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Vibration mechanosignals superimposed to resistive exercise result in baseline skeletal muscle transcriptome profiles following chronic disuse in bed rest

机译:在卧床休息长期停用后与阻力运动叠加的振动机械信号会导致基线骨骼肌转录组概况

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摘要

Disuse-induced muscle atrophy is a major concern in aging, in neuromuscular diseases, post-traumatic injury and in microgravity life sciences affecting health and fitness also of crew members in spaceflight. By using a laboratory analogue to body unloading we perform for the first time global gene expression profiling joined to specific proteomic analysis to map molecular adaptations in disused (60 days of bed rest) human soleus muscle (CTR) and in response to a resistive exercise (RE) countermeasure protocol without and with superimposed vibration mechanosignals (RVE). Adopting Affymetrix GeneChip technology we identified 235 differently transcribed genes in the CTR group (end- vs. pre-bed rest). RE comprised 206 differentially expressed genes, whereas only 51 changed gene transcripts were found in RVE. Most gene transcription and proteomic changes were linked to various key metabolic pathways (glycolysis, oxidative phosphorylation, tricarboxylic acid (TCA) cycle, lipid metabolism) and to functional contractile structures. Gene expression profiling in bed rest identified a novel set of genes explicitly responsive to vibration mechanosignals in human soleus. This new finding highlights the efficacy of RVE protocol in reducing key signs of disuse maladaptation and atrophy, and to maintain a close-to-normal skeletal muscle quality outcome following chronic disuse in bed rest.
机译:废弃引起的肌肉萎缩是衰老,神经肌肉疾病,创伤后伤害以及影响航天员机体健康和适应性的微重力生命科学中的主要问题。通过使用实验室类似物进行人体卸荷,我们首次进行了全球基因表达谱分析,并结合了特定的蛋白质组学分析,以绘制废弃的(卧床休息60天)比目鱼肌(CTR)中的分子适应情况以及对抵抗运动的反应( RE)对策协议,不包含和包含叠加的振动机械信号(RVE)。通过使用Affymetrix GeneChip技术,我们在CTR组中识别了235种不同转录的基因(卧床休息与卧床休息)。 RE包含206个差异表达的基因,而RVE中仅发现51个变化的基因转录本。大多数基因转录和蛋白质组学变化与各种关键代谢途径(糖酵解,氧化磷酸化,三羧酸(TCA)循环,脂质代谢)和功能性收缩结构有关。卧床休息中的基因表达谱分析确定了一组新的基因,这些基因对人类比目鱼的振动机械信号有明显反应。这一新发现凸显了RVE协议在减少长期停用卧床休息后适应不良和萎缩的关键迹象以及维持接近正常骨骼肌质量结果方面的功效。

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