25-OCH3-PPD induces the apoptosis of activated t-HSC/Cl-6 cells via c-FLIP-mediated NF-κB activation.

Keywords
  • Panax ginseng
  • Panax notoginseng
  • actin
  • antioxidant activity
  • apoptosis
  • caspase-3
  • cell viability
  • fibrosis
  • hepatocytes
  • humans
  • leaves
  • muscles
  • necrosis
  • roots
  • seeds
  • signal transduction
  • therapeutics
  • transcription factor NF-kappa B
  • transforming growth factor beta 1
  • triterpenoids
  • tumor necrosis factor-alpha
Publication Dbxref
PMID:21924252
Title
25-OCH3-PPD induces the apoptosis of activated t-HSC/Cl-6 cells via c-FLIP-mediated NF-κB activation.
Publication Type
Journal Article
Additional Publication Type(s)
Research Support, Non-U.S. Gov't
Series Name
Chemico-biological interactions
Volume
194
Publication Year
2011
Issue
2-3
Page Numbers
106-12
DOI
10.1016/j.cbi.2011.08.010
Journal Abbreviation
Chem Biol Interact
EISSN
1872-7786
Publication Date
2011 Nov 15
Citation
Wu YL, Wan Y, Jin XJ, OuYang BQ, Bai T, Zhao YQ, Nan JX. 25-OCH3-PPD induces the apoptosis of activated t-HSC/Cl-6 cells via c-FLIP-mediated NF-κB activation.. Chemico-biological interactions. 2011 Nov 15; 194(2-3):106-12.
ISSN
1872-7786
Language Abbr
eng
Publication Model
Print-Electronic
Authors
Wu YL, Wan Y, Jin XJ, OuYang BQ, Bai T, Zhao YQ, Nan JX
Language
English
Elocation
10.1016/j.cbi.2011.08.010
Journal Country
Ireland
Abstract

25-OCH(3)-PPD is a dammarane-type triterpene sapogenin isolated from the roots, leaves and seeds of Panax notoginseng, which has shown anti-tumor effects in several human cancer lines. In this study, we evaluated the effects of 25-OCH(3)-PPD on apoptosis of activated t-HSC/Cl-6 cells induced by tumor necrosis factor-α (TNF-α). The inhibitory effects of eleven compounds isolated from Panax ginseng and P. notoginseng were detected in activated t-HSC/Cl-6 cells. 25-OCH(3)-PPD produced a significant inhibitory effect on activated t-HSC/Cl-6 cells. However, 25-OCH(3)-PPD showed almost no effect on the cell viability of Chang liver cells, a type of normal human hepatic cell line. Therefore, we aimed to determine the anti-fibrotic potential of 25-OCH(3)-PPD and to characterize the signal transduction pathways involved in activated HSCs. 25-OCH(3)-PPD decreased the fibrosis markers, including α-smooth muscle actin (α-SMA), transforming growth factor β-1 (TGF-β1) and tissue inhibitors of metalloproteinases-1 (TIMP-1). 25-OCH(3)-PPD elevated the level of cellular GSH in activated HSCs, which demonstrated that 25-OCH(3)-PPD might inhibit HSC activation by its antioxidant capacity. Further analyses revealed that 25-OCH(3)-PPD increased the levels of cleaved caspase-3, decreased the ratio of Bcl-2/Bax and the expression of survivin via c-FLIP-mediated NF-κB activation and shed light on the regulation of apoptosis. Therefore, 25-OCH(3)-PPD may prove to be an excellent candidate agent for the therapy of hepatic fibrosis.

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