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Physical activity is associated with retained muscle metabolism in human myotubes challenged with palmitate

机译:身体活动与棕榈酸酯挑战的人类肌管中保留的肌肉代谢有关

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摘要

The aim of this study was to investigate whether physical activity is associated with preserved muscle metabolism in human myotubes challenged with saturated fatty acids. Human muscle satellite cells were isolated from sedentary or active individuals and differentiated into myocytes in culture. Metabolic differences were then investigated in the basal state or after chronic palmitate treatment. At basal, myocytes from sedentary individuals exhibited higher CD36 and HSP70 protein expression as well as elevated phosphorylation of c-Jun NH2-terminal kinase (JNK) and insulin receptor substrate 1 (IRS1) serine307 compared to myocytes from active individuals. Despite equal lipid accumulation following palmitate treatment, myocytes from sedentary individuals exhibited delayed acetyl coenzyme A carboxylase phosphorylation compared to the active group. Myocytes from sedentary individuals had significantly higher basal glucose uptake and palmitate promoted insulin resistance in sedentary myocytes. Importantly, myocytes from active individuals were partially protected from palmitate-induced insulin resistance. Palmitate treatment enhanced IRS1 serine307 phosphorylation in myocytes from sedentary individuals and correlated positively to JNK phosphorylation. In conclusion, muscle satellite cells retain metabolic differences associated with physical activity. Physical activity partially protects myocytes from fatty acid-induced insulin resistance and inactivity is associated with dysregulation of metabolism in satellite cells challenged with palmitate. Although the benefits of physical activity on whole body physiology have been well investigated, this paper presents novel findings that both diet and exercise impact satellite cells directly. Given the fact that satellite cells are important for muscle maintenance, a dysregulated function could have profound effects on health. Therefore the effects of lifestyle on satellite cells needs to be delineated.
机译:这项研究的目的是调查在受到饱和脂肪酸攻击的人肌管中,体育锻炼是否与保留的肌肉代谢有关。从久坐或活动的人身上分离出人类肌肉卫星细胞,并在培养中分化为肌细胞。然后研究基础状态或慢性棕榈酸酯治疗后的代谢差异。与惯性细胞相比,久坐个体的基础细胞表现出较高的CD36和HSP70蛋白表达,以及c-Jun NH2末端激酶(JNK)和胰岛素受体底物1(IRS1)丝氨酸 307 的磷酸化升高来自活跃个体。尽管棕榈酸酯处理后脂质堆积相等,但与活动组相比,久坐的个体的心肌细胞仍显示出延迟的乙酰辅酶A羧化酶磷酸化。久坐的个体的心肌细胞具有较高的基础葡萄糖摄取,而棕榈酸酯促进久坐的心肌细胞的胰岛素抵抗。重要的是,来自活动个体的心肌细胞部分受到棕榈酸酯诱导的胰岛素抵抗的保护。棕榈酸酯处理可增强久坐者心肌细胞中IRS1丝氨酸 307 的磷酸化,并与JNK磷酸化呈正相关。总之,肌肉卫星细胞保留了与体育活动相关的代谢差异。体力活动部分地保护了心肌细胞免受脂肪酸诱导的胰岛素抵抗,并且不活动与棕榈酸酯激发的卫星细胞的代谢失调有关。尽管人们已经充分研究了体育锻炼对全身生理的益处,但本文还是提出了饮食和运动直接影响卫星细胞的新发现。鉴于卫星细胞对肌肉维护很重要,功能失调可能对健康产生深远影响。因此,需要描述生活方式对卫星细胞的影响。

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