Sassoon Catherine S H, Zhu Ercheng, Caiozzo Vincent J
Departmen of Medicine, VA Long Beach Healthcare System, Long Beach, California 90822, USA.
Am J Respir Crit Care Med. 2004 Sep 15;170(6):626-32. doi: 10.1164/rccm.200401-042OC. Epub 2004 Jun 16.
Controlled mechanical ventilation induced a profound diaphragm muscle dysfunction and atrophy. The effects of diaphragmatic contractions with assisted mechanical ventilation on diaphragmatic isometric, isotonic contractile properties, or the expression of muscle atrophy factor-box (MAF-box), the gene responsible for muscle atrophy, are unknown. We hypothesize that assisted mechanical ventilation will preserve diaphragmatic force and prevent overexpression of MAF-box. Studying sedated rabbits randomized equally into control animals, those with 3 days of assisted ventilation, and those with controlled ventilation, we assessed in vitro diaphragmatic isometric and isotonic contractile function. The concentrations of contractile proteins, myosin heavy chain isoform, and MAF-box mRNA were measured. Tetanic force decreased by 14% with assisted ventilation and 48% with controlled ventilation. Maximum shortening velocity tended to increase with controlled compared with assisted ventilation and control. Peak power output decreased 20% with assisted ventilation and 41% with controlled ventilation. Contractile proteins were unchanged with either modes of ventilation; myosin heavy chain 2X mRNA tended to increase and that of 2A to decrease with controlled ventilation. MAF-box gene was overexpressed with controlled ventilation. We conclude that preserving diaphragmatic contractions during mechanical ventilation attenuates the force loss induced by complete inactivity and maintains MAF-box gene expression in control.
控制性机械通气可导致严重的膈肌功能障碍和萎缩。辅助机械通气时膈肌收缩对膈肌等长、等张收缩特性或肌肉萎缩因子盒(MAF-box,负责肌肉萎缩的基因)表达的影响尚不清楚。我们假设辅助机械通气将保留膈肌力量并防止MAF-box过度表达。研究将镇静的家兔随机均分为对照组动物、接受3天辅助通气的动物和接受控制性通气的动物,我们评估了体外膈肌等长和等张收缩功能。测量了收缩蛋白、肌球蛋白重链亚型和MAF-box mRNA的浓度。辅助通气时强直力下降14%,控制性通气时下降48%。与辅助通气和对照组相比,控制性通气时最大缩短速度有增加趋势。辅助通气时峰值功率输出下降20%,控制性通气时下降41%。两种通气模式下收缩蛋白均无变化;控制性通气时肌球蛋白重链2X mRNA有增加趋势,2A的mRNA有减少趋势。控制性通气时MAF-box基因过度表达。我们得出结论,机械通气期间保留膈肌收缩可减轻完全不活动引起的力量损失,并维持对照组中MAF-box基因的表达。