4.7 Article

Ginsenoside-Rd, a purified component from panax notoginseng saponins, prevents atherosclerosis in apoE knockout mice

Journal

EUROPEAN JOURNAL OF PHARMACOLOGY
Volume 652, Issue 1-3, Pages 104-110

Publisher

ELSEVIER
DOI: 10.1016/j.ejphar.2010.11.017

Keywords

Ginsenoside-Rd; ApoE knockout mice; Atherosclerosis; Macrophage; Store-operated; Receptor-operated; Voltage-independent Ca2+ channels

Funding

  1. National Natural Science Foundation of China [30730105, 30973536, 30900530]
  2. National Basic Research Program of China (973 Program) [2009CB521903]

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Recently, it was revealed that the dysfunction of transmembrane Ca2+ transport, results in an increase in intracellular Ca2+[Ca2+](i), which is involved in the process of atherosclerosis. We previously demonstrated that ginsenoside-Rd, a purified component from panax notoginseng, is a voltage-independent Ca2+ channels blocker. In this study, we investigated the effects of ginsenoside-Rd on atherosclerosis and the underlying mechanisms in apolipoprotein E deficient (apoE(-/-)) mice and RAW264.7 cells. Atherosclerotic plaques were stained by Red oil O staining. Ca2+ influx was measured by Fura-2 dyed Mn2+ quenching. Intracellular cholesterol and uptake of lipid was assayed by enzymatic, fluorometric method and Dil-labeled Ox-LDL. Western blot was used to determine protein expression. We found that Ginsenoside-Rd (20 mg/kg/day. i.p.) significantly reduced the atherosclerotic plaque areas, oxidized low-density lipoprotein (ox-LDL) uptake and thapsigargin and 1-oleoyl-2-acetyl-glycerol (OAG, membrane-permeable diacylglycerol analog)-induced Ca2+ influx in macrophages from high-fat diet apoE(-/-) mice. In vitro, 20 mu M ginsenoside-Rd significantly inhibited ox-LDL-induced foam cell formation and the increase of thapsigargin- and OAG-induced Ca2+ influx. Ox-LDL induced an increase in scavenger receptor A (SR-A) expression, and ginsenoside-Rd inhibited this effect of ox-LDL significantly. The results suggest that ginsenoside-Rd prevents the development of atherosclerosis. The underlying mechanism may be related to the inhibition of Ca2+ influx through voltage-independent Ca2+ channels, resulting in the inhibition of SR-A activity and expression, followed by reductions of ox-LDL uptake and cholesterol accumulation in macrophages. (C) 2010 Elsevier B.V. All rights reserved.

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