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高频振荡通气可减轻肺损伤中肺泡巨噬细胞和中性粒细胞的活化。

High frequency oscillatory ventilation attenuates the activation of alveolar macrophages and neutrophils in lung injury.

作者信息

Shimaoka M, Fujino Y, Taenaka N, Hiroi T, Kiyono H, Yoshiya I

机构信息

Intensive Care Unit, Osaka University Hospital, Osaka University, Yamadaoka, Suita, Osaka 565, Japan.

出版信息

Crit Care. 1998;2(1):35-39. doi: 10.1186/cc122.

Abstract

BACKGROUND

Recent investigations have shown that leukocyte activation is involved in the pathogenesis of ventilator-associated lung injury. This study was designed to investigate whether the inflammatory responses and deterioration of oxygenation in ventilator-associated lung injury are attenuated by high-frequency oscillatory ventilation (HFO). We analyzed the effects of HFO compared with conventional mechanical ventilation (CMV) on the activation of pulmonary macrophages and neutrophils in 10 female rabbits. RESULTS: After surfactant depletion, the rabbits were ventilated by CMV or HFO at the same mean airway pressure. Surfactant-depletion followed by 4 h mechanical ventilation hindered pulmonary oxygenation in both groups. Impairment of oxygenation was less severe in the HFO group than in the CMV group. In the HFO group the infiltration of granulocytes into alveolar spaces occurred more readily than in the CMV group. Compared with CMV, HFO resulted in greater attenuation of beta2-integrin expression, not only on granulocytes, but also on macrophages. CONCLUSIONS: In the surfactant-depleted lung, the activation of leukocytes was attenuated by HFO. Reduced inflammatory response correlated with decreased impairment of oxygenation. HFO may reduce lung injury via the attenuation of pulmonary inflammation.

摘要

背景

近期研究表明,白细胞激活参与了呼吸机相关性肺损伤的发病机制。本研究旨在探讨高频振荡通气(HFO)是否能减轻呼吸机相关性肺损伤中的炎症反应和氧合恶化。我们分析了HFO与传统机械通气(CMV)相比,对10只雌性兔肺巨噬细胞和中性粒细胞激活的影响。结果:表面活性剂耗竭后,兔以相同的平均气道压接受CMV或HFO通气。两组在表面活性剂耗竭后进行4小时机械通气均阻碍了肺氧合。HFO组的氧合损害比CMV组轻。与CMV组相比,HFO组粒细胞更容易浸润到肺泡腔。与CMV相比,HFO不仅使粒细胞上的β2整合素表达,也使巨噬细胞上的β2整合素表达得到更大程度的减弱。结论:在表面活性剂耗竭的肺中,HFO可减轻白细胞激活。炎症反应减轻与氧合损害减轻相关。HFO可能通过减轻肺部炎症来减轻肺损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cc3/29000/d72cd6d52523/cc-2-1-035-1.jpg

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