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Preferential skeletal muscle myosin loss in response to mechanical silencing in a novel rat intensive care unit model: underlying mechanisms

机译:在新型大鼠重症监护病房模型中对机械沉默产生的优先骨骼肌肌球蛋白损失:潜在机制

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摘要

Non-technical summaryWasting and severely impaired function of skeletal muscle is frequently observed in critically ill intensive care unit (ICU) patients, with negative consequences for recovery and quality of life. An experimental rat ICU model has been used to study the mechanisms underlying this unique wasting condition in neuromuscularly blocked and mechanically ventilated animals at durations varying between 6 h and 2 weeks. The complete ‘mechanical silencing’ of skeletal muscle (removal of both weight bearing and activation) resulted in a specific myopathy frequently observed in ICU patients and characterized by a preferential loss of the motor protein myosin. A highly complex and coordinated protein synthesis and degradation system was observed in the time-resolved analyses. It is suggested the ‘mechanical silencing’ of skeletal muscle is a dominating factor triggering the specific myopathy associated with the ICU intervention, and strongly supporting the importance of interventions counteracting the complete unloading in ICU patients.
机译:非技术摘要在重症重症监护病房(ICU)患者中经常观察到骨骼肌功能的浪费和严重受损,对恢复和生活质量产生负面影响。实验性大鼠ICU模型已被用于研究在6小时至2周之间变化的神经肌肉阻塞和机械通气动物中这种独特的消瘦状况的潜在机制。骨骼肌的完全“机械沉默”(去除负重和激活)导致了在ICU患者中经常观察到的一种特殊的肌病,其特征是运动蛋白肌球蛋白的优先丢失。在时间分辨分析中观察到高度复杂和协调的蛋白质合成和降解系统。建议骨骼肌的“机械沉默”是触发与ICU干预相关的特定肌病的主要因素,并强烈支持抵消ICU患者完全负荷的干预措施的重要性。

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