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首页> 外文期刊>EBioMedicine >Airway epithelial cell differentiation relies on deficient Hedgehog signalling in COPD
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Airway epithelial cell differentiation relies on deficient Hedgehog signalling in COPD

机译:气道上皮细胞分化依赖于COPD中缺乏刺猬信号

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Background Hedgehog (HH) pathway is constantly under scrutiny in the context of organ development. Lung morphogenesis requires HH signalling which participates thereafter to the pulmonary homeostasis by regulating epithelial cell quiescence and repair. Since epithelial remodelling is a hallmark of Chronic Obstructive Pulmonary Disease (COPD), we investigated whether the main molecular actors of HH pathway participate to airway epithelial cell differentiation and we analysed their alterations in COPD patients. Methods Sonic HH (Shh) secretion was assessed by ELISA in airway epithelial cell (AEC) air-liquid interface culture supernatants. HH pathway activation was evaluated by RT-qPCR, western blot and immunostaining. Inhibition of HH signalling was achieved upon Shh chelation during epithelial cell differentiation. HH pathway core components localization was investigated in lung tissues from non-COPD and COPD patients. Findings We demonstrate that progenitors of AEC produced Shh responsible for the activation of HH signalling during the process of differentiation. Preventing the ligand-induced HH activation led to the establishment of a remodelled epithelium with increased number of basal cells and reduced ciliogenesis. Gli2 activating transcription factor was demonstrated as a key-element in the regulation of AEC differentiation. More importantly, Gli2 and Smo were lost in AEC from COPD patients. Interpretation Our data suggest that HH pathway is crucial for airway epithelial cell differentiation and highlight its role in COPD-associated epithelial remodelling.
机译:在器官发展的背景下,背景刺猬(HH)途径在审查中不断受到审查。肺部形态发生需要HH信号传导,其通过调节上皮细胞静脉和修复来提及肺气旋。由于上皮重塑是一种慢性阻塞性肺病(COPD)的标志,我们研究了HH途径的主要分子学作用仪是否参与气道上皮细胞分化,并在COPD患者中分析了它们的改变。方法通过ELISA在气道上皮细胞(AEC)空气液体界面培养上清液中评估Sonic HH(SHH)分泌。通过RT-QPCR,Western印迹和免疫染色评估HH途径活化。在上皮细胞分化期间SHH螯合作用抑制HH信号传导。 HH途径核心成分在非COPD和COPD患者的肺组织中研究了本地化。结果表明,AEC的祖细胞产生的SHH负责在分化过程中激活HH信号传导。防止配体诱导的HH激活导致建立具有增加数量的基础细胞和降低纤毛发生的重新模型上皮。 Gli2激活转录因子被证明是AEC分化调节中的关键元素。更重要的是,Gli2和Smo丢失了来自COPD患者的AEC。解释我们的数据表明HH途径对于呼吸道上皮细胞分化至关重要,并突出其在COPD相关的上皮重塑中的作用。

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