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Effects of electrical stimulation‐induced resistance exercise training on white and brown adipose tissues and plasma meteorin‐like concentration in rats

机译:电气刺激诱导的抗性运动训练对大鼠白色和棕色脂肪组织和等离子体常臼状浓度的影响

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Chronic endurance exercise training induces morphological and metabolic alterations including mitochondrial biogenesis in white adipose tissue (WAT) and brown adipose tissue (BAT) in rodents. A myokine called meteorin‐like (Metrnl) is associated with morphological and metabolic adaptation and increased in blood after acute resistance exercise. However, the effects of chronic resistance exercise training (RT), which aims to increase muscle mass and strength, on WAT and BAT are unclear. Therefore, we aimed to clarify the effects of RT on morphological and metabolic parameters in WAT and BAT and on plasma Metrnl concentrations. We applied electrical stimulation to both legs of rats as RT three times a week for 4?weeks. RT reduced adipocyte size in subcutaneous WAT but induced no changes in mitochondrial and thermogenesis proteins. In BAT, peroxisome proliferator‐activated receptor gamma coactivator‐1 alpha (PGC‐1α) protein levels and mitochondrial content markers were significantly higher in the RT group compared with the control group. A significant positive correlation was found between the expression of PGC‐1α in BAT and plasma Metrnl concentrations. These results suggest that plasma Metrnl is associated with PGC‐1α and mitochondrial biogenesis in BAT. This study describes a potential role of RT in preventing metabolic diseases via altering WAT and BAT and increasing plasma Mertnl concentrations.
机译:慢性耐力运动训练诱导形态学和代谢改变,包括在啮齿动物中的白色脂肪组织(Wat)和棕色脂肪组织(BAT)中的线粒体生物发生。一个名为Meteorin样(MetRNL)的肌电筒与形态学和代谢适应有关,急性抵抗运动后血液中增加。然而,慢性抗性运动训练(RT)的影响,旨在增加肌肉质量和强度,对Wat和蝙蝠尚不清楚。因此,我们旨在阐明RT对Wat和Bat中的形态学和代谢参数以及血浆MetRN1浓度的影响。我们将电刺激施加到大鼠的两条腿作为Rt 3次,每周3次4?周。 RT降低了皮下Wat的脂肪细胞大小,但诱导了线粒体和热生成蛋白的变化。在蝙蝠中,与对照组的RT组在RT组中,过氧化物体增殖剂活化受体γ(PGC-1α)蛋白水平和线粒体含量标记显着高。在蝙蝠和血浆MetRN1浓度的PGC-1α表达之间发现了显着的阳性相关性。这些结果表明,血浆MetRN1与蝙蝠中的PGC-1α和线粒体生物发生。本研究描述了RT通过改变Wat和蝙蝠和增加等离子体MertN1浓度来防止代谢疾病的潜在作用。

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