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首页> 外文期刊>Pediatric surgery international >Vitamin C rescues in part the effects of nitrofen on cultured human pneumocytes.
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Vitamin C rescues in part the effects of nitrofen on cultured human pneumocytes.

机译:维生素C可以部分挽救硝基苯对培养的人肺细胞的作用。

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BACKGROUND: One of the mechanisms of action of nitrofen is intracellular oxidative stress. It is therefore likely that anti-oxidant agents can counteract its action. The aim of this study was to examine whether vitamin C mitigates the effects of nitrofen on the proliferation/apoptosis balance and functional maturation of cultured human pneumocytes. METHODS: Lung aCa type II pneumocytes (NIH-H441) in culture were exposed to 1.5 microM of nitrofen alone or followed 48 h later by 60 microM of vitamin C. The culture dishes were recovered at 72 h for immunohistochemical (PCNA for proliferation, bis-benzimide for apoptosis, anti-SpB and anti-TTF-1 antibodies for SpB and TTF-1 assessment) and molecular studies. Real-time PCR was used to quantitate TTF-1 RNAm, with S26 as internal control. ANOVA or Kruskall-Wallis with appropriate post hoc tests were used for comparison with p<0.05 as threshold of significance. RESULTS: Nitrofen decreased proliferation and TTF/1 and SpB expression with no apparent affect on apoptosis. Additional exposure to vitamin C reverted these effects. Furthermore, nitrofen decreased TTF/1 mRNA and vitamin C tended to rescue normal values. CONCLUSIONS: Vitamin C partially rescued proliferation and maturity in nitrofen-treated human pneumocytes. The likely beneficial influence of this prenatal anti-oxidant medication should be further investigated.
机译:背景:硝苯芬的作用机制之一是细胞内氧化应激。因此,抗氧化剂可能会抵消其作用。这项研究的目的是检查维生素C是否减轻硝基苯酚对培养的人肺细胞的增殖/凋亡平衡和功能成熟的影响。方法:将培养的II型肺aCa肺细胞(NIH-H441)单独暴露于1.5 microM的nitrofen或48 h后暴露于60 microM的维生素C.在72 h回收培养皿以进行免疫组织化学(PCNA增殖,bis -苯甲酰胺用于细胞凋亡,抗SpB和抗TTF-1抗体用于SpB和TTF-1评估)和分子研究。实时荧光定量PCR用于定量TTF-1 RNAm,S26作为内部对照。使用ANOVA或Kruskall-Wallis进行适当的事后检验,以p <0.05为显着性阈值进行比较。结果:硝苯芬降低增殖,TTF / 1和SpB表达,对细胞凋亡无明显影响。额外接触维生素C可恢复这些作用。此外,硝基苯酚使TTF / 1 mRNA降低,维生素C倾向于恢复正常值。结论:维生素C可部分拯救硝基苯酚处理的人肺细胞的增殖和成熟。这种产前抗氧化剂药物可能产生的有益影响应进一步研究。

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