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首页> 外文期刊>Scientific reports. >Lung fibroblasts express a miR-19a-19b-20a sub-cluster to suppress TGF-β-associated fibroblast activation in murine pulmonary fibrosis
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Lung fibroblasts express a miR-19a-19b-20a sub-cluster to suppress TGF-β-associated fibroblast activation in murine pulmonary fibrosis

机译:肺成纤维细胞表达miR-19a-19b-20a亚簇以抑制鼠肺纤维化中TGF-β相关的成纤维细胞活化

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Lung fibroblasts play a pivotal role in pulmonary fibrosis, a devastating lung disease, by producing extracellular matrix. MicroRNAs (miRNAs) suppress numerous genes post-transcriptionally; however, the roles of miRNAs in activated fibroblasts in fibrotic lungs remain poorly understood. To elucidate these roles, we performed global miRNA-expression profiling of fibroblasts from bleomycin- and silica-induced fibrotic lungs and investigated the functions of miRNAs in activated lung fibroblasts. Clustering analysis of global miRNA-expression data identified miRNA signatures exhibiting increased expression during fibrosis progression. Among these signatures, we found that a miR-19a-19b-20a sub-cluster suppressed TGF-β-induced activation of fibroblasts in vitro. Moreover, to elucidate whether fibroblast-specific intervention against the sub-cluster modulates pathogenic activation of fibroblasts in fibrotic lungs, we intratracheally transferred the sub-cluster-overexpressing fibroblasts into bleomycin-treated lungs. Global transcriptome analysis of the intratracheally transferred fibroblasts revealed that the sub-cluster not only downregulated expression of TGF-β-associated pro-fibrotic genes, including Acta2, Col1a1, Ctgf, and Serpine1, but also upregulated expression of the anti-fibrotic genes Dcn, Igfbp5, and Mmp3 in activated lung fibroblasts. Collectively, these findings indicated that upregulation of the miR-19a-19b-20a sub-cluster expression in lung fibroblasts counteracted TGF-β-associated pathogenic activation of fibroblasts in murine pulmonary fibrosis.
机译:肺成纤维细胞通过产生细胞外基质,在破坏性肺部疾病肺纤维化中起关键作用。 MicroRNA(miRNA)在转录后抑制多个基因;然而,miRNA在纤维化肺中活化成纤维细胞中的作用仍然知之甚少。为了阐明这些作用,我们对博来霉素和二氧化硅诱导的纤维化肺中的成纤维细胞进行了全球miRNA表达谱分析,并研究了活化的肺成纤维细胞中miRNA的功能。全局miRNA表达数据的聚类分析确定了在纤维化进程中表现出增加表达的miRNA特征。在这些特征中,我们发现miR-19a-19b-20a亚簇在体外抑制了TGF-β诱导的成纤维细胞活化。此外,为了阐明针对亚簇的成纤维细胞特异性干预是否能调节纤维化肺中成纤维细胞的致病性激活,我们将气管内过表达亚簇的成纤维细胞经气管内转移至博来霉素治疗的肺中。气管内转移的成纤维细胞的全局转录组分析显示,亚簇不仅下调了TGF-β相关的前纤维化基因(包括Acta2,Col1a1,Ctgf和Serpine1)的表达,而且还上调了抗纤维化基因Dcn的表达。 ,激活肺成纤维细胞中的Igfbp5和Mmp3。总体而言,这些发现表明,肺成纤维细胞中miR-19a-19b-20a亚簇表达的上调抵消了鼠肺纤维化中TGF-β相关的成纤维细胞的致病性激活。

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