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肥胖和环境温度对亚最大运动时生理和氧化反应的影响。

The influence of obesity and ambient temperature on physiological and oxidative responses to submaximal exercise.

机构信息

Department of Leisure and Sports Studies, College of Physical Education, Keimyung University, Daegu, Korea.

Department of Physical Education, College of Physical Education, Keimyung University, Daegu, Korea.

出版信息

Biol Sport. 2014 Jun;31(2):139-44. doi: 10.5604/20831862.1097482. Epub 2014 Apr 5.

Abstract

This study investigated the effects of obesity and ambient temperature on physiological responses and markers of oxidative stress to submaximal exercise in obese and lean people. Sixteen healthy males were divided into an obese group (n=8, %fat: 27.00±3.00%) and a lean group (n=8, %fat: 13.85±2.45%). Study variables were measured during a 60 min submaximal exercise test at 60% VO2max in a neutral (21±1°C) and a cold (4±1°C) environment. Heart rate, blood lactate, rectal temperature, serum levels of malondialdehyde (MDA) and superoxide dismutase (SOD) were measured at rest, during exercise and in recovery. Heart rate of both groups was significantly lower (P<0.05) in the cold than the warm environment, but there were no significant differences between the two groups. Serum SOD activity increased to a significantly greater extent (P<0.05) in the cold than the neutral environment, and remained elevated for longer during exercise in the obese group than the lean group. Serum MDA level during submaximal exercise was not significantly different between conditions or groups. Cold stress in exercise may challenge antioxidant defence mechanisms in obese subjects, but lipid peroxidation remains unchanged.

摘要

这项研究调查了肥胖和环境温度对肥胖和瘦人群体进行亚最大强度运动时生理反应和氧化应激标志物的影响。16 名健康男性被分为肥胖组(n=8,%脂肪:27.00±3.00%)和瘦组(n=8,%脂肪:13.85±2.45%)。在 60%最大摄氧量的 60 分钟亚最大强度运动测试中,分别在中性(21±1°C)和寒冷(4±1°C)环境下测量研究变量。在休息、运动中和恢复期测量心率、血乳酸、直肠温度、血清丙二醛(MDA)和超氧化物歧化酶(SOD)水平。两组的心率在寒冷环境下显著低于(P<0.05)温暖环境,但两组之间没有显著差异。与中性环境相比,寒冷环境下血清 SOD 活性显著增加(P<0.05),且肥胖组在运动期间的 SOD 活性升高持续时间长于瘦组。亚最大强度运动期间血清 MDA 水平在不同条件或组之间无显著差异。运动中的冷应激可能会挑战肥胖个体的抗氧化防御机制,但脂质过氧化仍保持不变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e30/4042661/d53eb3785980/JBS-31-1097482-g001.jpg

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