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Bibliografie- Allen
RG,Lamb GD,Westerblad H- Skeletal
muscle fatigue:cellular mechanisms. Physiol. Rev. 88 :
287-332, 2008.
- Antoni
A.,Pedro T.,Emilia Fuentespina, Josep A.,Alfedro C.,Antoni.P.-
Antioxidant response to oxidative stress induced by exhaustive
exercise.Physiology 2005: 84,1-7.
- Alderton W.K.,
Cooper C.E.,
Knowles R.G. Nitric oxide synthases: structure, function and
inhibition. Biochem. J. 2001; 357:593–615.
- Arner
ES.,holmgren A.physiological functions of thireoredoxin and thioredoxin
reductase.Eur.J. Biochem 267: 6102-6109, 2000.
- Ashton
T.,Rowlands C.C.,Jones E.Young I.S.,Jakson SK.,Davies B and
Peters J.R. (1998) Eur.J.Appl.Physiol.Occup.Physiol. 77: 498-502.
- Balagopalakrishna
C., Manoharan P.T., Abugo O.O. and Rifkind J.M., 1996. Biochemystri 35:
6393-6398.
- Berndt
C., Lilling CH., Holmgren A.-Thiol-based mechanisms of the thioredoxin
and glutaredoxin systems:implication for diseases in the cardiovascular
systems.Am. J. Physiol. Heart. Circ. Physiol 292:
H1227-H1236, 2007.
- Byung Pal Yu- Cellular defenses
against
damage, from reactive oxygen species vol 74.No 1.January 1994.
- Bjornested
M., Kumar, Bjorklem L.,- Selenium and the thioredoxin and
glutaredoxin systems. Biomed. Environ. Sci. 10: 271-279,1997.
- Blair
S.N- Sport medicine and exercise sciences in the 21st
century. Sport. Med.Bull. 34: 8, 1999.
- Bredt
D.S., Hwang P.M., Snyder S.H. Localization of nitric oxide
synthase indicating a neural role for nitric oxide. Nature. 1990:
347:768–770.
- Brenman
J.E., Chao D.S., XIA
H., Aldape K., Bredt D.S. Nitric oxide synthase complexed with
dystrophin and absent from skeletal muscle sarcolemma in Duchenne
muscular dystrophy. Cell. 1995; 82:743–752.
- Brigelius-Flohe
R.Glutathione peroxidases and redox-regulated transcription
factors.Biol. Chem. 387:1329-1335, 2006.
- Christopher
PI.,Wenke JC.,Nofal T, Armstrong RB-Adaptation to lenghthening
contraction-induced injury in mouse muscle.J.Appl.Physiol 2004:
97:1067-76.
- Cooper CE,Vollaard N.B.J,Choueiri
T,Wilson
M.T.Exercise,free radicals and oxidative stress.Biochem.Soc.Trans, vol
30,2002.
- Cooper CE.(1994) in Free Radical Damage
and its
Control (Rice-Evans, C.A. and Burdon R.H., eds) pp 65-109.Elsevier-
Amsterdam.
- Davies MJ,Fu S,Wang H,Dean RT.Stable
markers of oxidant damage to
proteins and their application in the study of human disease.Free.
Radic. Biol. Med. 27:1151-1163, 1999.
- Diplock
AT.Introduction:markers of oxidative damage and antioxidant modulation.
Free. Radic. Res. 33 Sppl: S21-S26, 2000.
- Drevet
JR.The
antioxidant glutathione peroxidase family and spermatozoa:a complex
story.Moll. Cell. Endocrinol 250:70-79, 2006
- Droge
W.Free radicals in the physiological control of cell function. Physiol.
Rev. 82:47-95, 2002.
- Duntas
LH.Oxidants,antioxidants
in physical exercise and relation to thyroid function.Horm.Metab..Res
37: 572-576, 2005.
