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© 2002 The American Society for Nutritional Sciences J. Nutr. 132:1720S-1724S, June 2002


Supplement: Waltham International Symposium

Role of Dietary Antioxidants to Protect against DNA Damage in Adult Dogs

Paul R. Heaton2, Catrina F. Reed, Sarah J. Mann, Raymond Ransley, Joy Stevenson, Chris J. Charlton, Brigitte H. E. Smith, E. Jean Harper and John M. Rawlings

Waltham Centre for Pet Nutrition, Leicestershire, UK

2To whom correspondence should be addressed. E-mail: paul.heaton{at}eu.effem.com.

We studied the effects of feeding an antioxidant blend of vitamins, minerals and carotenoids to a mixed adult dog population (n = 40, mean 4.4 ± 1.85 y) for a 16-wk period. Compared to the control group of dogs (n = 20), the antioxidant (AOX)-supplemented group of dogs (n = 20) demonstrated significant increases in plasma levels of vitamin E and taurine by 4 wk of supplementation (P < 0.01) and total antioxidant activity (as measured by ferric-reducing antioxidant power assay) by 8 wk of supplementation (P < 0.05). Following 8 wk of supplementation, the AOX-supplemented dogs also showed significant reductions in both endogenous and exogenous DNA damage (P < 0.005) compared to that of the control dogs, as measured by the comet assay. Over an 8-wk rabies vaccination course that started at 8 wk supplementation, the AOX-supplemented dogs also demonstrated significantly higher vaccine-specific virus-neutralizing antibody levels at 2, 4 and 6 wk postvaccination (P < 0.05) and a tendency toward establishing a vaccine-specific antibody response quicker than did the control group of dogs. These findings in dogs suggest that antioxidant supplementation can achieve sustained increases in circulating levels of antioxidants that exert a protective effect by a decrease in DNA damage, leading to improved immunological performance. These findings also have implications in a wider context where free-radical damage has been associated with a variety of degenerative disorders and the aging process in general.


KEY WORDS: • dogs • antioxidants • DNA damage • comet assay • vaccination




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