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首页> 外文期刊>Pediatric surgery international >Smad1 and WIF1 genes are downregulated during saccular stage of lung development in the nitrofen rat model.
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Smad1 and WIF1 genes are downregulated during saccular stage of lung development in the nitrofen rat model.

机译:在nitrofen大鼠模型的肺发育的囊泡期,Smad1和WIF1基因被下调。

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摘要

PURPOSE: The exact pathogenesis of pulmonary hypoplasia in the nitrofen-induced congenital diaphragmatic hernia (CDH) still remains unclear. Smad1, one of the bone morphogenesis protein (BMP) receptor downstream signaling proteins, plays a key role in organogenesis including lung development and maturation. Smad1 knockout mice display reduced sacculation, an important feature of pulmonary hypoplasia. Wnt inhibitor factor 1 (Wif1) is a target gene of Smad1 in the developing lung epithelial cells (LECs). Smad1 directly regulates Wif1 gene expression and blockade of Smad1 function in fetal LECs is reported to downregulate Wif1 gene expression. We designed this study to test the hypothesis that pulmonary Smad1 and Wif1 gene expression is downregulated during saccular stage of lung development in the nitrofen CDH model. METHODS: Pregnant rats were exposed to either olive oil or nitrofen on day 9 of gestation (D9). Fetuses were harvested on D18, and D21. Fetal lungs were dissected and divided into 2 groups: control and nitrofen (n = 9 at each time point, respectively). Pulmonary gene expression of Smad1 and Wif1 were analyzed by real-time RT-PCR. Immunohistochemistry was performed to evaluate protein expression/distribution of Smad1 and Wif1. RESULTS: The relative mRNA expression levels of Smad1 and Wif1 were significantly downregulated in the nitrofen group compared to controls on D18 and D21 (*p < 0.01, **p < 0.05). Immunoreactivity of Smad1 and Wif1 was also markedly decreased in nitrofen lungs compared to controls on D18 and D21. CONCLUSION: We provide evidence, for the first time, that the pulmonary gene expression of Smad1 and Wif1 is downregulated on D18 and D21 (saccular stage of lung development) in the nitrofen-induced hypoplastic lung. These findings suggest that the downregulation of Smad1/Wif1 gene expression may contribute to pulmonary hypoplasia in the nitrofen CDH model by retardation of lung development during saccular stage.
机译:目的:在硝基芬诱发的先天性diaphragm肌疝(CDH)中,肺发育不全的确切发病机理仍不清楚。 Smad1是骨形态发生蛋白(BMP)受体下游信号传导蛋白之一,在器官形成(包括肺发育和成熟)中起关键作用。 Smad1基因敲除小鼠显示减少的蓄积,肺发育不良的重要特征。 Wnt抑制剂因子1(Wif1)是发育中的肺上皮细胞(LECs)中Smad1的靶基因。 Smad1直接调节Wif1基因表达,据报道,胎儿LEC中Smad1功能的阻断下调了Wif1基因表达。我们设计了这项研究,以检验以下假设:在nitrofen CDH模型中,在肺发育的囊泡期,肺Smad1和Wif1基因表达下调。方法:妊娠第9天(D9),妊娠大鼠暴露于橄榄油或硝基苯酚。在第18天和第21天收获胎儿。解剖胎儿肺并将其分为两组:对照组和硝苯芬(分别在每个时间点n = 9)。通过实时RT-PCR分析Smad1和Wif1的肺基因表达。进行了免疫组织化学,以评估Smad1和Wif1的蛋白表达/分布。结果:与D18和D21对照组相比,硝苯芬组中Smad1和Wif1的相对mRNA表达水平显着下调(* p <0.01,** p <0.05)。与D18和D21的对照组相比,硝基苯肺中Smad1和Wif1的免疫反应性也显着降低。结论:我们首次提供证据,证明在硝苯芬诱导的发育不良的肺中,D18和D21(肺发育的囊性阶段)Smad1和Wif1的肺基因表达下调。这些发现表明,Smad1 / Wif1基因表达的下调可能通过延缓囊性阶段的肺发育而导致硝基芬CDH模型中的肺发育不全。

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