Physiome, Department of Physiology, Hyogo Medical University, 1-1 Mukogawa-cho, Nishinomiya, Hyogo, 663-8501, Japan.
Department of Rehabilitation, Hyogo Prefectural Nishinomiya Hospital, 13-9, Rokutanji, Nishinomiya, Hyogo, 662-0918, Japan.
Sci Rep. 2023 Nov 17;13(1):20136. doi: 10.1038/s41598-023-47093-w.
Ventilator-induced diaphragm dysfunction (VIDD), a dysfunction of the diaphragm muscle caused by prolonged mechanical ventilation (MV), is an important factor that hinders successful weaning from ventilation. We evaluated the effects of electrical stimulation of the diaphragm muscle (pulsed current with off-time intervals) on genetic changes during 12 h of MV (E-V12). Rats were divided into four groups: control, 12-h MV, sham operation, and E-V12 groups. Transcriptome analysis using an RNA microarray revealed that 12-h MV caused upregulation of genes promoting muscle atrophy and downregulation of genes facilitating muscle synthesis, suggesting that 12-h MV is a reasonable method for establishing a VIDD rat model. Of the genes upregulated by 12-h MV, 18 genes were not affected by the sham operation but were downregulated by E-V12. These included genes related to catabolic processes, inflammatory cytokines, and skeletal muscle homeostasis. Of the genes downregulated by 12-h MV, 6 genes were not affected by the sham operation but were upregulated by E-V12. These included genes related to oxygen transport and mitochondrial respiration. These results suggested that 12-h MV shifted gene expression in the diaphragm muscle toward muscle degradation and that electrical stimulation counteracted this shift by suppressing catabolic processes and increasing mitochondrial respiration.
呼吸机诱导膈肌功能障碍(VIDD),是一种由长时间机械通气(MV)引起的膈肌肌肉功能障碍,是阻碍成功脱机的重要因素。我们评估了膈肌肌肉电刺激(带停搏期的脉冲电流)对 12 小时 MV 期间遗传变化的影响(E-V12)。大鼠分为四组:对照组、12 小时 MV 组、假手术组和 E-V12 组。使用 RNA 微阵列进行转录组分析显示,12 小时 MV 导致促进肌肉萎缩的基因上调和促进肌肉合成的基因下调,表明 12 小时 MV 是建立 VIDD 大鼠模型的合理方法。在 12 小时 MV 上调的基因中,有 18 个基因不受假手术影响,但受 E-V12 下调。这些基因与分解代谢过程、炎性细胞因子和骨骼肌稳态有关。在 12 小时 MV 下调的基因中,有 6 个基因不受假手术影响,但受 E-V12 上调。这些基因与氧运输和线粒体呼吸有关。这些结果表明,12 小时 MV 使膈肌肌肉的基因表达向肌肉降解方向转变,而电刺激通过抑制分解代谢和增加线粒体呼吸来对抗这种转变。