Resveratrol prevents hypertension and cardiac hypertrophy in hypertensive rats and mice

https://doi.org/10.1016/j.bbadis.2013.05.018Get rights and content
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Highlights

  • It is not clear if resveratrol is an anti-hypertensive agent.

  • We show that resveratrol reduces oxidative stress and vascular dysfunction.

  • A vascular LKB1/AMPK/eNOS signaling cascade appears to be involved.

  • Resveratrol is anti-hypertensive in two rodent models of hypertension.

Abstract

Resveratrol (RESV) is a polyphenol with pleiotropic effects that include reduction of oxidative stress and increased vascular nitric oxide (NO) production. However, whether or not RESV can prevent rises in blood pressure (BP) is controversial and remains to be firmly established. The purpose of this study was to determine whether RESV attenuates elevated BP and subsequent adaptive cardiac hypertrophy and to better understand the mechanisms involved. The spontaneously hypertensive rat (SHR) and the angiotensin (Ang)-II infused mouse were used as hypertensive models. Compared to a standard control diet, consumption of diets containing RESV by SHRs and Ang-II hypertensive mice, markedly prevented rises in systolic BP. In addition, flow-mediated vasodilation was significantly improved by RESV in SHRs. RESV also reduced serum and cardiac levels of the lipid peroxidation by-product, 4-hydroxy-2-nonenal in the hypertensive rodents and inhibited the production of superoxide in human-derived endothelial cells. Analysis of mesenteric arteries from SHRs and Ang-II infused mice demonstrated that RESV increased endothelial NO synthase (eNOS) phosphorylation by enhancing the LKB1/adenosine monophosphate (AMP)-activated protein kinase (AMPK) signal transduction pathway. Moreover, RESV reduced hypertrophic growth of the myocardium through reduced hemodynamic load and inhibition of the p70 S6 kinase pro-hypertrophic signaling cascade. Overall, we show that high dose RESV reduces oxidative stress, improves vascular function, attenuates high BP and prevents cardiac hypertrophy through the preservation of the LKB1–AMPK–eNOS signaling axis.

Abbreviations

AMPK
AMP-activated protein kinase
Ang-II
angiotensin-II
BP
blood pressure
eNOS
endothelial nitric oxide synthase
HNE
4-hydroxy-2-nonenal
HUVEC
human umbilical vein endothelial cell
HW/TL
heart weight/tibia length
IVRT
intraventricular relaxation time
IVS
intraventricular septum
LV
left ventricular
LVEF
LV ejection fraction
LVPW
LV posterior wall
NO
nitric oxide
RESV
resveratrol
ROS
reactive oxygen species
SHR
spontaneously hypertensive rat

Keywords

Resveratrol
Left ventricular hypertrophy
Hypertension
Signal transduction
Lipid peroxide
Nitric oxide

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