Up-regulation of MiR-146b-5p Inhibits Fibrotic Lung Pericytes via Inactivation of the Notch1/PDGFRβ/ROCK1 Pathway.

IF 0.8 4区 生物学 Q4 BIOLOGY
W Shuai, Q Chen, X Zhou
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引用次数: 0

Abstract

Lung fibrosis is a serious human pathology. MiR-146b-5p is down-regulated in idiopathic pulmonary fibrosis, and the Notch1/PDGFRβ/ROCK1 pathway is activated. However, the relation between miR-146b-5p and the Notch1/PDGFRβ/ROCK1 pathway in lung fibrosis remains unclear. To investigate the function of miR-146b-5p in lung fibrosis, an in vivo model of lung fibrosis was established in mice by bleomycin. The fibrosis in lung tissues of mice was observed by HE, Masson and Sirius Red staining. Lung pericytes were isolated and identified by fluorescence microscopy. Immunofluorescence staining and Western blot were used to investigate the expression of desmin, NG2, collagen I and α-SMA. CCK8 assay was used to assess the cell viability, and flow cytometry was performed to evaluate the cell cycle in pericytes. Furthermore, the correlation between miR-146b-5p and Notch1 was analysed by Spearman analysis. The mechanism by which miR-146b-5p affects pericytes and lung fibrosis via the Notch1/ PDGFRβ/ROCK1 pathway was explored by RT-qPCR, Western blot, immunofluorescence staining and dual luciferase reporter gene assay. In bleomycin-treated mice, miR-146b-5p was down-regulated, while Notch1 was up-regulated. Up-regulation of miR-146b-5p significantly inhibited the viability and induced G1 phase arrest of lung pericytes. MiR-146b-5p mimics up-regulated miR-146b-5p, desmin, and NG2 and down-regulated α-SMA and collagen I in the lung pericytes. Additionally, miR-146b-5p was negatively correlated with Notch1, and miR-146b-5p interacted with Notch1. Over-expression of miR-146b-5p inactivated the Notch1/PDGFRβ/ROCK1 pathway. Our results indicate that up-regulation of miR-146b-5p inhibits fibrosis in lung pericytes via modulation of the Notch1/PDGFRβ/ROCK1 pathway. Thus, our study might provide a novel target against lung fibrosis.

MiR-146b-5p上调通过Notch1/PDGFRβ/ROCK1通路失活抑制纤维化肺周细胞
肺纤维化是一种严重的人类病理。MiR-146b-5p在特发性肺纤维化中下调,Notch1/PDGFRβ/ROCK1通路被激活。然而,miR-146b-5p与Notch1/PDGFRβ/ROCK1通路在肺纤维化中的关系尚不清楚。为了研究miR-146b-5p在肺纤维化中的作用,我们用博来霉素建立了小鼠肺纤维化的体内模型。HE染色、Masson染色、Sirius Red染色观察小鼠肺组织纤维化程度。采用荧光显微镜分离鉴定肺周细胞。采用免疫荧光染色和Western blot检测desmin、NG2、I型胶原和α-SMA的表达。CCK8法测定细胞活力,流式细胞术测定周细胞周期。此外,采用Spearman分析miR-146b-5p与Notch1的相关性。通过RT-qPCR、Western blot、免疫荧光染色和双荧光素酶报告基因检测,探讨miR-146b-5p通过Notch1/ PDGFRβ/ROCK1通路影响周细胞和肺纤维化的机制。在博莱霉素处理的小鼠中,miR-146b-5p下调,而Notch1上调。上调miR-146b-5p显著抑制肺周细胞活力,诱导肺周细胞G1期阻滞。MiR-146b-5p模拟肺周细胞中上调的MiR-146b-5p、desmin和NG2以及下调的α-SMA和胶原I。此外,miR-146b-5p与Notch1呈负相关,miR-146b-5p与Notch1相互作用。过表达miR-146b-5p使Notch1/PDGFRβ/ROCK1通路失活。我们的研究结果表明,上调miR-146b-5p通过调节Notch1/PDGFRβ/ROCK1途径抑制肺周细胞纤维化。因此,我们的研究可能提供抗肺纤维化的新靶点。
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来源期刊
Folia Biologica-Krakow
Folia Biologica-Krakow 医学-生物学
CiteScore
1.10
自引率
14.30%
发文量
15
审稿时长
>12 weeks
期刊介绍: Folia Biologica (Kraków) is an international online open access journal accepting original scientific articles on various aspects of zoology: phylogeny, genetics, chromosomal studies, ecology, biogeography, experimental zoology and ultrastructural studies. The language of publication is English, articles are assembled in four issues per year.
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