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Research Article

Oxidative stress in the denervated muscle

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Pages 563-576 | Received 23 Oct 2009, Published online: 19 Mar 2010

References

  • Tisdale MJ. Cancer cachexia: metabolic alterations and clinical manifestations. Nutrition 1997;13:1–7.
  • Monani UR. Spinal muscular atrophy: a deficiency in a ubiquitous protein; a motor neuron-specific disease. Neuron 2005;48:885–896.
  • Porter MM, Vandervoort AA, Lexell J. Aging of human muscle: structure, function and adaptability. Scand J Med Sci Sports 1995;5:129–142.
  • Fulle S, Protasi F, Di Tano G, Pietrangelo T, Beltramin A, Boncompagni S, Vecchiet L, Fanó G. The contribution of reactive oxygen species to sarcopenia and muscle ageing. Exp Gerontol 2004;39:17–24.
  • Muller FL, Song W, Liu Y, Chaudburi A, Picke-Dahl S, Strong R, Huang T-T, Epstein CJ, Robert LJ 2nd, Cscte M, Faulkner JA, Van Remmen H. Absence of CuZn superoxide dismutase leads to elevated oxidative stress and acceleration of age-dependent skeletal muscle atrophy. Free Radic Biol Med 2006; 40:1993–2004.
  • Muller FL, Song W, Jang YC, Liu Y, Sabia M, Richardson A, Van Remmen H. Denervation-induced skeletal muscle atrophy is associeted with increased mitochondrail ROS production. Am J Physiol Regul Integr Comp Physiol 2007;293: R1159–R1168.
  • Debrowolny G, Aucello M, Rizzuto E, Beccafico S, Mammucari C, Boncompagni S, Belia S, Wannenes F, Nicoletti C, Del Prete Z, Rosenthal N, Molinaro M, Protasi F, Fanó G, Sandri M, Musarò A. Skeletal muscle is a primary target of SOD-1 G93A-mediated toxiticy. Cell Metab 2008;8:425–436.
  • McCord JM. Oxygen-derived free radicals in postischemic tissue injury. N Engl J Med 1985;312:159–163.
  • Kostrominova TY, Dow DE, Dennis RG, Miller RA, Faulkner JA. Comparison of gene expression of 2-mo denervated, 2-mo stimulated-denervated, and control rat skeletal muscles. Physiol Genomics 2005;22:227–243.
  • Kern H, Boncompagni S, Rossini K, Mayr W, Fanó G, Zanin ME, Podhorska-Okolow M, Protasi F, Carraro U. Long-term denervation in humans causes degeneration of both contractile and excitation-contraction coupling apparatus, which is reversible by Functional Electrical Stimulation (FES): a role for myofiber regeneration? J Neuropathol Exp Neurol 2004; 63:919–931.
  • Carlson BM, Borisov AB, Dedkov EI, Khalyfa A, Kostrominova TY, Macpherson PCD, Wang E, Faulkner JA. Effects of long-term denervation on skeletal muscle in old rat. J Gerentol 2002;57A:B366–B374.
  • Sun J, Xu L, Eu JP, Stamler JS, Meissner G. Classes of thiols that influence the activity of the skeletal muscle calcium release channel. J Biol Chem 2001;276:15625–15630.
  • Kandarian SC, Jackman RW. Intracellular signaling during skeletal muscle atrophy. Muscle Nerve 2006;33:155–165.
  • Li YP, , ChenYJohn J, Moylan J, Jin B, Mann DL, Reid MB. TNF-α acts via p38 MAPK to stimulate expression of the ubiquitin ligase atrogin1/MAFbx in skeletal muscle. FASEB J. 2005;19:362–370.
  • Sandri M. Signaling in muscle atrophy and hypertrophy. Physiology 2008;23:160–170.
  • Degli Esposti M. Measuring mitochondrial reactive oxygen species. Methods 2002;26:335–340.
  • Cathcart R, Schwiers E, Ames BN. Detection of picomole levels of hydroperoxides using a fluorescent dichlorofluorescein assay. Anal Biochem 1983;134:111–116.
