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首页> 外文期刊>Toxicology and Environmental Health Sciences >Gene Expression Profiling of Low Dose Exposure of Saturated Aliphatic Aldehydes in A549 Human Alveolar Epithelial Cells
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Gene Expression Profiling of Low Dose Exposure of Saturated Aliphatic Aldehydes in A549 Human Alveolar Epithelial Cells

机译:低剂量暴露于A549人肺泡上皮细胞的饱和脂肪醛的基因表达谱

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Low-molecular weight saturated aliphatic aldehydes (LSAAs), which include propanal, butanal, pentanal, hexanal, octanal, nonanal and heptanal, are volatile organic compounds (VOCs). They are ubiquitous in the environment of our daily life. Although LSAAs are harmful, with mutagenic and carcinogenic effects, the mechanisms underlying the toxicity of volatile aldehydes are still unclear. Therefore, in this study, we performed genome-wide expression profile analysis of A549 human alveolar epithelial cells exposed to seven LSSAs. We selected genes whose expression was changed more than 1.5-fold in A549 cells exposed to LSAAs by analysis of gene expression profiles using human oligonucleotide chips. Through gene expression profiling, we showed that LSSAs are related to the key biological processes "defense response", "inflammatory response" and "immune response" in gene ontology (GO) analysis. In addition, we identified two genes that were up-regulated (GREB1, BC009808) and four that were down-regulated (UCP1, TCP11, FNDC3A, LOC645206) by all the tested LSAAs. Our data suggest that LSAAs exert toxic effects on A549 cells by modulating mRNA expression. Moreover, we suggest that genes expressed in response to LSAAs represent a molecular signature that can be widely used, in combination with more traditional techniques, to assess and predict the toxicity caused by exposure to LSAAs.
机译:低分子量的饱和脂肪族醛(LSAA)是挥发性有机化合物(VOC),其中的低分子量饱和脂肪族醛包括丙醛,丁醛,戊醛,己醛,辛醛,壬醛和庚醛。它们在我们日常生活的环境中无处不在。尽管LSAA具有有害作用,但具有诱变和致癌作用,但仍不清楚挥发性醛的毒性基础。因此,在这项研究中,我们对暴露于7个LSSA的A549人肺泡上皮细胞进行了全基因组表达谱分析。通过使用人寡核苷酸芯片分析基因表达谱,我们选择了在暴露于LSAA的A549细胞中表达变化超过1.5倍的基因。通过基因表达谱分析,我们发现LSSAs与基因本体(GO)分析中的关键生物学过程“防御反应”,“炎症反应”和“免疫反应”有关。此外,我们确定了两个被测试的LSAA上调的基因(GREB1,BC009808)和四个下调的基因(UCP1,TCP11,FNDC3A,LOC645206)。我们的数据表明,LSAA通过调节mRNA表达对A549细胞产生毒性作用。此外,我们建议响应LSAAs表达的基因代表一种分子标志,可以与更传统的技术结合起来广泛使用,以评估和预测由于暴露于LSAAs而引起的毒性。

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