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Research Article

Protective effect of dieckol against chemical hypoxia-induced cytotoxicity in primary cultured mouse hepatocytes

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Pages 180-187 | Received 10 Sep 2013, Accepted 19 May 2014, Published online: 26 Aug 2014

References

  • An WG, Kanekal M, Simon MC, et al. (1998). Stabilization of wild-type p53 by hypoxia-inducible factor 1alpha. Nature 392:405–408
  • Aviram M. (2000). Review of human studies on oxidative damage and antioxidant protection related to cardiovascular diseases. Free Radic Res 33:S85–S97
  • Booth EA, Flint RR, Lucas KL, et al. (2008). Estrogen protects the heart from ischemia-reperfusion injury via COX-2-derived PGI2. J Cardiovasc Pharmacol 52:228–235
  • Cao YJ, Shibata T, Rainov NG. (2001). Hypoxia-inducible transgene expression in differentiated human NT2N neurons – a cell culture model for gene therapy of postischemic neuronal loss. Gene Ther 8:1357–1362
  • Carnieto A, Jr. Dourado PM, Luz PL, Chagas AC. (2009). Selective cyclooxygenase-2 inhibition protects against myocardial damage in experimental acute ischemia. Clinics (Sao Paulo) 64:245–252
  • Chandel NS, Maltepe E, Goldwasser E, et al. (1998). Mitochondrial reactive oxygen species trigger hypoxia-induced transcription. Proc Natl Acad Sci USA 95:11715–11720
  • Chandel NS, Schumacker PT. (1999). Cells depleted of mitochondrial DNA (rho0) yield insight into physiological mechanisms. FEBS Lett 454:173–176
  • Chen KC, Zhou Y, Zhang W, Lou MF. (2007). Control of PDGF-induced reactive oxygen species (ROS) generation and signal transduction in human lens epithelial cells. Mol Vis 13:374–387
  • Chen L, Liu L, Huang S. (2008). Cadmium activates the mitogen-activated protein kinase (MAPK) pathway via induction of reactive oxygen species and inhibition of protein phosphatases 2A and 5. Free Radic Biol Med 45:1035–1044
  • de Magalhaes JP, Church GM. (2006). Cells discover fire: employing reactive oxygen species in development and consequences for aging. Exp Gerontol 41:1–10
  • Dupouy VM, Ferre PJ, Uro-Coste E, Lefebvre HP. (2006). Time course of COX-1 and COX-2 expression during ischemia-reperfusion in rat skeletal muscle. J Appl Physiol 100:233–239
  • Fu H, Chen H, Wang C, et al. (2012). Flurbiprofen, a cyclooxygenase inhibitor, protects mice from hepatic ischemia/reperfusion injury by inhibiting GSK-3beta signaling and mitochondrial permeability transition. Mol Med 18:1128–1135
  • Goldberg MA, Dunning SP, Bunn HF. (1988). Regulation of the erythropoietin gene: evidence that the oxygen sensor is a heme protein. Science 242:1412–1415
  • Gotoh M, Sano-Maeda K, Murofushi H, Murakami-Murofushi K. (2012). Protection of neuroblastoma Neuro2A cells from hypoxia-induced apoptosis by cyclic phosphatidic acid (cPA). PLoS One 7:e51093
  • Guillemin K, Krasnow MA. (1997). The hypoxic response: huffing and HIFing. Cell 89:9–12
  • Guo M, Song LP, Jiang Y, et al. (2006). Hypoxia-mimetic agents desferrioxamine and cobalt chloride induce leukemic cell apoptosis through different hypoxia-inducible factor-1alpha independent mechanisms. Apoptosis 11:67–77
  • Halliwell B. (1994). Free radicals, antioxidants, and human disease: curiosity, cause, or consequence? Lancet 344:721–724
  • Hamada T, Tsuchihashi S, Avanesyan A, et al. (2008). Cyclooxygenase-2 deficiency enhances Th2 immune responses and impairs neutrophil recruitment in hepatic ischemia/reperfusion injury. J Immunol 180:1843–1853
  • Jaeschke H. (2000). Reactive oxygen and mechanisms of inflammatory liver injury. J Gastroenterol Hepatol 15:718–724
