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Muscarinic M3 receptors on structural cells regulate cigarette smoke-induced neutrophilic airway inflammation in mice

机译:结构细胞上的毒蕈碱型M3受体调节小鼠香烟诱导的嗜中性气道炎症

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摘要

Anticholinergics, blocking the muscarinic M-3 receptor, are effective bronchodilators for patients with chronic obstructive pulmonary disease. Recent evidence from M-3 receptor-deficient mice (M3R-/-) indicates that M-3 receptors also regulate neutrophilic inflammation in response to cigarette smoke (CS). M-3 receptors are present on almost all cell types, and in this study we investigated the relative contribution of M-3 receptors on structural cells vs. inflammatory cells to CS-induced inflammation using bone marrow chimeric mice. Bone marrow chimeras (C56Bl/6 mice) were generated, and engraftment was confirmed after 10 wk. Thereafter, irradiated and nonirradiated control animals were exposed to CS or fresh air for four consecutive days. CS induced a significant increase in neutrophil numbers in nonirradiated and irradiated control animals (4- to 35-fold). Interestingly, wild-type animals receiving M3R-/- bone marrow showed a similar increase in neutrophil number (15-fold). In contrast, no increase in the number of neutrophils was observed in M3R(-/-) animals receiving wild-type bone marrow. The increase in keratinocyte-derived chemokine (KC) levels was similar in all smoke-exposed groups (2.5- to 5.0-fold). Microarray analysis revealed that fibrinogen-alpha and CD177, both involved in neutrophil migration, were downregulated in CS-exposed M3R-/- animals receiving wild-type bone marrow compared with CS-exposed wild-type animals, which was confirmed by RT-qPCR (1.6-2.5 fold). These findings indicate that the M-3 receptor on structural cells plays a proinflammatory role in CS-induced neutrophilic inflammation, whereas the M-3 receptor on inflammatory cells does not. This effect is probably not mediated via KC release, but may involve altered adhesion and transmigration of neutrophils via fibrinogen-alpha and CD177.
机译:抗胆碱能药可阻断毒蕈碱M-3受体,是慢性阻塞性肺疾病患者的有效支气管扩张药。来自M-3受体缺陷型小鼠(M3R-/-)的最新证据表明,M-3受体还响应香烟烟雾(CS)调节嗜中性粒细胞炎症。 M-3受体几乎存在于所有类型的细胞中,在这项研究中,我们研究了骨髓嵌合小鼠在结构细胞与炎症细胞上的M-3受体对CS诱导的炎症的相对作用。产生了骨髓嵌合体(C56Bl / 6小鼠),并在10周后证实了植入。此后,将辐照和未辐照的对照动物连续四天暴露于CS或新鲜空气中。 CS诱导未辐照和辐照对照动物的中性粒细胞数量显着增加(4到35倍)。有趣的是,接受M3R-/-骨髓的野生型动物的中性粒细胞数量也有类似的增加(15倍)。相反,在接受野生型骨髓的M3R(-/-)动物中未观察到嗜中性粒细胞数量的增加。在所有烟雾暴露组中,角质形成细胞衍生的趋化因子(KC)水平的增加均相似(2.5到5.0倍)。基因芯片分析显示,与CS暴露的野生型动物相比,CS暴露的M3R-/-接受野生型骨髓的动物与CS暴露的野生型动物相比,均参与中性粒细胞迁移的纤维蛋白原-α和CD177被下调。 (1.6-2.5倍)。这些发现表明结构细胞上的M-3受体在CS诱导的中性粒细胞炎症中起促炎作用,而炎症细胞上的M-3受体则不起作用。这种作用可能不是通过KC释放介导的,但可能涉及中性粒细胞通过纤维蛋白原-α和CD177的粘附和转运改变。

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