- El-Agamey
A,Lowe GM,McGarvey DJ,Mortensen A,Phillip DM,Truscott TG,Young
AJ.Carotenoid radical chemistry and antioxidant/pro-oxidant
properties.Arch. Biochem. Biophy 430: 37-48, 2004.
- Gladyshev
VN.,Liu
A.,Novoselov SV., Krysan K., Sun QA., Kryukov GV., Lou
MF-Identification of characterization of new mammalian
glutaredoxin Grx2.J. Biol. CHEM 276: 30374-30380, 2001.
- Flohe
L.,Budde H.,Hofmann B. peroxiredoxins in antioxidants defense and redox
regulation.Biofactors 19: 3-10, 2003.
- Fridovich
I.superoxide
radical and superoxide dismutases.Annu.Rev.Biochem 64:97-112.1995.
- Gibson
A. Phosphodiesterase 5 inhibitors and nitrergic transmission: from
zaprinast to sildenafil. Eur. J. Pharmacol. 2001; 411:1–10.
- Halliwell
B,Gutteridge J.Free Radicals in Biology and Medicine.Oxford, UK:Oxford
Univ.Press, 2007.
- Han
D,Loukianoff S,McLaughlin L.Oxidative stress indices:analytical aspects
and significance.In Handbook of Oxidants and Antioxidants in
Exercise,edited by Sen CK,L Pacher,O.Hanninen.Amstredam:Elsevier,
2000.p 433-483.
- Holt S.G.R (1999) in Critical Care
Focus ,vol
I.,Renal failure pp 15-20 BM.
- Holmgren
A,Johansson C,Berndt C,Lonn ME,Hudemann C,Lillig CH.Thiol
redox
control via thioredoxin and glutaredoxin systems.Biochem. Soc. Trans.
33: 1375-1377, 2005.
- Holmgren A. Thioredoxin .Ann.
Rev.
Biochem 54:27-271,1985.
- Hwang E.S., Kim
G.H.Biomarkers foroxidative stress status of DNA,
lipids, proteins in vitro and in vivo cancer research.Toxicology
229:1-10, 2007.
- Iadecola C., XU
X., Zhang F.,
EL-FAKAHANY E.E., Ross M.E. Marked induction of calcium-independent
nitric oxide synthase activity after focal ischemia. J. Cereb. Blood.
Flow. Metab. 1995a;15:52–59.
- Jones
DP.Redefining oxidative stress.Antioxid Redox Signal
8:1865-1879,2006.
- Kenneth M.Baldwin- Research in
the exercices
sciences.Where do we go from here.J.Appl.Physion 88:332-336,
2000.
- Kirkman HN.,Gaetani GF. Mammalian catalase:a
venerable
enzymes with new mysteries.Trends. Biochem. Sci 32:44-50, 2007.
- Kim
K., Kim IH., Lee Ky.,Rhee SG.,Stadtman ER.the isolation and
purification of a specific”protector” protein which
inhibits enzyme inactivation by a thiol/Fe (III) oxygen mixed-function
oxidation system. J. Biol.Chem 263:4704-4711, 1988.
- Knowles
S. R.G., Palacios M., Palmer R.M., Moncada S. Formation of
nitric oxide from L-arginine in the central nervous system: a
transduction mechanism for stimulation of the soluble guanylate
cyclase. Proc. Natl. Acad. Sci. U.S.A. 1989;86: 5159–5162.
- Koemia
K., Hayashi Y., Naito Y., Watanabe Y. Inhibition of neuronal
nitric-oxide synthase by calcium/calmodulin-dependent protein kinase II
through Ser847 phosphorylation in NG108-NG115 neuronal cells. J. Biol.
Chem. 2000; 275: 28139–28143.
- Lundberg
M.,Johansson C.,Chandra j.,Enoksson m.,Jacobsson G.,Ljung J.,
JohanssonM,holmgren A.-Cloning and expression of a novel human
glutaredoxin(Grx2) with mitochondrial and nuclear isoforms.J.
Biol. Chem 276: 26269-26275, 2001.
