首页> 外文期刊>American journal of respiratory and critical care medicine >Role of Lung-marginated Monocytes in an In Vivo Mouse Model of Ventilator-induced Lung Injury
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Role of Lung-marginated Monocytes in an In Vivo Mouse Model of Ventilator-induced Lung Injury

机译:肺边缘单核细胞在呼吸机诱发的肺损伤的体内小鼠模型中的作用。

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Rationale. Recruited leukocytes play an important role in ventilator-induced lung injury, although studies have focused predominantly on neutrophils. Inflammatory subset Gr-1~(high) monocytes are recruited to sites of inflammation and have been implicated in acute lung injury induced by systemic endotoxin.rnObjectives: To investigate the recruitment and role of Gr-1~(high) monocytes in an in vivo mouse model of ventilator-induced lung injury. Methods: Anesthetized mice were ventilated with low or high stretch. Flow cytometry was used to quantify monocyte subset margination to the lungs, and to assess their in situ cellular activation in response to mechanical stretch. To investigate monocyte involvement in lung injury progression, a two-hit model was used, with a subclinical dose of lipopolysaccharide (intraperitoneal) given 2 hours prior to high-stretch ventilation. In some animals, monocytes were depleted using intravenous clodronate liposomes. Development of lung injury was assessed in ventilated animals by peak inspiratory pressure and respiratory system mechanics.rnMeasurements and Main Results: High-stretch ventilation induced significant pulmonary margination of Gr-1~(high) but not Gr-1~(low) monocytes compared with nonventilated mice. These monocytes displayed increased activation status, with higher CD11b (vs. nonventilated mice) and lower L-selectin expression (vs. low-stretch ventilation). Lipopolysaccharide challenge led to enhanced lung margination of Gr-1~(high) monocytes and neutrophils, and sensitized the lungs to high stretch-induced pulmonary edema. Clodronate-liposome pretreat-ment depleted lung monocytes (but not neutrophils) and significantly attenuated lung injury.rnConclusions: High-stretch mechanical ventilation promotes pulmonary margination of activated Gr-1~(high) monocytes, which play a role in the progression of ventilator-induced lung injury.
机译:基本原理。尽管研究主要集中在嗜中性粒细胞上,但是募集的白细胞在呼吸机诱发的肺损伤中起着重要作用。炎症亚群Gr-1〜(高)单核细胞被募集到炎症部位,并与全身内毒素诱导的急性肺损伤有关。目的:研究Gr-1〜(高)单核细胞在体内的募集及其作用呼吸机诱发的肺损伤的小鼠模型。方法:麻醉的小鼠以低拉伸或高拉伸通气。流式细胞仪用于量化肺单核细胞亚群的边缘化,并评估其对机械牵张的原位细胞活化。为了研究单核细胞参与肺损伤进展的过程,使用了两次打击模型,在高强度通气前2小时给予亚临床剂量的脂多糖(腹膜内)。在某些动物中,静脉注射氯膦酸盐脂质体可清除单核细胞。通过峰值吸气压力和呼吸系统力学评估了通气动物的肺损伤的发生。测量和主要结果:高弹力通气引起的Gr-1〜(高)单肺细胞显着肺边缘化,而不是Gr-1〜(低)单核细胞显着肺边缘化与不通风的小鼠。这些单核细胞显示增加的激活状态,具有更高的CD11b(相对于不通风的小鼠)和更低的L-选择素表达(相对于低伸展通气)。脂多糖刺激导致Gr-1〜(高)单核细胞和中性粒细胞的肺切缘能力增强,并使肺对高牵张性肺水肿敏感。氯膦酸盐脂质体预处理可耗尽肺单核细胞(而非中性粒细胞),并显着减轻肺损伤。rn结论:高伸展机械通气可促进活化的Gr-1〜(高)单核细胞的肺边缘化,这在呼吸机的发展中起一定作用引起的肺损伤。

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  • 作者单位

    Department of Anaesthetics, Pain Medicine and Intensive Care, Faculty of Medicine, Imperial College London, Chelsea and Westminster Hospital, London, United Kingdom;

    Department of Anaesthetics, Pain Medicine and Intensive Care, Faculty of Medicine, Imperial College London, Chelsea and Westminster Hospital, London, United Kingdom;

    Department of Anaesthetics, Pain Medicine and Intensive Care, Faculty of Medicine, Imperial College London, Chelsea and Westminster Hospital, London, United Kingdom;

    Department of Anaesthetics, Pain Medicine and Intensive Care, Faculty of Medicine, Imperial College London, Chelsea and Westminster Hospital, London, United Kingdom;

    Vrije Universiteit, Vrije Universiteit Medisch Centrum, Department of Molecular Cell Biology, Faculty of Medicine, Amsterdam, The Netherlands;

    Department of Anaesthetics, Pain Medicine and Intensive Care, Faculty of Medicine, Imperial College London, Chelsea and Westminster Hospital, 369 Fulham Road, London, SW10 9NH, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Gr-1~(high) monocytes; acute lung injury; stretch; inflammation; mechanical ventilation;

    机译:Gr-1〜(高)单核细胞;急性肺损伤;伸展;炎;机械通风;

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