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The activation of HO-1/Nrf-2 contributes to the protective effects of diallyl disulfide (DADS) against ethanol-induced oxidative stress
Authors:Tao Zeng  Cui-Li Zhang  Fu-Yong SongXiu-Lan Zhao  Li-Hua YuZhen-Ping Zhu  Ke-Qin Xie
Institution:Institute of Toxicology, School of Public Health, Shandong University, 44 Wenhua West Road, Shandong Province, Jinan City 250012, People''s Republic of China
Abstract:

Background

Diallyl disulfide (DADS) is a garlic-derived organosulfur compound. The current study is designed to evaluate the protective effects of DADS against ethanol-induced oxidative stress, and to explore the underlying mechanisms by examining the HO-1/Nrf-2 pathway.

Methods

We investigated whether or not DADS could activate the HO-1 in normal human liver cell LO2, and then evaluated the protective effects of DADS against ethanol-induced damage in LO2 cells and in acute ethanol-intoxicated mice. The biochemical parameters were measured using commercial kits. HO-1 mRNA level was determined by RT-PCR. Histopathology and immunofluorescence assay were performed with routine methods. Protein levels were measured by western blot.

Results

DADS significantly increased the mRNA and protein levels of HO-1, stimulated the nuclear translocation of Nrf-2 and increased the phosphorylation of MAPK in LO2 cells. The nuclear translocation of Nrf-2 was abrogated by MAPK inhibitors. DADS significantly suppressed ethanol-induced elevation of lactate dehydrogenase (LDH) and aspartate transaminase (AST) activities, decrease of glutathione (GSH) level, increase of malondialdehyde (MDA) levels, and apoptosis of LO2 cells, which were all blocked by ZnPPIX. In mice, DADS effectively suppressed acute ethanol-induced elevation of aminotransferase activities, and improved liver histopathological changes, which might be associated with HO-1 activation.

Conclusion

These results demonstrate that DADS could induce the activation of HO-1/Nrf-2 pathway, which may contribute to the protective effects of DADS against ethanol-induced liver injury.

General significance

DADS may be beneficial for the prevention and treatment of ALD due to significant activation of HO-1/Nrf-2 pathway.
Keywords:ALD  alcoholic liver disease  HO-1  heme oxygenase 1  Nrf-2  NF-E2 related factor-2  DADS  diallyl disulfide  ROS  reactive oxygen species  GSH  glutathione  SOD  superoxide dismutase  LDH  lactate dehydrogenase  AST  aspartate transaminase  ALT  alanine aminotransferase  MDA  malondialdehyde  MAPK  mitogen-activated protein kinase  ERK  extracellular signal-regulated protein kinases  JNK  c-Jun N-terminal kinase  ZnPPIX  zinc protoporphyrin-IX  PKA  protein kinase A  PKC  protein kinase C  PI3K  phosphatidyl inositol 3-kinase
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