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高负荷抗阻运动后补充特定胶原蛋白肽可上调骨骼肌信号转导相关通路中的基因表达。

Supplementation of Specific Collagen Peptides Following High-Load Resistance Exercise Upregulates Gene Expression in Pathways Involved in Skeletal Muscle Signal Transduction.

作者信息

Centner Christoph, Jerger Simon, Mallard Alistair, Herrmann Anna, Varfolomeeva Eugenia, Gollhofer Sandra, Oesser Steffen, Sticht Carsten, Gretz Norbert, Aagaard Per, Nielsen Jakob L, Frandsen Ulrik, Suetta Charlotte, Gollhofer Albert, König Daniel

机构信息

Department of Sport and Sport Science, University of Freiburg, Freiburg, Germany.

Praxisklinik Rennbahn, Muttenz, Switzerland.

出版信息

Front Physiol. 2022 Apr 5;13:838004. doi: 10.3389/fphys.2022.838004. eCollection 2022.

Abstract

Previous evidence suggests that resistance training in combination with specific collagen peptides (CP) improves adaptive responses of the muscular apparatus. Although beneficial effects have been repeatedly demonstrated, the underlying mechanisms are not well understood. Therefore, the primary objective of the present randomized trial was to elucidate differences in gene expression pathways related to skeletal muscle signal transduction following acute high-load resistance exercise with and without CP intake. Recreationally active male participants were equally randomized to high-load leg extension exercise in combination with 15 g CP or placebo (PLA) supplementation. Muscle biopsies from the vastus lateralis muscle were obtained at baseline as well as 1, 4 and 24 h post exercise to investigate gene expression using next generation sequencing analysis. Several important anabolic pathways including PI3K-Akt and MAPK pathways were significantly upregulated at 1 and 4 h post-exercise. Significant between-group differences for both pathways were identified at the 4 h time point demonstrating a more pronounced effect after CP intake. Gene expression related to the mTOR pathway demonstrated a higher visual increase in the CP group compared to PLA by trend, but failed to achieve statistically significant group differences. The current findings revealed a significantly higher upregulation of key anabolic pathways (PI3K-Akt, MAPK) in human skeletal muscle 4 h following an acute resistance training combined with intake of 15 g of specific collagen peptides compared to placebo. Further investigations should examine potential relationships between upregulated gene expression and changes in myofibrillar protein synthesis as well as potential long-term effects on anabolic pathways on the protein level.

摘要

先前的证据表明,抗阻训练与特定的胶原蛋白肽(CP)相结合可改善肌肉系统的适应性反应。尽管这种有益效果已被反复证实,但其潜在机制尚未完全明确。因此,本随机试验的主要目的是阐明在急性高负荷抗阻运动中,摄入与不摄入CP后,骨骼肌信号转导相关基因表达途径的差异。将有运动习惯的男性参与者平均随机分为两组,一组进行高负荷腿部伸展运动并补充15克CP,另一组补充安慰剂(PLA)。在基线以及运动后1小时、4小时和24小时,从股外侧肌获取肌肉活检样本,采用下一代测序分析来研究基因表达。包括PI3K-Akt和MAPK途径在内的几个重要合成代谢途径在运动后1小时和4小时显著上调。在4小时这个时间点,发现这两个途径在组间存在显著差异,表明摄入CP后效果更显著。与mTOR途径相关的基因表达在CP组相比PLA组有更高的视觉上升趋势,但未达到统计学上的显著组间差异。目前的研究结果显示,与安慰剂相比,在急性抗阻训练并摄入15克特定胶原蛋白肽后4小时,人体骨骼肌中关键合成代谢途径(PI3K-Akt、MAPK)的上调更为显著。进一步的研究应探讨上调的基因表达与肌原纤维蛋白合成变化之间的潜在关系,以及对蛋白质水平合成代谢途径的潜在长期影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7e5/9037237/d932b79e2f4b/fphys-13-838004-g001.jpg

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