首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >Paradoxical role of alveolar macrophage-derived granulocyte-macrophage colony-stimulating factor in pulmonary host defense post-bone marrow transplantation
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Paradoxical role of alveolar macrophage-derived granulocyte-macrophage colony-stimulating factor in pulmonary host defense post-bone marrow transplantation

机译:肺泡巨噬细胞衍生的粒细胞-巨噬细胞集落刺激因子在骨髓移植后肺宿主防御中的反常作用

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摘要

Impaired host defense post-bone marrow transplant (BMT) is related to overproduction of prostaglandin E2 (PGE2) by alveolar macrophages (AMs). We show AMs post-BMT overproduce granulocyte-macrophage colony-stimulating factor (GM-CSF), whereas GM-CSF in lung homogenates is impaired both at baseline and in response to infection post-BMT. Homeostatic regulation of GM-CSF may occur by hematopoietic/structural cell cross talk. To determine whether AM overproduction of GM-CSF influenced immunosuppression post-BMT, we compared mice that received BMT from wild-type donors (control BMT) or mice that received BMT from GM-CSF−/− donors (GM-CSF−/− BMT) with untransplanted mice. GM-CSF−/− BMT mice were less susceptible to pneumonia with Pseudomonas aeruginosa compared with control BMT mice and showed antibacterial responses equal to or better than untransplanted mice. GM-CSF−/− BMT AMs displayed normal phagocytosis and a trend toward enhanced bacterial killing. Surprisingly, AMs from GM-CSF−/− BMT mice overproduced PGE2, but expression of the inhibitory EP2 receptor was diminished. As a consequence of decreased EP2 receptor expression, we found diminished accumulation of cAMP in response to PGE2 stimulation in GM-CSF−/− BMT AMs compared with control BMT AMs. In addition, GM-CSF−/− BMT AMs retained cysteinyl leukotriene production and normal TNF-α response compared with AMs from control BMT mice. GM-CSF−/− BMT neutrophils also showed improved bacterial killing. Although genetic ablation of GM-CSF in hematopoietic cells post-BMT improved host defense, transplantation of wild-type bone marrow into GM-CSF−/− recipients demonstrated that parenchymal cell-derived GM-CSF is necessary for effective innate immune responses post-BMT. These results highlight the complex regulation of GM-CSF and innate immunity post-BMT.
机译:宿主防御后骨髓移植(BMT)受损与肺泡巨噬细胞(AM)过度生产前列腺素E2(PGE2)有关。我们显示,BMT后AMs过度产生粒细胞-巨噬细胞集落刺激因子(GM-CSF),而肺匀浆中的GM-CSF在基线和BMT后对感染的反应均受损。 GM-CSF的稳态调节可能通过造血/结构细胞串扰发生。为了确定AM-过量生产GM-CSF是否会影响BMT后的免疫抑制,我们比较了从野生型供体(对照BMT)接受BMT的小鼠或从GM-CSF-/-供体(GM-CSF-/- BMT)和未移植的小鼠。与对照BMT小鼠相比,GM-CSF-/-BMT小鼠对铜绿假单胞菌对肺炎的敏感性较低,并且其抗菌反应与未移植的小鼠相同或更好。 GM-CSF-/-BMT AMs表现出正常的吞噬作用,并趋向于增加细菌杀灭作用。出乎意料的是,来自GM-CSF-/-BMT小鼠的AMs过度产生了PGE2,但抑制性EP2受体的表达却减少了。 EP2受体表达降低的结果是,与对照BMT AM相比,我们发现GM-CSF-/-BMT AM中响应PGE2刺激的cAMP积累减少。此外,与对照BMT小鼠的AMs相比,GM-CSF-/-BMT AMs保留了半胱氨酰白三烯的产生和正常的TNF-α反应。 GM-CSF-/-BMT中性粒细胞也显示出更好的细菌杀灭作用。尽管BMT后造血细胞中GM-CSF的基因切除改善了宿主防御能力,但将野生型骨髓移植到GM-CSF-/-受体中表明,实质细胞衍生的GM-CSF对于有效的先天性免疫反应是必需的。 BMT。这些结果强调了BMT后GM-CSF和先天免疫的复杂调控。

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