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最大强度运动诱导不同身体成分年轻男性的脂肪因子分泌并破坏氧化-抗氧化平衡。

Maximal Intensity Exercise Induces Adipokine Secretion and Disrupts Prooxidant-Antioxidant Balance in Young Men with Different Body Composition.

作者信息

Wiecek Magdalena, Mardyla Mateusz, Szymura Jadwiga, Kantorowicz Malgorzata, Kusmierczyk Justyna, Maciejczyk Marcin, Szygula Zbigniew

机构信息

Department of Physiology and Biochemistry, Institute of Biomedical Sciences, Faculty of Physical Education and Sport, University of Physical Education in Kraków, 31-571 Kraków, Poland.

Department of Clinical Rehabilitation, Faculty of Motor Rehabilitation, University of Physical Education in Kraków, 31-571 Kraków, Poland.

出版信息

Int J Mol Sci. 2025 Jan 3;26(1):350. doi: 10.3390/ijms26010350.

Abstract

Maximal physical effort induces a disturbance in the body's energy homeostasis and causes oxidative stress. The aim of the study was to determine whether prooxidant-antioxidant balance disturbances and the secretion of adipokines regulating metabolism, induced by maximal intensity exercise, are dependent on body composition in young, healthy, non-obese individuals. We determined changes in the concentration of advanced protein oxidation products (AOPP), markers of oxidative damage to nucleic acids (DNA/RNA/ox), and lipid peroxidation (LPO); catalase (CAT), superoxide dismutase (SOD), and glutathione peroxidase (GPx) activity, as well as concentrations of visfatin, leptin, resistin, adiponectin, asprosin, and irisin in the blood before and after maximal intensity exercise in men with above-average muscle mass (NFAT-HLBM), above-average fat mass (HFAT-NLBM), and with average body composition (NFAT-NLBM). We corrected the post-exercise results for the percentage change in plasma volume. In all groups after exercise, there was an increase in LPO and resistin. In HFAT-NLBM, additionally, an increase in CAT and a decrease in SOD activity were noted, and in NFAT-NLBM, an increase in visfatin concentration was observed. In our study, the effect was demonstrated of a maximal effort on six (LPO, CAT, SOD, visfatin, resistin, and asprosin) of the twelve parameters investigated, while the effect of body composition on all parameters investigated was insignificant. Maximal intensity aerobic exercise induces secretion of resistin and damages lipids regardless of the exercising subjects' body composition. Large fat tissue content predisposes to exercise-induced disorders in the activity of antioxidant enzymes. We have also shown that it is necessary to consider changes in blood plasma volume in the assessment of post-exercise biochemical marker levels.

摘要

最大程度的体力消耗会引起身体能量稳态的紊乱并导致氧化应激。本研究的目的是确定在年轻、健康、非肥胖个体中,由最大强度运动诱导的促氧化剂-抗氧化剂平衡紊乱以及调节代谢的脂肪因子分泌是否依赖于身体成分。我们测定了肌肉量高于平均水平(NFAT-HLBM)、脂肪量高于平均水平(HFAT-NLBM)以及身体成分处于平均水平(NFAT-NLBM)的男性在最大强度运动前后血液中晚期蛋白质氧化产物(AOPP)的浓度变化、核酸氧化损伤标志物(DNA/RNA/ox)以及脂质过氧化(LPO)情况;过氧化氢酶(CAT)、超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GPx)的活性,以及内脂素、瘦素、抵抗素、脂联素、脂肪因子和鸢尾素的浓度。我们对运动后结果进行了血浆容量百分比变化的校正。运动后所有组中,LPO和抵抗素均增加。此外,在HFAT-NLBM组中,观察到CAT增加和SOD活性降低,而在NFAT-NLBM组中,内脂素浓度增加。在我们的研究中,最大努力对所研究的12个参数中的6个(LPO、CAT、SOD、内脂素、抵抗素和脂肪因子)产生了影响,而身体成分对所有研究参数的影响不显著。无论运动者的身体成分如何,最大强度有氧运动都会诱导抵抗素分泌并损害脂质。大量的脂肪组织含量易导致运动引起的抗氧化酶活性紊乱。我们还表明,在评估运动后生化标志物水平时,有必要考虑血浆容量的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9962/11721682/50ebbd879e5c/ijms-26-00350-g001.jpg

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