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    Ginsenoside Rf inhibits cyclooxygenase-2 induction via peroxisome proliferatorā€“activated receptor gamma in A549 cells

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    Background: Ginsenoside Rf is a ginseng saponin found only in Panax ginseng that affects lipid metabolism. It also has neuroprotective and antiinflammatory properties. We previously showed that Korean Red Ginseng (KRG) inhibited the expression of cyclooxygenase-2 (COX-2) by hypoxia via peroxisome proliferatorā€“activated receptor gamma (PPARĪ³). The aim of the current study was to evaluate the possibility of ginsenoside Rf as an active ingredient of KRG in the inhibition of hypoxia-induced COX-2 via PPARĪ³. Methods: The effects of ginsenoside Rf on the upregulation of COX-2 by hypoxia and its antimigration effects were evaluated in A549 cells. Docking of ginsenoside Rf was performed with the PPARĪ³ structure using Surflex-Dock in Sybyl-X 2.1.1. Results: PPARĪ³ protein levels and peroxisome proliferator response element promoter activities were promoted by ginsenoside Rf. Inhibition of COX-2 expression by ginsenoside Rf was blocked by the PPARĪ³-specific inhibitor, T0070907. The PPARĪ³ inhibitor also blocked the ability of ginsenoside Rf to suppress cell migration under hypoxia. The docking simulation results indicate that ginsenoside Rf binds to the active site of PPARĪ³. Conclusions: Our results demonstrate that ginsenoside Rf inhibits hypoxia induced-COX-2 expression and cellular migration, which are dependent on PPARĪ³ activation. These results suggest that ginsenoside Rf has an antiinflammatory effect under hypoxic conditions. Moreover, docking analysis of ginsenoside Rf into the active site of PPARĪ³ suggests that the compound binds to PPARĪ³ in a position similar to that of known agonists. Keywords: COX-2, ginsenoside Rf, hypoxia, PPAR
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