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Extreme exercise and oxidative DNA modification

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CONTRIBUTORS:
  Author Poulsen, H. E.
  Author Loft, S.
  Author Vistisen, K.
JOURNAL:
  Journal of Sports Sciences (JSS), 14(4), ?? - ??.
YEAR: 1996
PUB TYPE: Journal Article
SUBJECT(S): EXERCISE; FREE-RADICAL; MAN; DNA
DISCIPLINE: No discipline assigned
HTTP:
LANGUAGE: English
PUB ID: 103-366-521 (Last edited on 2002/02/27 18:45:00 US/Mountain)
SPONSOR(S):
 
ABSTRACT:
Extreme exercise increases oxygen uptake with a potential for increased formation of reactive oxygen species. Damage to biomolecules may occur if such an increase exceeds the protective capacity of antioxidant defence mechanisms. Vigorous exercise amounting to approximately 10 h a day for 30 days increased the rate of oxidative DNA modification by 33 percent (95 percent confidence limits, 3-67 percent; P less than 0.02) in 20 men owing to the urinary excretion of 8-oxo-7,8-dihydro-2'-deoxyguanosine, an oxidatively modified deoxynucleoside originating from nuclear DNA repair, oxidation of the nucleotide pool from mitochondrial DNA and/or from cell turnover. Oxidative stress to DNa points to a risk for the development of cancer and premature ageing from extreme exercise.
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