91phox and Nox4, to Ang II versus pressure overload.

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Cite This Study

Byrne et al. (2003) studied this question.

synapsesocial.com/papers/6a1e34c960864841a668a1bdhttps://doi.org/10.1161/01.res.0000099504.30207.f5
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