  • Jaeschke H. (2006). Mechanisms of liver injury. II. Mechanisms of neutrophil-induced liver cell injury during hepatic ischemia-reperfusion and other acute inflammatory conditions. Am J Physiol Gastrointest Liver Physiol 290:G1083–1088
  • Jameel NM, Thirunavukkarasu C, Wu T, et al. (2009). p38-MAPK- and caspase-3-mediated superoxide-induced apoptosis of rat hepatic stellate cells: reversal by retinoic acid. J Cell Physiol 218:157–166
  • Jiang BH, Zheng JZ, Leung SW, et al. (1997). Transactivation and inhibitory domains of hypoxia-inducible factor 1alpha. Modulation of transcriptional activity by oxygen tension. J Biol Chem 272:19253–19260
  • Jung JY, Mo HC, Yang KH, et al. (2007). Inhibition by epigallocatechin gallate of CoCl2-induced apoptosis in rat PC12 cells. Life Sci 80:1355–1363
  • Jung WK, Heo SJ, Jeon YJ, et al. (2009). Inhibitory effects and molecular mechanism of dieckol isolated from marine brown alga on COX-2 and iNOS in microglial cells. J Agric Food Chem 57:4439–4446
  • Kim HJ, Yang SJ, Kim YS, Kim TU. (2003). Cobalt chloride-induced apoptosis and extracellular signal-regulated protein kinase activation in human cervical cancer HeLa cells. J Biochem Mol Biol 36:468–474
  • Kim KC, Lee C. (2010). Curcumin induces downregulation of E2F4 expression and apoptotic cell death in HCT116 human colon cancer cells; involvement of reactive oxygen species. Korean J Physiol Pharmacol 14:391–397
  • Kim SD, Moon CK, Eun SY, et al. (2005). Identification of ASK1, MKK4, JNK, c-Jun, and caspase-3 as a signaling cascade involved in cadmium-induced neuronal cell apoptosis. Biochem Biophys Res Commun 328:326–334
  • Knight TR, Ho YS, Farhood A, Jaeschke H. (2002). Peroxynitrite is a critical mediator of acetaminophen hepatotoxicity in murine livers: protection by glutathione. J Pharmacol Exp Ther 303:468–475
  • Kwak HJ, Park KM, Choi HE, et al. (2010). The cardioprotective effects of zileuton, a 5-lipoxygenase inhibitor, are mediated by COX-2 via activation of PKC delta. Cell Signal 22:80–87
  • Lan A, Xu W, Zhang H, et al. (2013). Inhibition of ROS-activated p38MAPK pathway is involved in the protective effect of H2S against chemical hypoxia-induced inflammation in PC12 cells. Neurochem Res 38:1454–1466
  • Lan AP, Xiao LC, Yang ZL, et al. (2012). Interaction between ROS and p38MAPK contributes to chemical hypoxia-induced injuries in PC12 cells. Mol Med Rep 5:250–255
  • Lee MY, Jung SC, Lee JH, Han HJ. (2008). Estradiol-17beta protects against hypoxia-induced hepatocyte injury through ER-mediated upregulation of Bcl-2 as well as ER-independent antioxidant effects. Cell Res 18:491–499
  • Lee SH, Han JS, Heo SJ, et al. (2010). Protective effects of dieckol isolated from Ecklonia cava against high glucose-induced oxidative stress in human umbilical vein endothelial cells. Toxicol In Vitro 24:375–381
  • Lehwald N, Tao GZ, Jang KY, et al. (2011). Wnt-beta-catenin signaling protects against hepatic ischemia and reperfusion injury in mice. Gastroenterology 141:707–718, 718 e701–705
  • Menon SG, Goswami PC. (2007). A redox cycle within the cell cycle: ring in the old with the new. Oncogene 26:1101–1109
  • Nakanishi K, Tajima F, Nakamura A, et al. (1995). Effects of hypobaric hypoxia on antioxidant enzymes in rats. J Physiol 489:869–876
  • Oshima K, Yabata Y, Yoshinari D, Takeyoshi I. (2009). The effects of cyclooxygenase (COX)-2 inhibition on ischemia-reperfusion injury in liver transplantation. J Invest Surg 22:239–245
  • Ouyang M, Shen X. (2006). Critical role of ASK1 in the 6-hydroxydopamine-induced apoptosis in human neuroblastoma SH-SY5Y cells. J Neurochem 97:234–244
