首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >Translational Research in Acute Lung Injury and Pulmonary Fibrosis: Grainyhead-like 2 (GRHL2) distribution reveals novel pathophysiological differences between human idiopathic pulmonary fibrosis and mouse models of pulmonary fibrosis
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Translational Research in Acute Lung Injury and Pulmonary Fibrosis: Grainyhead-like 2 (GRHL2) distribution reveals novel pathophysiological differences between human idiopathic pulmonary fibrosis and mouse models of pulmonary fibrosis

机译:急性肺损伤和肺纤维化的转化研究:类粒状2(GRHL2)分布揭示了人类特发性肺纤维化与小鼠肺纤维化模型之间的新型病理生理差异

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摘要

Chronic injury of alveolar lung epithelium leads to epithelial disintegrity in idiopathic pulmonary fibrosis (IPF). We had reported earlier that Grhl2, a transcriptional factor, maintains alveolar epithelial cell integrity by directly regulating components of adherens and tight junctions and thus hypothesized an important role of GRHL2 in pathogenesis of IPF. Comparison of GRHL2 distribution at different stages of human lung development showed its abundance in developing lung epithelium and in adult lung epithelium. However, GRHL2 is detected in normal human lung mesenchyme only at early fetal stage (week 9). Similar mesenchymal reexpression of GRHL2 was also observed in IPF. Immunofluorescence analysis in serial sections from three IPF patients revealed at least two subsets of alveolar epithelial cells (AEC), based on differential GRHL2 expression and the converse fluorescence intensities for epithelial vs. mesenchymal markers. Grhl2 was not detected in mesenchyme in intraperitoneal bleomycin-induced injury as well as in spontaneously occurring fibrosis in double-mutant HPS1 and HPS2 mice, whereas in contrast in a radiation-induced fibrosis model, with forced Forkhead box M1 (Foxm1) expression, an overlap of Grhl2 with a mesenchymal marker was observed in fibrotic regions. Grhl2's role in alveolar epithelial cell plasticity was confirmed by altered Grhl2 gene expression analysis in IPF and further validated by in vitro manipulation of its expression in alveolar epithelial cell lines. Our findings reveal important pathophysiological differences between human IPF and specific mouse models of fibrosis and support a crucial role of GRHL2 in epithelial activation in lung fibrosis and perhaps also in epithelial plasticity.
机译:肺泡肺上皮的慢性损伤导致特发性肺纤维化(IPF)的上皮不完整性。我们之前曾报道过,Grhl2是一种转录因子,它通过直接调节粘附分子和紧密连接的成分来维持肺泡上皮细胞的完整性,因此推测GRHL2在IPF的发病机理中具有重要作用。比较人类肺发育不同阶段的GRHL2分布,发现其在肺上皮发育和成年肺上皮中含量丰富。但是,仅在胎儿早期(第9周)在正常人肺间充质中检测到GRHL2。在IPF中也观察到类似的GRHL2间充质表达。基于GRHL2差异表达以及上皮与间充质标记物的反向荧光强度,对三名IPF患者的连续切片进行的免疫荧光分析显示了至少两个亚群的肺泡上皮细胞(AEC)。在双突变型HPS1和HPS2小鼠的腹膜内博莱霉素诱导的损伤以及自发发生的纤维化的间充质中未检测到Grhl2,而在辐射诱导的纤维化模型中,强制叉头盒M1(Foxm1)表达,未检测到Grhl2。在纤维化区域观察到了Grhl2与间充质标记的重叠。通过改变IPF中的Grhl2基因表达分析,证实了Grhl2在肺泡上皮细胞可塑性中的作用,并通过体外操纵其在肺泡上皮细胞系中的表达进一步证实了Grhl2的作用。我们的发现揭示了人类IPF与特定小鼠纤维化模型之间的重要病理生理差异,并支持GRHL2在肺纤维化的上皮激活以及也许在上皮可塑性中的关键作用。

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