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2009 | 16 | 4 |
Tytuł artykułu

Changes in prooxidative-antioxidative balance in rowers following ergometric exercise test of maximal intensity

Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Wydawca
-
Rocznik
Tom
16
Numer
4
Opis fizyczny
p.361-367,fig.,ref.
Twórcy
  • University School of Physical Education in Poznan, Branch Faculty of Physical Culture in Gorzow Wlkp., Gorzow Wlkp., Poland
  • Department of Hygiene, University School of Physical Education in Poznan, Poznan, Poland
autor
  • University School of Physical Education in Poznan, Branch Faculty of Physical Culture in Gorzow Wlkp., Gorzow Wlkp., Poland
autor
  • University School of Physical Education in Poznan, Branch Faculty of Physical Culture in Gorzow Wlkp., Gorzow Wlkp., Poland
Bibliografia
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  • [2] Aslan R., Sekeroglu M.R., Tarakcioglu M., Bayyroglu F., Meral I., Effect of acute and regular exercise on antioxidative enzymes, tissue damage markers and membrane lipid peroxidation of erythrocytes in sedentary students, Turkish Journal of Medical Sciences, 1998, 28: 411-414.
  • [3] Balakrishnan S.D., Anuradha C.V., Exercise, depletion of antioxidants and antioxidant manipu¬lation, Cell Biochemistry and Function, 1998, 16: 269-275.
  • [4] Bourdin M., Messonnier L., Lacour J.R., Laboratory blood lactate profile is suited to on water training monitoring in highly trained rowers, The Journal of Sports Medicine and Physical Fitness, 2004, 44: 337-341.
  • [5] Brites F.D., Evelson P.A., Christiansen M.G., Nicol M.F., Basilico M.J., Wikinski R.W., Llesuy S.F., Soccer players under regular training show oxidative stress but an improved plasma antioxidant status, Clinical Science, 1999, 96: 381-385.
  • [6] Buege J., Aust S.D., The tiobarbituric acid assay, (in:) C.A. Evans, A.T. Diplock, M.C.R. Symones (eds), Techniques in Free Radical Research. Elservier, Amsterdam, London, New York, Tokyo, 1991.
  • [7] Duthie G.G., Robertson J.D., Maughan R.J., Morrice P.C., Blood antioxidant status and erythrocyte lipid peroxidation following distance running, Archives of Biochemistry and Biophysics, 1990, 282: 78-83.
  • [8] Franzoni F.L., Ghiadoni F., Galetta Y., Plantinga V., Lubrano Y., Huang G., Salvetti F., Regoli S., Taddei G., Santoro A., Physical activity, plasma antioxidant capacity, and endothelium-dependent vasodilation in young and older men, American Journal of Hypertension, 2005, 18: 510-516.
  • [9] Goto C., Higashi Y., Kimura M., Noma K., Hara K., Nakagawa K., Kawamura M., Chayama K., Yoshizumi M., Nara I., Effect of different intensities of exercise on endothelium-dependent vasodilation in humans: role of endothelium- dependent nitric oxide and oxidative stress, Circulation, 2003, 108: 530-537.
  • [10] Gunduz F., Senturk U.K., Kuru O., Aktekin B., Aktekin M.R., The effect of one year's swimming exercise on oxidant stress and antioxidant capacity in aged rats, Physiological Research, 2004, 53: 171-176.
  • [11] Hubner-Wozniak E., Panczenko-Kresowska B., Lerczak K., Posnik J., Effects of graded treadmill exercise on the activity of blood antioxidant enzymes, lipid peroxides and nonenzymatic anti- oxidant in long-distance skiers, Biology of Sport, 1994, 11: 217-226.
  • [12] Ilhan N., Kamanli A., Ozmerdivenli R., Ilhan N., Variable effects of exercise intensity on reduced glutathione, thiobarbituric acid reactive substance levels, and glucose concentration, Archives of Medical Research, 2004, 35: 294-300.
  • [13] Kanter M.M., Lesmes G.R., Kaminsky L.A., La Ham-Saeger J., Nequin N.D., Serum creatine kinase and lactate dehydrogenase changes following an eighty kilometer race, Relationship to lipid peroxidation, European Journal of Applied Physio¬logy, 1988, 57: 60-63.
  • [14] Kretzschmar M., Klinger W., The hepatic glutathione system: influences of xenobiotics, Experimental Pathology, 1990, 38: 145-164.
  • [15] Liu J., Yeo H.C., Overvik-Douki E., Hagen T., Doniger S.J., Chu D.W., Brooks G.A., Ames B.N., Chronically and acutely exercised rats: biomarkers of oxidative stress and endogenous antioxidants, Journal of Applied Physiology, 2000, 89: 21-28.
  • [16] Margaritis I., Palazzetti S., Rouso A.S., Richard M.J., Favier A., Antioxidant supplementa¬tion and tapering exercise improve exercise - induced antioxidant response, Journal of the American College of Nutrition, 2003, 22: 147-156.