  • Rock E, Mammar MS, Vignon X, Thomas MA, Viret J. Abnormal fluidity state in membranes of malignant hyperthermia pig skeletal muscle. Arch Biochem Biophys 1990; 281:36–40.
  • Renganathan M, Messi ML, Delbono O. Dihydropyridine receptor-ryanodine receptor uncoupling in aged skeletal muscle. J Membr Biol 1997;157:247–253.
  • Mecocci P, Fanó G, Fulle S, MacGarvey U, Shinobu L, Polidori MC, Cherubini A, Vecchiet J, Senin U, Beal MF. Age-dependent increases in oxidative damage to DNA, lipids, and proteins in human skeletal muscle. Free Radic Biol Med 1999;26:303–308.
  • Fulle S, Belia S, Vecchiet J, Morabito C, Vecchiet L, Fanò G. Modification of the functional capacity of sarcoplasmic reticulum membranes in patients suffering from chronic fatigue syndrome. Neuromuscul Disord 2003;13:479–484.
  • Chomczynski P, Sacchi N. Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. Anal Biochem 1987;162:156–159.
  • Marini M, Lapalombella R, Margonato V, Ronchi R, Samaja M, Scapin C, Gorza L, Maraldi T, Carinci P, Ventura C, Veicsteinas A. Mild exercise training, cardioprotection and stress genes profile. Eur J Appl Physiol 2007;99:503–510.
  • Lapalombella R, Kern H, Adami N, Biral D, Zampieri S, Scordari A, di Tullio S, Marini M. Persistence of regenerative myogenesis in spite of down-regulation of activity-dependent genes in long-term denervated rat muscle. Neurol Res 2008;30:197–206.
  • Adams L, Carlson BM, Henderson L, Goldman D. Adaptation of nicotinic acetylcholine receptor, myogenin, and MRF4 gene expression to long-term muscle denervation. J Cell Biol 1995;131:1341–1349.
  • Dedkov AI, Kostrominova TY, Borisov AB, Carlson BM. Reparative myogenesis in long-term denervated skeletal muscle of adult rats results in a reductionof the satellite population. Anat Rec 2001;263:139–154.
  • Livak JK, Schimitten TD. Analysis of relative gene expression data using real-time quantitative PCR and the 2ΔΔ−CT method. Methods 2001;25:402–408.
  • Peskin AV, Winterbourn CC. A microtiter plate assay for superoxide dismutase using a water-soluble tetrazolium salt (WST-1). Clin Chim Acta 2000;293:157–166.
  • Zhou JY, Prognon P. Raw material enzymatic activity determination: a specific case for validation and comparison of analytical methods. The example of superoxide dismutase (SOD). J Pharm Biomed Anal 2006;40:1143–1148.
  • Baracca A, Sgarbi G, Mattiazzi M, Casalena G, Pagnotta E, Valentino ML, Moggio M, Lenaz G, Carelli V, Solaini G. Biochemical phenotypes associated with the mitochondrial ATP6 gene mutations at nt8993. Biochim Biophys Acta 2007;1767:913–919.
  • Lowry OH, Rosebrough NJ, Farr AL, Randall RJ. Protein measurement with the Folin phenol reagent. J Biol Chem 1951;193:265–275.
  • Genova ML, Baracca A, Biondi A, Casalena G, Faccioli M, Falasca AI, Formiggini G, Sgarbi G, Solaini G, Lenaz G. Is supercomplex organization of the respiratory chain required for optimal electron transfer activity? Biochim Biophys Acta 2008;1777:740–746.
  • Spiegelman BM. Transcriptional control of mitochondrial energy metabolism through the PGC1 coactivators. Novartis Found Symp 2007;287:60–63;discussion 63–69.
  • Guerrieri F, Vendemiale G, Grattagliano I, Cocco T, Pellecchia G, Altomare E. Mitochondrial oxidative alterations following partial hepatectomy. Free Radic Biol Med 1999; 26:34–41.
