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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/23810
Title: Carnosic acid induces the NAD(P)H: quinone oxidoreductase 1 expression in rat clone 9 cells through the p38/nuclear factor erythroid-2 related factor 2 pathway
Authors: Tsai, Chia-Wen
Lin, Chia-Yuan 
Wang, Yu-Jung
Keywords: GLUTATHIONE-S-TRANSFERASE;ANTIOXIDANT-RESPONSIVE ELEMENT;NRF2 TRANSCRIPTION FACTOR;DNA ADDUCT FORMATION;ALPHA-LIPOIC ACID;SIGNALING PATHWAY;ROSMARINUS-OFFICINALIS;MAMMARY TUMORIGENESIS;HEME OXYGENASE-1;UP-REGULATION
Issue Date: Dec-2011
Publisher: OXFORD UNIV PRESS
Journal Volume: 141
Journal Issue: 12
Start page/Pages: 2119-2125
Source: The Journal of nutrition
Abstract: 
The anticarcinogenic effect of rosemary has been partly attributed to the modulation of the activity and expression of phase II detoxification enzymes. Here we compared the effects of phenolic diterpenes from rosemary on the expression of NAD(P)H: quinone oxidoreductase 1 (NQO1) in rat Clone 9 liver cells. Cells were treated with 1-20 μmol/L of carnosic acid (CA) or carnosol (CS) for 24 h. Both CA and CS dose dependently increased NQO1 enzyme activity and protein expression, and the induction potency of CA was stronger than that of CS. The increase in NQO1 enzyme activity in cells treated with 10 μmol/L CA and CS was 4.1- and 1.9-fold, respectively (P < 0.05). RT-PCR showed that CA and CS induced NQO1 mRNA in a dose-dependent manner. Furthermore, CA dose dependently induced transcription of nuclear factor erythroid-2 related factor 2 (Nrf2) and antioxidant response element (ARE)-luciferase reporter activity. Silencing of Nrf2 expression alleviated NQO1 protein expression and ARE-luciferase activity by CA. Moreover, the phosphorylation of p38 was mainly stimulated in the presence of CA. Pretreatment with SB203580 or silencing of p38 expression inhibited Nrf2 activation and NQO1 induction. These results suggest that the increased NQO1 expression by CA is likely related to the p38-Nrf2 pathway and help to clarify the possible molecular mechanism of action of rosemary phenolic compounds in drug metabolism and cancer prevention.
URI: http://scholars.ntou.edu.tw/handle/123456789/23810
ISSN: 00223166
DOI: 10.3945/jn.111.146779
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