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The Expression of AQP1 IS Modified in Lung of Patients With Idiopathic Pulmonary Fibrosis: Addressing a Possible New Target

机译:特发性肺纤维化患者肺中AQP1的表达被修饰:解决可能的新目标

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摘要

Activation of the epithelial-mesenchymal transition process (EMT) by which alveolar cells in human lung tissue undergo differentiation giving rise to a mesenchymal phenotype (fibroblast/miofibroblasts) has been well recognized as a key element in the origin of idiopathic pulmonary fibrosis (IPF). Here we analyzed expression of AQP1 in lung biopsies of patients diagnosed with IPF, and compared it to biopsies derived from patients with diverse lung pneumonies, such as hypersensitivity pneumonitis, sarcoidosis or normal lungs. Immunostaining for AQP1 showed a clear increment of AQP1 localized in the alveolar epithelium in biopsies from IPF patients alone. Moreover, to examine the possible participation of AQP1 in the pathophysiology of IPF, we evaluated its role in the pro-fibrotic transformation induced by transforming growth factor (TGF-β) in vitro. Human alveolar epithelial cells (A549), and fibroblasts derived from an IPF patient (LL29), or fibroblasts from healthy normal lung tissue (MRC-5), were treated with TGF-β, and levels of expression of AQP1, as well as those of E-cadherin, vimentin, α-SMA and collagen were analyzed by RT-qPCR, western blot and immunohistochemistry. An increase of AQP1 mRNA and protein after TGF-β treatment (4–72h) was observed either in A549 or IPF fibroblast-LL29 but not in MRC-5 fibroblasts. A gradual reduction of E-cadherin, and increased expression of vimentin, with no changes in α-SMA levels were observed in A549. Whereas in LL29 and MRC-5, TGF-β1 elicited a large production of collagen and α-SMA that was significantly greater in IPF fibroblast-LL29. Changes observed are consistent with activation of EMT by TGF-β, but whether modifications in AQP1 expression are responsible or independent events occurring at the same time is still unknown. Our results suggest that AQP1 plays a role in the pro-fibrotic TGF-β action and contributes to the etiology and pathophysiology of IPF. Understanding AQP1's role will help us comprehend the fate of this disease.
机译:上皮-间质转化过程(EMT)的激活已被公认为是特发性肺纤维化(IPF)的关键因素,通过激活上皮-间质转化过程(EMT),人肺组织中的肺泡细胞会分化为间充质表型(成纤维细胞/成纤维细胞) 。在这里,我们分析了诊断为IPF的患者的肺活检中AQP1的表达,并将其与源自多种肺炎(例如过敏性肺炎,结节病或正常肺)的患者的活检进行了比较。对AQP1的免疫染色显示,仅来自IPF患者的活检中,AQP1明显增加了位于肺泡上皮的细胞。此外,为了检查AQP1是否可能参与IPF的病理生理,我们评估了其在体外由转化生长因子(TGF-β)诱导的促纤维化转化中的作用。用TGF-β处理人肺泡上皮细胞(A549)和IPF患者衍生的成纤维细胞(LL29)或健康正常肺组织的成纤维细胞(MRC-5),以及AQP1和那些用RT-qPCR,western blot和免疫组化分析E-cadherin,波形蛋白,α-SMA和胶原蛋白的含量。在T549-β处理(4–72h)后,在A549或IPF成纤维细胞-LL29中观察到AQP1 mRNA和蛋白的增加,而在MRC-5成纤维细胞中则没有观察到。在A549中未观察到E-钙粘蛋白的逐渐减少和波形蛋白的表达增加,而α-SMA水平没有变化。而在LL29和MRC-5中,TGF-β1引起胶原蛋白和α-SMA的大量产生,而在IPF成纤维细胞LL29中则明显更高。观察到的变化与TGF-β激活EMT一致,但是尚不清楚AQP1表达的修饰是负责任的还是同时发生的独立事件。我们的结果表明,AQP1在促纤维化TGF-β的作用中起作用,并有助于IPF的病因和病理生理。了解AQP1的作用将有助于我们理解这种疾病的命运。

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