Hyperoxia exposure upregulates Dvl-1 and activates Wnt/β-catenin signaling pathway in newborn rat lung.

IF 2.4 3区 生物学 Q4 CELL BIOLOGY
Yuting Zhu, Yawen Li, Weilai Jin, Zhengying Li, Le Zhang, Yuanyuan Fang, Yanyu Zhang
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引用次数: 1

Abstract

Background: Bronchopulmonary dysplasia is a serious and lifelong pulmonary disease in premature neonates that influences around one-quarter of premature newborns. The wingless-related integration site /β-catenin signaling pathway, which is abnormally activated in the lungs with pulmonary fibrosis, affects cell differentiation and lung development.

Methods: Newborn rats were subjected to hyperoxia exposure. Histopathological changes to the lungs were evaluated through immunohistochemistry, and the activation of disheveled and Wnt /β-catenin signaling pathway components was assessed by Western blotting and real-time PCR. The abilities of proliferation, apoptosis and migration were detected by Cell Counting Kit-8, flow cytometry and scratch wound assay, respectively.

Results: Contrasting with normoxic lungs, hyperoxia-exposed lungs demonstrated larger alveoli, fewer alveoli and thicker alveolar septa. Superoxide dismutase activity was significantly decreased (7th day: P < 0.05; 14th day: P < 0.01) and malondialdehyde significantly increased (7th day: P < 0.05; 14th day: P < 0.01) after hyperoxia exposure. Protein and mRNA expression levels of β-catenin, Dvl-1, CTNNBL1 and cyclin D1 were significantly upregulated by hyperoxia exposure on 7th day (P < 0.01) and 14th day (P < 0.01). In hyperoxic conditions, Dvl-l downregulation and Dvl-l downregulation + MSAB treatment significantly increased the proliferation rates, decreased the apoptosis rates and improved the ability of cell migration. In hyperoxic conditions, Dvl-l downregulation could decrease the mRNA expression levels of GSK3β, β-catenin, CTNNBL1 and cyclin D1 and decrease the protein relative expression levels of GSK3β, p-GSK3β, β-catenin, CTNNBL1 and cyclin D1.

Conclusions: We confirmed the positive role of Dvl-1 and the Wnt/β-catenin signaling pathway in promoting BPD in hyperoxia conditions and provided a promising therapeutic target.

Abstract Image

Abstract Image

Abstract Image

高氧暴露可上调新生大鼠肺Dvl-1并激活Wnt/β-catenin信号通路。
背景:支气管肺发育不良是早产儿中一种严重的终身肺部疾病,影响约四分之一的早产儿。无翼相关整合位点/β-catenin信号通路在肺纤维化中异常激活,影响细胞分化和肺发育。方法:对新生大鼠进行高氧暴露。免疫组化评价肺组织病理变化,Western blotting和real-time PCR检测disheveled和Wnt /β-catenin信号通路组分的激活情况。分别用细胞计数试剂盒-8、流式细胞术和划伤实验检测细胞的增殖能力、凋亡能力和迁移能力。结果:与低氧肺相比,高氧肺表现为肺泡较大,肺泡较少,肺泡间隔较厚。结论:我们证实了Dvl-1和Wnt/β-catenin信号通路在高氧条件下促进BPD的积极作用,并提供了一个有希望的治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Molecular and Cell Biology
BMC Molecular and Cell Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
5.50
自引率
0.00%
发文量
46
审稿时长
27 weeks
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