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磁场通过调节 Pgc-1α 表达与代谢和肠道微生物组相关:一项体外磁促代谢研究的后续。

Magnetic fields modulate metabolism and gut microbiome in correlation with Pgc-1α expression: Follow-up to an in vitro magnetic mitohormetic study.

机构信息

Department of Surgery, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore.

Biolonic Currents Electromagnetic Pulsing Systems Laboratory, BICEPS, National University of Singapore, Singapore, Singapore.

出版信息

FASEB J. 2020 Aug;34(8):11143-11167. doi: 10.1096/fj.201903005RR. Epub 2020 Jul 6.

Abstract

Exercise modulates metabolism and the gut microbiome. Brief exposure to low mT-range pulsing electromagnetic fields (PEMFs) was previously shown to accentuate in vitro myogenesis and mitochondriogenesis by activating a calcium-mitochondrial axis upstream of PGC-1α transcriptional upregulation, recapitulating a genetic response implicated in exercise-induced metabolic adaptations. We compared the effects of analogous PEMF exposure (1.5 mT, 10 min/week), with and without exercise, on systemic metabolism and gut microbiome in four groups of mice: (a) no intervention; (b) PEMF treatment; (c) exercise; (d) exercise and PEMF treatment. The combination of PEMFs and exercise for 6 weeks enhanced running performance and upregulated muscular and adipose Pgc-1α transcript levels, whereas exercise alone was incapable of elevating Pgc-1α levels. The gut microbiome Firmicutes/Bacteroidetes ratio decreased with exercise and PEMF exposure, alone or in combination, which has been associated in published studies with an increase in lean body mass. After 2 months, brief PEMF treatment alone increased Pgc-1α and mitohormetic gene expression and after >4 months PEMF treatment alone enhanced oxidative muscle expression, fatty acid oxidation, and reduced insulin levels. Hence, short-term PEMF treatment was sufficient to instigate PGC-1α-associated transcriptional cascades governing systemic mitohormetic adaptations, whereas longer-term PEMF treatment was capable of inducing related metabolic adaptations independently of exercise.

摘要

运动调节代谢和肠道微生物组。先前的研究表明,短暂暴露于低 mT 范围脉冲电磁场(PEMF)中,通过激活 PGC-1α 转录上调的上游钙-线粒体轴,增强体外成肌和线粒体生成,从而模拟与运动引起的代谢适应相关的遗传反应。我们比较了类似的 PEMF 暴露(1.5 mT,10 分钟/周),有无运动,对四组小鼠的系统代谢和肠道微生物组的影响:(a)无干预;(b)PEMF 治疗;(c)运动;(d)运动和 PEMF 治疗。6 周的 PEMF 和运动联合使用增强了跑步表现,并上调了肌肉和脂肪组织中的 Pgc-1α 转录水平,而单独运动则不能提高 Pgc-1α 水平。肠道微生物群Firmicutes/Bacteroidetes 比例随着运动和 PEMF 暴露的单独或联合使用而降低,这在已发表的研究中与瘦体重增加有关。2 个月后,单独短暂的 PEMF 处理增加了 Pgc-1α 和促线粒体基因的表达,4 个月后,单独的 PEMF 处理增强了氧化肌肉表达、脂肪酸氧化和降低胰岛素水平。因此,短期 PEMF 处理足以引发与 PGC-1α 相关的转录级联,从而控制全身促线粒体适应,而长期 PEMF 处理能够独立于运动诱导相关的代谢适应。

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