  • Fato R, Bergamini C, Leoni S, Strocchi P, Lenaz G. Generation of reactive oxygen species by mitochondrial complex I: implications in neurodegeneration. Neurochem Res 2008;33: 2487–2501.
  • Lenaz G. The mitochondrial production of reactive oxygen species: mechanisms and implications in human pathology. IUBMB Life 2001;52:159–164.
  • Jezek P, Hlavatá L. Mitochondria in homeostasis of reactive oxygen species in cell, tissues, and organism. Int J Biochem Cell Biol 2005;37:2478–2503.
  • Fato R, Bergamini C, Bortolus M, Maniero AL, Leoni S, Ohnishi T, Lenaz G. Differential effects of mitochondrial Complex I inhibitors on production of reactive oxygen species. Biochim Biophys Acta 2009;1787:384–392.
  • Paradies G, Petrosillo G, Pistolese M, Di Venosa N, Federici A, Ruggiero FM. Decrease in mitochondrial complex I activity in ischemic/reperfused rat heart: involvement of reactive oxygen species and cardiolipin. Circ Res 2004; 94:53–59.
  • Siu PM, Always SE. Mitochondria-associated apoptotic signaling in denervated rat skeletal muscle. J Physiol 2005; 565:309–323.
  • Adhihetty PJ, O’Leary MFN, Chabi B, Wicks KL, Hood DA. Effect of denervationon mitochondrially mediated apoptosis in skeletal muscle. J Appl Physiol 2007;102:1143–1151.
  • Bhattacharya A, Muller FL, Liu Y, Sabia M, Liang H, Song W, Jang YC, Ran Q, Van Remmen H. Denervation induces cytosolic phospholipase A2-mediated fatty acid hydroperoxide generation by muscle mitochondria. J Biol Chem 2009;284: 46–55.
  • Squecco R, Carraro U, Kern H, Pond A, Adami N, Biral D, Vindigni V, Boncompagni S, Pietrangelo T, Bosco G, Fanò G, Marini M, Abruzzo PM, Germinario E, Danieli-Betto D, Protasi F, Francini F, Zampieri S. A sub-population of rat muscle fibers maintains an assessable excitation-contraction coupling mechanism after long-standing deneravtion, despite lost contractility. J Neuropathol Exp Neurol 2009;68:1256–1268.
  • Toppo S, Flohé L, Ursini F, Vanini S, Maiorino M. Catalytic mechanisms and specificities of glutathione peroxidases: variations of a basic scheme. Biochim Biophys Acta 2009;1790:1486–1500.
  • Brigelius-Flohé R, Maurer S, Lötzer K, Böl G, Kallionpää H, Lehtolainen P, Viita H, Ylä-Herttuala S. Overexpression of PHGPx inhibits hydroperoxide-induced oxidation, NFkappaB activation and apoptosis and affects oxLDL-mediated proliferation of rabbit aortic smooth muscle cells. Atherosclerosis 2000;152:307–316.
  • Moriggi M, Cassano P, Vasso M, Capitanio D, Fania C, Musicco C, Pesce V, Gadaleta MN, Gelfi CA. DIGE approach for the assessment of rat soleus muscle changes during unloading: effect of acetyl-L-carnitine supplementation. Proteomics 2008;8:3588–3604.
  • Boncompagni S, Kern H, Rossini K, Mayr W, Carraro U, Protasi F. Structural differentiation of skeletal muscle fibres in absence of innervation in humans. Proc Natl Acad Sci USA 2007;104:19339–19344.
  • Kern H, Carraro U. Translational myology focus on clinical challenges of functional electrical stimulation of denervated muscle. Basic Appl Myol/Eur J Translat Myol 2008;18: 37–100.
  • Kondo H, Miura M, Itokawa Y. Oxidative stress in skeletal muscle atrophied by immobilization. Acta Physiol Scand 1991;142:527–528.
  • Golding JD, Rigley MacDonald SD, Juurlink BHJ, Rosser BWC. The effect of glutamine on locomotor performance and skeletal muscle myosins following spinal cord injury in rats. J Appl Physiol 2006;101:1045–1052.

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