MFN2型
TFAM公司
柠檬酸合酶
线粒体生物发生
SIRT3
内科学
医学
有氧运动
肌酸激酶
内分泌学
偏心运动
线粒体
缺氧(环境)
氧化应激
化学
线粒体DNA
线粒体融合
肌肉损伤
生物化学
锡尔图因
氧气
酶
有机化学
乙酰化
基因
作者
David Rizo‐Roca,Juan Gabriel Ríos-Kristjánsson,Cristián Núñez-Espinosa,Estela Santos‐Alves,José Magalhães,António Ascensão,Teresa Pagés,Ginés Viscor,Joan Ramón Torrella
标识
DOI:10.1139/apnm-2016-0526
摘要
Unaccustomed eccentric contractions induce muscle damage, calcium homeostasis disruption, and mitochondrial alterations. Since exercise and hypoxia are known to modulate mitochondrial function, we aimed to analyze the effects on eccentric exercise-induced muscle damage (EEIMD) in trained rats using 2 recovery protocols based on: (i) intermittent hypobaric hypoxia (IHH) and (ii) IHH followed by exercise. The expression of biomarkers related to mitochondrial biogenesis, dynamics, oxidative stress, and bioenergetics was evaluated. Soleus muscles were excised before (CTRL) and 1, 3, 7, and 14 days after an EEIMD protocol. The following treatments were applied 1 day after the EEIMD: passive normobaric recovery (PNR), 4 h daily exposure to passive IHH at 4000 m (PHR) or IHH exposure followed by aerobic exercise (AHR). Citrate synthase activity was reduced at 7 and 14 days after application of the EEIMD protocol. However, this reduction was attenuated in AHR rats at day 14. PGC-1α and Sirt3 and TOM20 levels had decreased after 1 and 3 days, but the AHR group exhibited increased expression of these proteins, as well as of Tfam, by the end of the protocol. Mfn2 greatly reduced during the first 72 h, but returned to basal levels passively. At day 14, AHR rats had higher levels of Mfn2, OPA1, and Drp1 than PNR animals. Both groups exposed to IHH showed a lower p66shc(ser36)/p66shc ratio than PNR animals, as well as higher complex IV subunit I and ANT levels. These results suggest that IHH positively modulates key mitochondrial aspects after EEIMD, especially when combined with aerobic exercise.
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