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The effects of acute exercise on neu...
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Quindry, John Carl.
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The effects of acute exercise on neutrophils and oxidative stress.
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
The effects of acute exercise on neutrophils and oxidative stress./
作者:
Quindry, John Carl.
面頁冊數:
162 p.
附註:
Chair: Craig Broeder.
Contained By:
Dissertation Abstracts International63-02B.
標題:
Biology, Animal Physiology. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3042423
ISBN:
0493560165
The effects of acute exercise on neutrophils and oxidative stress.
Quindry, John Carl.
The effects of acute exercise on neutrophils and oxidative stress.
- 162 p.
Chair: Craig Broeder.
Thesis (Ph.D.)--East Tennessee State University, 2002.
This study tested the hypothesis that high intensity exercise, independent of total oxygen consumption, results in the most significant elevations in neutrophil (PMN) counts and blood oxidative stress (OS). This study also tested the hypothesis that active individuals have a blunted PMN and OS responses to acute exercise as compared to less active individuals. Nine males (18–30 yrs.) participated in 1 maximal (Max) and 3 sub-maximal exercise sessions. The 3 sub-max trials were: (1) LTplus, 45 min. above lactate threshold (LT), (2) LTminus, 45 min. below LT, and (3) LTplusCE, below LT until total oxygen consumption equaled (about 60 min) the LTplus trial. Blood was drawn before and immediately after, 1hr, and 2hr after exercise for measurement of PMN, myeloperoxidase enzyme (MPO), superoxide (O<sub>2 </sub>−), vitamin C (C), urate (U), malondialdehyde (MDA), and lipid hydroperoxides (LPO). Results indicated an intensity-dependent post exercise PMN increase following Max and LTplus (p ≤ 0.05). Post exercise MPO elevations were significant (p ≤ 0.05) and similar for all trials except LTplus (NS). Furthermore, O<sub>2</sub>− was elevated immediately following Max exercise, while O<sub>2</sub>−/PMN was not. These data indicate that O<sub>2</sub>− elevations occur as PMN counts increase. Post-max, C (p = 0.009), and U (p = 0.034) were depleted indicating a significant reduction in plasma antioxidant fortifications. Subjects were separated according to high (n = 5) and low (n = 4) activity groups based on physical activity history questionnaires. Low activity subjects had higher PMN following maximal exercise. Pre exercise Low–High group differences neared significance for PMN (p = 0.068) and O<sub>2</sub>− (p = 0.09). High activity subjects had higher plasma C levels before and after exercise. Covariate analysis of dietary C intake demonstrated between group differences in plasma vitamin C levels at rest only. These results indicate that maximal intensity exercise resulted in the greatest increase in circulating PMNs and corresponding OS in blood plasma as identified by antioxidant depletion. This study clearly shows that exercise intensity, not total oxygen consumption, plays a role in post exercise neutrophil recruitment, and blood OS. Finally, these results suggest that regular physical activity and increased antioxidant intakes may attenuate the neutrophil rise and OS produced by maximal intensity exercise.
ISBN: 0493560165Subjects--Topical Terms:
1017835
Biology, Animal Physiology.
The effects of acute exercise on neutrophils and oxidative stress.
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This study tested the hypothesis that high intensity exercise, independent of total oxygen consumption, results in the most significant elevations in neutrophil (PMN) counts and blood oxidative stress (OS). This study also tested the hypothesis that active individuals have a blunted PMN and OS responses to acute exercise as compared to less active individuals. Nine males (18–30 yrs.) participated in 1 maximal (Max) and 3 sub-maximal exercise sessions. The 3 sub-max trials were: (1) LTplus, 45 min. above lactate threshold (LT), (2) LTminus, 45 min. below LT, and (3) LTplusCE, below LT until total oxygen consumption equaled (about 60 min) the LTplus trial. Blood was drawn before and immediately after, 1hr, and 2hr after exercise for measurement of PMN, myeloperoxidase enzyme (MPO), superoxide (O<sub>2 </sub>−), vitamin C (C), urate (U), malondialdehyde (MDA), and lipid hydroperoxides (LPO). Results indicated an intensity-dependent post exercise PMN increase following Max and LTplus (p ≤ 0.05). Post exercise MPO elevations were significant (p ≤ 0.05) and similar for all trials except LTplus (NS). Furthermore, O<sub>2</sub>− was elevated immediately following Max exercise, while O<sub>2</sub>−/PMN was not. These data indicate that O<sub>2</sub>− elevations occur as PMN counts increase. Post-max, C (p = 0.009), and U (p = 0.034) were depleted indicating a significant reduction in plasma antioxidant fortifications. Subjects were separated according to high (n = 5) and low (n = 4) activity groups based on physical activity history questionnaires. Low activity subjects had higher PMN following maximal exercise. Pre exercise Low–High group differences neared significance for PMN (p = 0.068) and O<sub>2</sub>− (p = 0.09). High activity subjects had higher plasma C levels before and after exercise. Covariate analysis of dietary C intake demonstrated between group differences in plasma vitamin C levels at rest only. These results indicate that maximal intensity exercise resulted in the greatest increase in circulating PMNs and corresponding OS in blood plasma as identified by antioxidant depletion. This study clearly shows that exercise intensity, not total oxygen consumption, plays a role in post exercise neutrophil recruitment, and blood OS. Finally, these results suggest that regular physical activity and increased antioxidant intakes may attenuate the neutrophil rise and OS produced by maximal intensity exercise.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3042423
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