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Original Article

Heme oxygenase-1 expression in the guinea pig cochlea induced by intense noise stimulation

, PhD , MD, , &
Pages 18-23 | Received 27 Mar 2009, Published online: 20 Jul 2009

References

  • Chen GD, Fechter LD. The relationship between noise-induced hearing loss and hair cell loss in rats. Hear Res 2003; 177: 81–90
  • Ohlemiller KK, Wright JS, Dugan LL. Early elevation of cochlear reactive oxygen species following noise exposure. Audiol Neurootol 1999; 4: 229–36
  • Maines MD. The heme oxygenase system and its function in the brain. Cell Mol Biol 2000; 46: 573–85
  • Scapagnini G, D'Agata V, Calabrese V, Pascale A, Colombrita C, Alkon D, et al. Gene expression profiles of heme oxygenase isoforms in the rat brain. Brain Res 2002; 954: 51–9
  • Dennery PA. Regulation and role of heme oxygenase in oxidative injury. Curr Top Cell Regul 2000; 36: 181–99
  • Schipper HM. Heme oxygenase-1: role in brain aging and neurodegeneration. Exp Gerontol 2000; 35: 821–30
  • Ogita K, Matsunobu T, Schacht J. Acoustic trauma enhances DNA binding of transcription factor AP-1 in the guinea pig inner ear. Neuroreport 2000; 11: 859–62
  • Matsunobu T, Ogita K, Schacht J. Modulation of Activator protein 1/DNA binding activity by acoustic overstimulation in the guinea-pig cochlea. Neuroscience 2004; 123: 1037–43
  • Masuda M, Nagashim R, Kanzaki S, Ogita K, Ogawa K. Nuclear factor-kappa B nuclear translocation in the cochlea of mice following acoustic overstimulation. Brain Res 2006; 1068: 237–47
  • Nakagami T, Toyomura K, Kinoshita T, Morisawa S. A beneficial role of bile pigments as an endogenous tissue protector: anti-complement effects of biliverdin and conjugated bilirubin. Biochim Biophys Acta 1993; 1158: 189–93
  • Llesuy SF, Tomaro ML. Heme oxygenase and oxidative stress: evidence of involvement of bilirubin as physiological protector against oxidative damage. Biochim Biophys Acta 1994; 1223: 9–14
  • Willis D, Moore AR, Frederick R, Willoughby DA. Heme oxygenase: a novel target for the modulation of the inflammatory response. Nat Med 1996; 2: 87–90
  • Tosaki A, Das DK. The role of heme oxygenase signaling in various disorders. Mol Cell Biochem 2002; 232: 149–57
  • Shizuki K, Ogawa K, Matsunobu T, Kanzaki J, Ogita K. Expression of c-Fos after noise-induced temporary threshold shift in the guinea pig cochlea. Neurosci Lett 2002; 320: 73–6
  • Schreiber E, Matthias P, Muller MM, Schaffner W. Rapid detection of octamer binding proteins with “mini-extract,” prepared from a small number of cells. Nucleic Acids Res 1989; 17: 6419
  • Henderson D, Bielefield EC, Harris KC, Hu BH. The role of oxidative stress in noise-induced hearing loss. Ear Hear 2006; 27: 1–19
  • Ohinata Y, Miller JM, Altschuler R, Schacht J. Intense noise induces formation of vasoactive lipid peroxidation products in the cochlea. Brain Res 2000; 878: 163–73
  • Ohinata Y, Miller JM, Schacht J. Protection from noise-induced lipid peroxidation and hair cell loss in the cochlea. Brain Res 2003; 966: 265–73
  • Yamane H, Nakai Y, Takayama M, Iguchi H, Nakagawa T, Kojima A. Appearance of free radicals in the guinea pig inner ear after noise-induced acoustic trauma. Arch Otorhinolaryngol 1995; 252: 504–8
  • Abraham NG, Kushida T, McClung J, Weiss M, Quan S, Lafaro R, et al. Heme oxygenase-1 attenuates glucose-mediated cell growth arrest and apoptosis in human microvessel endothelial cells. Circ Res 2003; 93: 507–14
  • Kim HJ, So HS, Lee JH, Lee JH, Park C, Park SY, et al. Heme oxygenase-1 attenuates the cisplatin-induced apoptosis of auditory cells via down-regulation of reactive oxygen species generation. Free Radic Biol Med 2006; 40: 1810–19
  • Li G, Sha SH, Zotova E, Arezzo J, Van de Water T, Schacht J. Salicylate protects hearing and kidney function from cisplatin toxicity without compromising its oncolytic action. Lab Invest 2002; 82: 585–96
  • Fessenden JD, Coling DE, Schacht J. Detection and characterization of nitric oxide synthase in mammalian cochlea. Brain Res 1994; 668: 9–15
  • Fessenden JD, Schacht J. Localization of soluble guanylate cyclase activity in the guineapig cochlea suggests involvement in regulation of blood flow and supporting cell physiology. J Histochem Cytochem 1997; 45: 1401–8
  • Fessenden JD, Schacht J. The nitric oxide/cyclic GMP pathway: a potential major regulator of cochlear physiology. Hear Res 1998; 118: 168–76
  • Tian F, Fessenden JD, Schacht J. Cyclic GMP-dependent kinase-1 in the guinea pig cochlea. Hear Res 1999; 131: 63–70
  • Matsunobu T, Schacht J. Nitric oxide/cyclic GMP pathway attenuates ATP-evoked intracellular calcium increase in supporting cells of the guinea pig cochlea. J Comp Neurol 2000; 423: 452–61
  • Maines MD, Mayer RD, Ewing JF, McCoubrey WK, Jr. Induction of kidney heme oxygenase-1 (HSP32) mRNA and protein by ischemia/reperfusion: possible role of heme as both promoter of tissue damage and regulator of HSP32. J Pharmacol Exp Ther 1993; 264: 457–62
  • Morita T, Kourembanas S. Endothelial cell expression of vasoconstrictors and growth factors is regulated by smooth muscle cell-derived carbon monoxide. J Clin Invest 1995; 96: 2676–82
  • Verma A, Hirsch DJ, Glatt CE, Ronnett GV, Snyder SH. Carbon monoxide: a putative neural messenger. Science 1993; 259: 381–4
  • Otterbein LE, Bach FH, Alam J, Soares M, Tao Lu H, Wysk M, et al. Carbon monoxide has anti-inflammatory effects involving the mitogen-activated protein kinase pathway. Nat Med 2000; 6: 422–8

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