The Apoptotic Mechanism of Hepatocellular Carcinoma Cell Line (HepG2) Induced by Arsenic Trioxide
Abstract
To explore the apoptotic mechanism of human hepatic carcinoma cell line HepG2 induced by arsenic trioxide (As2O3). Methods The human hepatoma cell line HepG2 was treated with 0, 2.5, 5 and 10 μmol/L arsenic trioxide for 24 h. Cytotoxicity was tested by MTT assay (additional 25 and 50 μmol/L arsenic trioxide treatment groups), cellular apoptosis were detected by flow cytometry, reactive oxygen species (ROS) level were quantified by DCFH-DA fluorescent probe staining and glutathione content were measured by DTNB method with commercial kits. Western blot assay was used to detect the protein expression of γ-glutamylcysteine synthetase (γ-GCS, GCLC and GCLM subunits) and nuclear factor erythroid 2-related factor 2 (Nrf2). Results With the increase of arsenic trioxide concentration, cellular survival, glutathione content and γ-GCS (GCLC and GCLM subunits) protein expression level decreased (P<0.05); while cellular apoptotic rate, reactive oxygen species level and Nrf2 protein expression increased (P<0.05). Conclusion Arsenic trioxide induces the apoptosis of human hepatoma cell line HepG2 through ROS induction, γ-GCS expression inhibition and cellular glutathione content depletion.
Keywords: Arsenic trioxide, Apoptosis γ-GCS Nrf2
Full Text:
PDFReferences
Kito M, Akao Y, Ohishi N, et al. Arsenic trioxide-induced apoptosis and its enhancement by buthionine sulfoximine in hepatocellular carcinomacell lines. Biochem Biophys Res Commun, 2002 ;291(4): 861-867.
Yen YP. Tsai KS, Chen YW. et al. Arsenic induces apoptosis in myoblasts through a reactive oxygen species-induced endoplasmic reticulum stress and mitochondrial dysfunction pathway. Arch Toxicol,2012;86(6) :923-933.
You BR. Park WH. Arsenic trioxide induces human pulmonary fibroblast cell death via increasing ROS levels and GSH depletion. Oncol Rep,2012;28(2);749-757.
Lu SC. Glutathione sythesis. Biochim Biophys Acta,2013; 1830 (5):314 3-3153.
Arredondo F, Echeverry C, Abin-Carriquiry JA, et al. After cellular internalization, quercetin causes Nrf2 nuclear translocation, increases glutathione levels, and prevents neuronal death against an oxidative insult. Free Radic Biol Med,2010;49(5)s738-747.
RybkaJ, Kupczyk D. Kedziora-kornatowska K. et al. Age- related changes in an antioxidant defense system in elderly patients with essential hypertension compared with healthy controls. Redox Rep,2011; 16(2);71-77.
Garoui E, Amara IB, Driss D, et al. Effects of cobalt on membrane ATPases, oxidant, and antioxidant values in the cerebrum and cerebellum of suckling rats. Biol Trace Elem Res, 2013;154(3):387-395.
Han YH, Kim SH, Kim SZ. et al. Apoptosis in arsenic trioxide-treated Calu-6 lung cells is correlated with the depletion of GSH levels rather than the changes of ROS levels. J Cell Biochem.2008; 104(3) ;862-878.
Li В, Li X, Zhu B. Sodium arsenite induced reaction oxygen species generation, nuclear factor (erythroid-2 related) factor 2 activation, heme oxygenase-1 expression, and glutathione elevation in Chang human hepatocytes. Environ Toxicol, 2013; 28 (7): 401-410.
KimJY, Yim JH, С ho JH, et al. Adrenomedullin regulates cellular glutathione content via modulation of gamma- glutamate-cysteine ligase catalytic subunit expression. Endocrinology,2006; 147(3): 1357-1364.
Thompson JA. White СС, Cox DP. et al. Distinct Nrfl/2- independent mechanisms mediate As3+-induced glutamate- cysteine ligase subunit gene expression in murine hepatocytes. Free Radic Biol Med,2009;46( 12); 1614-1625.
Weldy CS, Luttrell IP, White CC, et al. Glutathione (GSH) and the GSH synthesis gene Glcm modulate vascular reactivity in mice. Free Radic Biol Med,2012;53(6): 1264-1278.
Wang X, Lv Y, Hou X. A potential visual fluorescence probe for ultratrace arsenic ( III ) detection by using glutathione- capped Cd Те quantum dots. Talanta, 2011; 84(2); 382-386. Kansanen E, Kuosmanen SM. Leinonen H. et al. The Keapl- Nrf2 pathway: mechanisms of activation and dysregulation in cancer. Redox Biol,2013; 1(1) :45-49.
Kim SJ. Park С, Han AL. et al. Ebselen attenuates cisplatin- induced ROS generation through Nrf2 activation in auditory cells. Hears Res.2009;251 (1-2);70-82.
Ansari N. Khodagholi F, Amini M. 2-Ethoxy-4,5-diphenyl-1, 3-oxazine-6-one activity the Nrf2/HO-l axis and protects against oxidative stress-induced neuronal death. Eur J Pharmacol, 2011; 658(2-3): 84-90.
Yang H. Magilnick N, Lee C, et al. Nrfl and Nrf2 regulate rat glutamate-cysteine ligase catalytic subunit transcription indirectly via NF-icB and AP-1. Mol Cell Biol, 2005; 25 (14 ) : 5933-5946.
Wild AC. Moinova HR. Mulcahy RT. Regulation of gama- glutamylcysteine synthetase subunit gene expression by the transcription factor Nrf2. J Biol С hem, 1999; 274 (47): 33627- 33636.
Refbacks
- There are currently no refbacks.



