Dahl Morten, Bauer Alison K, Arredouani Mohamed, Soininen Raija, Tryggvason Karl, Kleeberger Steven R, Kobzik Lester
Department of Environmental Health, Harvard School of Public Health, Boston, Massachusetts 02115, USA.
J Clin Invest. 2007 Mar;117(3):757-64. doi: 10.1172/JCI29968.
Alveolar macrophages (AMs) express the class A scavenger receptors (SRAs) macrophage receptor with collagenous structure (MARCO) and scavenger receptor AI/II (SRA-I/II), which recognize oxidized lipids and provide innate defense against inhaled pathogens and particles. Increased MARCO expression in lungs of ozone-resistant mice suggested an additional role protecting against inhaled oxidants. After ozone exposure, MARCO-/- mice showed greater lung injury than did MARCO+/+ mice. Ozone is known to generate oxidized, proinflammatory lipids in lung lining fluid, such as 5beta,6beta-epoxycholesterol (beta-epoxide) and 1-palmitoyl-2-(9'-oxo-nonanoyl)-glycerophosphocholine (PON-GPC). Intratracheal instillation of either lipid caused substantial neutrophil influx in MARCO-/- mice, but had no effect in MARCO+/+ mice. Normal AMs showed greater uptake in vitro of beta-epoxide compared with MARCO-/- AMs, consistent with SRA function in binding oxidized lipids. SR-AI/II-/- mice showed similar enhanced acute lung inflammation after beta-epoxide or another inhaled oxidant (aerosolized leachate of residual oil fly ash). In contrast, subacute ozone exposure did not enhance inflammation in SR-AI/II-/- versus SR-AI/II+/+ mice, reflecting increased AM expression of MARCO. These data identify what we believe to be a novel function for AM SRAs in decreasing pulmonary inflammation after oxidant inhalation by scavenging proinflammatory oxidized lipids from lung lining fluids.
肺泡巨噬细胞(AMs)表达A类清道夫受体(SRAs),即具有胶原结构的巨噬细胞受体(MARCO)和清道夫受体AI/II(SRA-I/II),它们可识别氧化脂质,并为抵御吸入的病原体和颗粒提供天然防御。耐臭氧小鼠肺中MARCO表达增加,提示其在抵御吸入性氧化剂方面具有额外作用。臭氧暴露后,MARCO-/-小鼠比MARCO+/+小鼠表现出更严重的肺损伤。已知臭氧会在肺内衬液中产生氧化的促炎脂质,如5β,6β-环氧胆固醇(β-环氧化物)和1-棕榈酰-2-(9'-氧代壬酰)-甘油磷酸胆碱(PON-GPC)。气管内注入这两种脂质中的任何一种,都会导致MARCO-/-小鼠出现大量中性粒细胞流入,但对MARCO+/+小鼠没有影响。与MARCO-/-肺泡巨噬细胞相比,正常肺泡巨噬细胞在体外对β-环氧化物的摄取更多,这与清道夫受体在结合氧化脂质方面的功能一致。SR-AI/II-/-小鼠在接触β-环氧化物或另一种吸入性氧化剂(残留油飞灰的雾化沥出液)后,也表现出类似的急性肺炎症增强。相比之下,亚急性臭氧暴露并未增强SR-AI/II-/-小鼠与SR-AI/II+/+小鼠的炎症反应,这反映出肺泡巨噬细胞中MARCO表达增加。这些数据确定了我们认为肺泡巨噬细胞清道夫受体在通过清除肺内衬液中的促炎氧化脂质来减轻吸入氧化剂后肺部炎症方面的一种新功能。