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骨骼肌对运动的适应不受二甲双胍治疗的影响:2 项随机临床试验的二次分析。

Skeletal muscle adaptations to exercise are not influenced by metformin treatment in humans: secondary analyses of 2 randomized, clinical trials.

机构信息

Centre for Physical Activity Research (CFAS), Rigshospitalet, University Hospital of Copenhagen, Denmark.

Department of Biology, University of Copenhagen, Copenhagen, Denmark.

出版信息

Appl Physiol Nutr Metab. 2022 Mar;47(3):309-320. doi: 10.1139/apnm-2021-0194. Epub 2021 Nov 16.

Abstract

Metformin and exercise both improve glycemic control, but in vitro studies have indicated that an interaction between metformin and exercise occurs in skeletal muscle, suggesting a blunting effect of metformin on exercise training adaptations. Two studies (a double-blind, parallel-group, randomized clinical trial conducted in 29 glucose-intolerant individuals and a double-blind, cross-over trial conducted in 15 healthy lean males) were included in this paper. In both studies, the effect of acute exercise ± metformin treatment on different skeletal muscle variables, previously suggested to be involved in a pharmaco-physiological interaction between metformin and exercise, was assessed. Furthermore, in the parallel-group trial, the effect of 12 weeks of exercise training was assessed. Skeletal muscle biopsies were obtained before and after acute exercise and 12 weeks of exercise training, and mitochondrial respiration, oxidative stress and AMPK activation was determined. Metformin did not significantly affect the effects of acute exercise or exercise training on mitochondrial respiration, oxidative stress or AMPK activation, indicating that the response to acute exercise and exercise training adaptations in skeletal muscle is not affected by metformin treatment. Further studies are needed to investigate whether an interaction between metformin and exercise is present in other tissues, e.g., the gut. Trial registration: ClinicalTrials.gov (NCT03316690 and NCT02951260). Metformin does not affect exercise-induced alterations in mitochondrial respiratory capacity in human skeletal muscle. Metformin does not affect exercise-induced alterations in systemic levels of oxidative stress nor emission of reactive oxygen species from human skeletal muscle. Metformin does not affect exercise-induced AMPK activation in human skeletal muscle.

摘要

二甲双胍和运动均可改善血糖控制,但体外研究表明,二甲双胍和运动在骨骼肌中存在相互作用,提示二甲双胍对运动训练适应的抑制作用。本文纳入了两项研究(一项在 29 名糖耐量受损个体中进行的双盲、平行组、随机临床试验和一项在 15 名健康瘦男性中进行的双盲交叉试验)。在这两项研究中,评估了急性运动±二甲双胍治疗对先前被认为与二甲双胍和运动之间的药理生理相互作用有关的不同骨骼肌变量的影响。此外,在平行组试验中,还评估了 12 周运动训练的效果。在急性运动前后和 12 周运动训练后获得骨骼肌活检,并测定线粒体呼吸、氧化应激和 AMPK 激活。二甲双胍并未显著影响急性运动或运动训练对线粒体呼吸、氧化应激或 AMPK 激活的影响,表明骨骼肌对急性运动和运动训练适应的反应不受二甲双胍治疗的影响。需要进一步研究以调查二甲双胍和运动之间是否存在其他组织(例如肠道)的相互作用。试验注册:ClinicalTrials.gov(NCT03316690 和 NCT02951260)。二甲双胍不影响人骨骼肌中线粒体呼吸能力的运动诱导变化。二甲双胍不影响运动诱导的系统性氧化应激水平的变化,也不影响人骨骼肌中活性氧的释放。二甲双胍不影响人骨骼肌中运动诱导的 AMPK 激活。

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