- Mao J. NMDA
and opioid receptors: their interactions in antinociception, tolerance
and neuroplasticity. Brain Res. Rev. 1999; 30:289–304.
- Mayer
D.J., Mao J., Holt J., Prince D.D. Cellular interactions of
neuropathic pain, morphine tolerance, and their interactions. Proc.
Natl. Acad. Sci. U.S.A. 1999;96:7731–7736.
- Meister
A.,Anderson ME.Glutathione.Annu.Rev.Biochem 52;711-760, 1983.
- Nakane
M., Schmidt H.H., Pollock J.S., Forstermann U., Murad F. Cloned
human brain nitric oxide synthase is highly expressed in skeletal
muscle. FEBS Lett. 1993; 316: 175–180.
- Osawa
Y. and
Williams M.S (1996) Free Radic. Biol..Med. 21:35-41.
- Powers
SK., Kavazis AN., McClung JM. Oxidative stress and
disuse
muscle atropy.J.Appl.Physiol.102: 2389-2397, 2007.
- Radak
Z,
Taylor AW, Ohno H, Goto S. Adaptation to exercise-induced oxidative
stress: from muscle to brain. Exerc. Immunol. Rev. 2001; 7:90-107.
- Reeder
.B.J.,Wilson M.T., Holt.S. and Moore K (2002). Biochemistry
4;367-375.
- Roth S, and Dröge W. Regulation
of interleukin-2 production,
interleukin 2 mRNA expression and intracellular glutathione
levels
in ex vivo derived T lymphocytes by lactate. Eur. J.
Immunol 21: 1933-1937, 1991.
- Roberts
LJ,Morrow JD.Measurement of F2-isoprostanes as an index of
oxidative stress in vivo.Free. Radic. Biol. Med 28: 505-513, 2000.
- Salvador
A.Sousa J.,Pinto RE.hydroperoxyl, superoxid and pH gradient in the
mitochondrial matrix:a theoretical assessement. Free. Radic. Biol. Med.
31:1208-1215, 2001.
- Sachdev
S,Davies
KJ.Production,detection,adaptive,responses to free radicals in
exercise. Free. Radic. Biol. Med. 44:215-223, 2008.
- ScottK.,Powers
and Malcolm J. Jackson-Physiological rewiev. 88:1243-1276, 2008.
- Sheng
H., S chmidtH.H., Nakane M., Mitchell J.A., Pollock J.S.,
Forstermann U., Murad F., Schmidt H.H.W. Characterization and
localization of nitric oxide synthase in non-adrenergic non-cholinergic
nerves from bovine retractor penis muscles. Br. J. Pharmacol.
1992;106:768–773. STAMLER J.S.,
MEISSNER G.
Physiology of nitric oxide in skeletal muscle. Physiol. Rev. 2001;81:
209–23.
- Silvagno F., XIA H., Bredt D.S.
Neuronal
nitric-oxide
synthase-mu, an alternatively spliced isoform expressed in
differentiated skeletal muscle. J. Biol. Chem. 1996;271:
11204–11208.
- Sies H.Oxidative
stress.london:Academic, 1985.
- Stamler JS.,Meissner
G.
Physiology of nitric oxide in skeletal muscle.Physiology
Rev.81:209-237, 2001.
- Urso, M. L. and Clarkson, P.
M. (2003)
Oxidative stress, exercise, and antioxidant supplementation. Toxicology
189, 41-54.
- Yi
B,Maeda N.-α- Lipoic acid prevents the increase in
atherosclerosis induced by diabetes in apolipoprotein E-deficient mice
fed high-fat/low-cholesterol diet.Diabetes 55:2238-2244, 2006.
Marius-Daniel
RADU, Stelian SCHIOPU, Dragomir COPREAN Universitatea Ovidius Constanta,
Facultatea de Stiinte ale Naturii,marius_radu_ursu@yahoo.com ,
drd_maryus@yahoo.com 18
ianuarie 2010
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