4.3 Article

Role of Nitric Oxide in Ginsenoside Rg1-Induced Protection against Left Ventricular Hypertrophy Produced by Abdominal Aorta Coarctation in Rats

期刊

BIOLOGICAL & PHARMACEUTICAL BULLETIN
卷 33, 期 4, 页码 631-635

出版社

PHARMACEUTICAL SOC JAPAN
DOI: 10.1248/bpb.33.631

关键词

ginsenoside Rg(1); left ventricular hypertrophy; endothelial nitric oxide synthase; nitric oxide

资金

  1. Higher Education Developing Foundation for Natural Science of Guizhou Province, China [2005110]

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Ginsenoside Rg(1) (Rg(1)), one of the active components of Panax ginseng, has been reported to promote endogenous nitric oxide (NO) production in some tissues, and to inhibit left ventricular (LV) hypertrophy in rats. This study aimed to investigate whether Rg(1)-induced inhibition of rat IN hypertrophy is mediated by NO-production. Rat LV hypertrophy was induced by abdominal aorta coarctation. Rg(1) 15 mg/kg/d, L-arginine 200 mg/kg/d, and the nitric oxide synthase (NOS) inhibitor N-G-nitro-L-arginine-methyl ester (L-NAME) IOU mg/kg/d used with the same dose of L-arginine or Rg(1) were given starting from 1d after surgery for 21 consecutive days. LV hypertrophy was evidenced by determining LV weight and mRNA expression of atrial natriuretic peptide, a marker of cardiac hypertrophic response, as well as by histopathology. Rg(1) and L-arginine administration significantly reduced the elevated LV hypertrophic parameters independent of LV systolic pressure changing, and ameliorated the histopathology of LV myocardium and LV diastolic function. All the beneficial effects of Rg(1) and L-arginine were abolished or blunted by L-NAME. Further to examine the role of NO in Rg(1) inhibition on LV hypertrophy, expression of endothelial NOS was determined at the transcript levels. In our experimental conditions endothelial NOS mRNA expression in LV tissue was lowered by abdominal aorta coarctation, and upregulated by Rg(1) administration. These results demonstrate that Rg(1)-induced protection against LV hypertrophy elicited by abdominal aorta coarctation in rats is mediated, at least in part, via endogenous NO production and release.

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