  • Ozturk H, Gezici A. (2006). The effect of celecoxib, a selective COX-2 inhibitor, on liver ischemia/reperfusion-induced oxidative stress in rats. Hepatol Res 34:76–83
  • Pietrangelo A. (1996). Metals, oxidative stress, and hepatic fibrogenesis. Semin Liver Dis 16:13–30
  • Roulston A, Reinhard C, Amiri P, Williams LT. (1998). Early activation of c-Jun N-terminal kinase and p38 kinase regulate cell survival in response to tumor necrosis factor alpha. J Biol Chem 273:10232–10239
  • Sarada SK, Himadri P, Ruma D, et al. (2008). Selenium protects the hypoxia induced apoptosis in neuroblastoma cells through upregulation of Bcl-2. Brain Res 1209:29–39
  • Semenza GL. (1999). Perspectives on oxygen sensing. Cell 98:281–284
  • Sharp FR, Bernaudin M. (2004). HIF1 and oxygen sensing in the brain. Nat Rev Neurosci 5:437–448
  • Smith WL, DeWitt DL, Garavito RM. (2000). Cyclooxygenases: structural, cellular, and molecular biology. Annu Rev Biochem 69:145–182
  • Sun SY. (2010). N-acetylcysteine, reactive oxygen species and beyond. Cancer Biol Ther 9:109–110
  • Susnow N, Zeng L, Margineantu D, Hockenbery DM. (2009). Bcl-2 family proteins as regulators of oxidative stress. Semin Cancer Biol 19:42–49
  • Talwar S, Jin J, Carroll B, et al. (2011). Caspase-mediated cleavage of RNA-binding protein HuR regulates c-Myc protein expression after hypoxic stress. J Biol Chem 286:32333–32343
  • Vadiraja BB, Gaikwad NW, Madyastha KM. (1998). Hepatoprotective effect of C-phycocyanin: protection for carbon tetrachloride and R-(+)-pulegone-mediated hepatotoxicty in rats. Biochem Biophys Res Commun 249:428–431
  • Wang G, Hazra TK, Mitra S, et al. (2000). Mitochondrial DNA damage and a hypoxic response are induced by CoCl(2) in rat neuronal PC12 cells. Nucleic Acids Res 28:2135–2140
  • Wang X. (2001). The expanding role of mitochondria in apoptosis. Genes Dev 15:2922–2933
  • Yang C, Ling H, Zhang M, et al. (2011). Oxidative stress mediates chemical hypoxia-induced injury and inflammation by activating NF-kappab-COX-2 pathway in HaCaT cells. Mol Cells 31:531–538
  • Yeo JE, Kim JH, Kang SK. (2008). Selenium attenuates ROS-mediated apoptotic cell death of injured spinal cord through prevention of mitochondria dysfunction; in vitro and in vivo study. Cell Physiol Biochem 21:225–238
  • Yokoyama C, Tanabe T. (1989). Cloning of human gene encoding prostaglandin endoperoxide synthase and primary structure of the enzyme. Biochem Biophys Res Commun 165:888–894
  • Yu F, Wang Z, Ju B, et al. (2008). Apoptotic effect of organophosphorus insecticide chlorpyrifos on mouse retina in vivo via oxidative stress and protection of combination of vitamins C and E. Exp Toxicol Pathol 59:415–423
  • Yuan Y, Hilliard G, Ferguson T, Millhorn DE. (2003). Cobalt inhibits the interaction between hypoxia-inducible factor-alpha and von Hippel-Lindau protein by direct binding to hypoxia-inducible factor-alpha. J Biol Chem 278:15911–15916
  • Zhang C, Li Y, Qian ZJ, et al. (2011). Dieckol from Ecklonia cava regulates invasion of human fibrosarcoma cells and modulates MMP-2 and MMP-9 expression via NF-kappaB pathway. Evid Based Complement Alternat Med 2011:140462
  • Zou W, Yan M, Xu W, et al. (2001). Cobalt chloride induces PC12 cells apoptosis through reactive oxygen species and accompanied by AP-1 activation. J Neurosci Res 64:646–653
  • Zou W, Zeng J, Zhuo M, et al. (2002). Involvement of caspase-3 and p38 mitogen-activated protein kinase in cobalt chloride-induced apoptosis in PC12 cells. J Neurosci Res 67:837–843

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