  • [17] Marzatico F., Pansarasa O., Bertorelli L., Somenzini L., Della Valle G., Blood free radical antioxidant enzymes and lipid peroxides following long-distance and lactacidemic performances in highly trained aerobic and sprint athletes, The Journal of Sports Medicine and Physical Fitness, 1997, 37: 235-239.
  • [18] Messonnier L., Freund H., Bourdin M., Belli A., Lacour J.R., Lactate exchange and removal abilities in rowing performance, Medicine and Science in Sports and Exercise, 1997, 29: 396-401.
  • [19] Metin G., Atukeren P., Alturfan A.A., Gulyasar T., Kaya M., Gumustas M.K., Lipid peroxidation, erythrocyte superoxide-dismutase activity and trace metals in young male footballers, Yonsei Medical Journal, 2003, 44: 979-986.
  • [20] Miller N.J., Rice-Evans C., Davies M.J., Gopinathap V., Milner A., A novel method for measuring antioxidant capacity and its application to monitoring the antioxidant status in premature neonates, Clinical Science, 1993, 84: 407-412.
  • [21] Morillas-Ruiz J.M., Villegas Garcia J.A., Lopez F.J., Vidal-Guevara M.L., Zafrilla P., Effects of polyphenolic antioxidants on exercise-induced oxidative stress, Clinical Nutrition, 2006, 25: 444-453.
  • [22] Niess A.M., Hartmann A., Grunert-Fuchs M., Poch B., Speit G., DNA damage after exhaustive treadmill running in trained and untrained men, International Journal of Sports Medicine, 1996, 17: 397-403.
  • [23] Paglia D.E., Valentine W.N., Studies on quantita¬tive and qualitative characterization of erythrocyte glutathione peroxidase, The Journal of Laboratory and Clinical Medicine, 1967, 70: 158-169.
  • [24] Poprz^cki S., Klapcinska B., Sadowska-Kr^pa E., Activity of antioxidant enzymes in blood hurdlers following maximal exercise, Biology of Sport, 1997, 14: 283-290.
  • [25] Radak Z., Lee K., Choi W., Sunoo S., Kizaki T., Oh-ishi S., Suzuki K., Taniguchi N., Ohno H., Asano K., Oxidative stress induced by intermittent exposure at a simulated altitude of 4000 m decreases mitochondrial superoxide dismutase content in soleus muscle of rats, European Journal of Applied Physiology, 1994, 69: 392-395.
  • [26] Russell A.P., Le Rossignol P.F., Sparrow W.A., Prediction of elite schoolboy 2000m rowing ergometer performance from metabolic, anthropo- metric and strength variables, Journal of Sports Sciences, 1998, 16: 749-754.
  • [27] Schneider C.D., Barp J., Ribeiro J.L., Bello- Klein A., Oliveira A.R., Oxidative stress after three different intensities of running, Canadian Journal of Applied Physiology, 2005, 30: 723-734.
  • [28] Secher N.H., Vaage O., Jackson R., Rowing performance and maximal aerobic power of oarsmen, Scandinavian Journal of Medicine & Science in Sports, 1982, 4: 9-11.
  • [29] Steinacker J.M., Lormes W., Kellmann M., Liu Y., Reissnecker S., Opitz A.-Gress K., Baller B., Gunther K., Petersen K.G., Kallus K.W., Lehmann M., Altenburg D., Training of junior rowers before world championships. Effects on performance, mood state and selected hormonal and metabolic responses, The Journal of Sports Medicine and Physical Fitness, 2000, 40: 327-335.
  • [30] Tsai K., Hsu T.G., Hsu K.M., Cheng H., Liu T.Y., Hsu C.F., Kong C.W., Oxidative DNA damage in human peripheral leukocytes induced by massive aerobic exercise, Free Radical Biology & Medicine, 2001, 31: 1465-1472.
  • [31] Vasankari T.J., Kujala U.M., Vasankari T.M., Vuorimaa T., Ahotupa M., Effects of acute prolonged exercise on serum and LDL oxidation and antioxidant defences, Free Radical Biology & Medicine, 1997, 22: 509-513.
  • [32] Venditti P., Masullo P., Meo S.I., Effect of exercise duration on characteristics of mitochondrial popula¬tion from rat liver, Archives of Biochemistry and Biophysics, 1999, 368: 112-120.
  • [33] Viguie C.A., Frei B., Shigenaga M.K., Ames B.N., Packer L., Brooks G.A., Antioxidant status and indexes of oxidative stress during consecutive days of exercise, Journal of Applied Physiology, 1993, 75: 566-572.
  • [34] Vincent H.K., Powers S.K., Demirel H.A., Coombes J.S., Naito H., Exercise training protects against contraction-induced lipid peroxidation in the diaphragm, European Journal of Applied Physio¬logy, 1999, 79: 268-273.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.agro-f7813150-9e34-4de3-b878-0e2fc5fec7d2
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