Literature DB >> 27704336

Cytotoxicity of lipid-soluble ginseng extracts is attenuated by plasma membrane redox enzyme NQO1 through maintaining redox homeostasis and delaying apoptosis in human neuroblastoma cells.

Hwa-Kyung Kim1, Tae Gen Son2, Dong-Gyu Jo3, Dong Chung Kim4, Dong-Hoon Hyun5.   

Abstract

Lipid-soluble ginseng extracts (LSGE) is known to inhibit many types of cancer cells through arresting cell cycle and inducing apoptosis. Usually, normal cells are can also be damaged by anti-tumor reagents. The plasma membrane redox system (PMRS) is enhanced to compensate mitochondrial dysfunction and impaired energy metabolism. NADH-quinone oxidoreductase 1 (NQO1), a plasma membrane redox enzyme, is known to be induced by panaxytriol, one of components of lipid-soluble ginseng extracts (LSGE). The objective of this study was determine the mechanisms of NQO1 involved in neuroprotection in response to cytotoxicity induced by LSGE. Exposure of control SH-SY5Y cells to LSGE resulted in dramatic loss of cell viability in a dose-dependent manner. The loss of cell viability was significantly recovered in cells transfected with NQO1. LSGE-induced cell death occurred through apoptosis such as cell shrinkage, chromatin condensation and cleavage of poly (ADP-ribose) polymerase. These apoptotic features were significantly attenuated by overexpression of NQO1. Levels of oxidative/nitrative damage were highly elevated by LSGE in a dose-dependent manner. However, these elevated levels were greatly reduced by overexpression of NQO1. In addition, overexpression of NQO1 attenuated the decrease in mitochondrial complex I activity caused by LSGE. Taken together, these findings suggest that overexpressed NQO1 can protect cells against LSGE-induced cytotoxicity through lowering oxidative/nitrative damage and delaying apoptosis, supporting that stimulation of NQO1 activity could be a therapeutic targets in neurodegeration.

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Keywords:  Apoptosis; Lipid-soluble ginseng extracts; NQO1; Oxidative damage; PMRS

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Year:  2016        PMID: 27704336     DOI: 10.1007/s12272-016-0817-6

Source DB:  PubMed          Journal:  Arch Pharm Res        ISSN: 0253-6269            Impact factor:   4.946


  2 in total

Review 1.  Increasing Nrf2 Activity as a Treatment Approach in Neuropsychiatry.

Authors:  G Morris; A J Walker; K Walder; M Berk; W Marx; A F Carvalho; M Maes; B K Puri
Journal:  Mol Neurobiol       Date:  2021-01-07       Impact factor: 5.590

Review 2.  A New Insight into an Alternative Therapeutic Approach to Restore Redox Homeostasis and Functional Mitochondria in Neurodegenerative Diseases.

Authors:  Dong-Hoon Hyun; Jaewang Lee
Journal:  Antioxidants (Basel)       Date:  2021-12-21
  2 in total

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