150
Views
7
CrossRef citations to date
0
Altmetric
Original

Distinct H2O2 concentration promotes proliferation of tumour cells after transient oxygen/glucose deprivation

, , , &
Pages 237-243 | Received 20 Nov 2007, Published online: 07 Jul 2009

References

  • Vaupel P. Tumor microenvironmental physiology and its implications for radiation oncology. Semin Radiat Oncol 2004; 14: 198–206
  • Brahimi-Horn C, Pouyssegur J. The role of the hypoxia-inducible factor in tumor metabolism growth and invasion. Bull Cancer 2006; 93: 73–80
  • Pages G, Pouyssegur J. Transcriptional regulation of the vascular endothelial growth factor gene: a concert of activating factors. Cardiovasc Res 2005; 65: 564–573
  • Carmeliet P. Angiogenesis in health and disease. Nat Med 2003; 9: 653–660
  • Kondo Y, Kanzawa T, Sawaya R, Kondo S. The role of autophagy in cancer development and response to therapy. Nat Rev Cancer 2005; 5: 726–734
  • Huang J, Klionsky DJ. Autophagy and human disease. Cell Cycle 2007; 6: 1837–1849
  • Kohandel M, Kardar M, Milosevic M, Sivaloganathan S. Dynamics of tumor growth and combination of anti-angiogenic and cytotoxic therapies. Phys Med Biol 2007; 52: 3665–3677
  • Louis DN, Ohgaki H, Wiestler OD, Cavenee WK, Burger PC, Jouvet A, Scheithauer BW, Kleihues P. The 2007 WHO classification of tumours of the central nervous system. Acta Neuropathol (Berl) 2007; 114: 97–109
  • Guha A, Mukherjee J. Advances in the biology of astrocytomas. Curr Opin Neurol 2004; 17: 655–662
  • Laurent A, Nicco C, Chéreau C, Goulvestre C, Alexandre J, Alves A, Lévy E, Goldwasser F, Panis Y, Soubrane O, Weill B, Batteux F. Controlling tumor growth by modulating endogenous production of reactive oxygen species. Cancer Res 2005; 65: 948–956
  • Musser DA, Oseroff AR. The use of tetrazolium salts to determine sites of damage to the mitochondrial electron transport chain in intact cells following in vitro photodynamic therapy with Photofrin II. Photochem Photobiol 1994; 59: 621–626
  • Black MJ, Brandt RB. Spectrofluorometric analysis of hydrogen peroxide. Anal Biochem 1974; 58: 246–254
  • Imagawa J, Yellon DM, Baxter GF. Pharmacological evidence that inducible nitric oxide synthase is a mediator of delayed preconditioning. Br J Pharmacol 1999; 126: 701–708
  • Shinmura K, Tang XL, Wang Y, Xuan YT, Liu SQ, Takano H, Bhatnagar A, Bolli R. Cyclooxygenase-2 mediates the cardioprotective effects of the late phase of ischemic preconditioning in conscious rabbits. Proc Natl Acad Sci USA 2000; 97: 10197–10202
  • Srivastava S, Chandra A, Wang LF, Seifert WE, Jr, DaGue BB, Ansari NH, Srivastava SK, Bhatnagar A. Metabolism of the lipid peroxidation product, 4-hydroy-trans-2-nonenal, in isolated perfused rat heart. J Biol Chem 1998; 273: 10893–10900
  • Hoshida S, Kuzuya T, Fuji H, Yamashita N, Oe H, Hori M, Suzuki K, Taniguchi N, Tada M. Sublethal ischemia alters myocardial antioxidant activity in canine heart. Am J Physiol 1993; 264: H33–H39
  • Schofield CJ, Ratcliffe PJ. Signalling hypoxia by HIF hydroxylases. Biochem Biophys Res Commun 2005; 338: 617–626
  • Shan-Lin L, Xiao L, Dong-Yun S, Jian C, Chao-Qun W, Ya-Dong Z. Reactive oxygen species stimulated human hepatoma cell proliferation via cross-talk between PI3-K/PKB and JNK signalling pathways. Arch Biochem Biophys 2002; 406: 173–182
  • Fames RS, Tucker C. The role of hydrogen peroxide in endothelial proliferative responses. Endothelium 2002; 9: 231–238
  • Rak J, Filmus J, Finkenzeller G, Grugel S, Marmé D, Kerbel RS. Oncogeneses as inducers of tumor angiogenesis. Cancer Metastasis Rev 1995; 14: 263–277
  • Zhang W, Wang M, Xie HY, Zhou L, Meng XQ, Shi J, Zheng S. Role of reactive oxygen species in mediating hepatic ischemie-reperfusion injury and its therapeutic applications in liver transplantation. Transplant Proc 2007; 39: 1332–1337
  • Goswami SK, Maulik N, Das DK. Ischemia-reperfusion and cardioprotection: a delicate balance between oxygen species generation and redox homeostasis. Ann Med 2007; 39: 275–289
  • Bolli R, Zughaib M, Li XY, Tang XL, Sun JZ, Triana JF, McCay PB. Recurrent ischemia in canine heart causes recurrent bursts of free radical production that have a cumulative effect on contractile function. A pathophysiological basis for chronic myocardial ‘stunning’. J Clin Invest 1995; 96: 1066–1084
  • Saito A, Maier CM, Narasimhan S, Nishi T, Song YS, Yu F, Liu J, Lee YS, Nito C, Kamada H, Dodd RL, Hsieh LB, Hassid B, Kim EE, González M, Chan PH. Oxidative stress and neuronal death/survival signaling in cerebral ischemia. Mol Neurobiol 2005; 31: 105–116
  • Oostenbrug GS, Mensink RP, Bar FW, Hornstra G. Lipid peroxidation-associated oxidative stress during percutaneous transluminal coronary angioplasty in humans. Free Radic Biol Med 1997; 22: 129–136
  • Schild L, Reinheckel T, Wiswedel I, Augustin W. Short-term impairment of energy production in isolated rat liver mitochondria by hypoxia/reoxygenation: involvement of oxidative protein modification. Biochem J 1997; 328: 205–210
  • Ohtaki H, Takeda T, Dohi K, Yofu S, Nakamachi T, Satoh K, Hiraizumi Y, Miyaoka H, Matsunaga M, Shioda S. Increased mitochondrial DNA oxidative damage after transient middle cerebral artery occlusion in mice. Neurosci Res 2007; 58: 349–355

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.