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Ventilation-Like Mechanical Strain Modulates the Inflammatory Response of BEAS2B Epithelial Cells

机译:像通风一样的机械应变调节BEAS2B上皮细胞的炎症反应

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摘要

Protective mechanical ventilation is aimed at preventing ventilator-induced lung injury while ensuring sufficient gas exchange. A new approach focuses on the temporal profile of the mechanical ventilation. We hypothesized that the temporal mechanical strain profile modulates inflammatory signalling. We applied cyclic strain with various temporal profiles to human bronchial epithelial cells (BEAS2B) and assessed proinflammatory response. The cells were subjected to sinusoidal, rectangular, or triangular strain profile and rectangular strain profile with prestrain set to 0, 25, 50, or 75% of the maximum stain, static strain, and strain resembling a mechanical ventilation-like profile with or without flow-controlled expiration. The BEAS2B response to mechanical load included altered mitochondrial activity, increased superoxide radical levels, NF-kappaB translocation, and release of interleukin-8. The response to strain was substantially modulated by the dynamics of the stimulation pattern. The rate of dynamic changes of the strain profile correlates with the degree of mechanical stress-induced cell response.
机译:保护性机械通气旨在防止呼吸机引起的肺部损伤,同时确保充分的气体交换。一种新方法侧重于机械通气的时间变化。我们假设时间机械应变曲线调节炎症信号。我们对人支气管上皮细胞(BEAS2B)应用了具有不同时间特征的周期性应变,并评估了促炎反应。使细胞经受正弦,矩形或三角形应变曲线和矩形应变曲线,其预应变设置为最大污点,静态应变和类似于或不具有机械通风状曲线的应变的0%,25%,50%或75%流量控制的到期时间。 BEAS2B对机械负荷的反应包括线粒体活性改变,超氧化物自由基水平增加,NF-κB易位和白介素8的释放。应变模式的动态性实质上调节了对应变的响应。应变曲线的动态变化速率与机械应力诱导的细胞反应程度相关。

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