Intermittent hypoxic training: implications for lipid peroxidation induced by acute normoxic exercise in active men
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Bailey, DM
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Univ Glamorgan, Sch Appl Sci, Hypoxia Res Unit, Hlth & Exercise Sci Res Lab, Pontypridd CF37 1DL, M Glam, WalesUniv Glamorgan, Sch Appl Sci, Hypoxia Res Unit, Hlth & Exercise Sci Res Lab, Pontypridd CF37 1DL, M Glam, Wales
Bailey, DM
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Davies, B
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机构:Univ Glamorgan, Sch Appl Sci, Hypoxia Res Unit, Hlth & Exercise Sci Res Lab, Pontypridd CF37 1DL, M Glam, Wales
Davies, B
Young, IS
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机构:Univ Glamorgan, Sch Appl Sci, Hypoxia Res Unit, Hlth & Exercise Sci Res Lab, Pontypridd CF37 1DL, M Glam, Wales
Young, IS
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[1] Univ Glamorgan, Sch Appl Sci, Hypoxia Res Unit, Hlth & Exercise Sci Res Lab, Pontypridd CF37 1DL, M Glam, Wales
Oxidant generation during regular physical exercise training may influence the adaptive responses that have been shown to confer protection against oxidative stress induced by subsequent acute exercise. To examine this, we randomly assigned 32 males to either a normoxic (n = 14) or a hypoxic (n = 18) group. During the acute phase, subjects in the hypoxic group performed two maximal cycling tests in a randomized double-blind fashion :one under conditions of normoxia and the other under hypoxic conditions (inspired fraction of O-2 = 0.21 and 0.16 respectively). During the intermittent phase, the normoxic and hypoxic groups each trained for 4 weeks at the same relative exercise intensity, under conditions of normoxia and hypoxia respectively. During acute exercise under hypoxic conditions, the venous concentrations of lipid hydroperoxides and malondialdehyde were increased, despite a comparatively lower maximal oxygen uptake ((V) over dot O-2max) (P < 0.05 compared with normoxia). The increases in lipid hydroperoxides and malondialdehyde were correlated with the exercise-induced decrease in arterial haemoglobin oxygen saturation (r = -0.61 and r = -0.50 respectively; P < 0.05), but not with (V) over dot O-2max. Intermittent hypoxic training attenuated the increases in lipid hydroperoxides and malondialdehyde induced by acute normoxic exercise more effectively than did normoxic training, due to a selective mobilization of x-tocopherol (P < 0.05). The latter was related to enhanced exercise-induced mobilization/oxidation of blood lipids due to a selective increase in (V) over dot O-2max (P < 0.05 compared with normoxic group). We conclude that lipid peroxidation induced by acute exercise (1) increases during hypoxia; (2) is not regulated exclusively by a mass action effect of (V) over dot O-2; and (3) is selectively attenuated by regular hypoxic training. Oxidative stress may thus be considered as a biological prerequisite for adaptation to physical stress in humans.
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页码:465 / 475
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Bailey DM, 2001, AVIAT SPACE ENVIR MD, V72, P513
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Univ Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, WalesUniv Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, Wales
Bailey, DM
Davies, B
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Univ Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, WalesUniv Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, Wales
Davies, B
Baker, J
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Univ Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, WalesUniv Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, Wales
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Univ Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, WalesUniv Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, Wales
Bailey, DM
Davies, B
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Univ Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, WalesUniv Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, Wales
Davies, B
Baker, J
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Univ Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, WalesUniv Glamorgan, Sch Appl Sci, Hlth & Exercise Sci Res Lab, Hypoxia Res Unit, Pontypridd CF37 1DL, M Glam, Wales