首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Genome-wide analysis of BEAS-2B cells exposed to trivalent arsenicals and dimethylthioarsinic acid.
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Genome-wide analysis of BEAS-2B cells exposed to trivalent arsenicals and dimethylthioarsinic acid.

机译:全基因组分析暴露于三价砷和二甲基硫代砷酸的BEAS-2B细胞。

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Lung is a major target for arsenic carcinogenesis in humans by both oral and inhalation routes. However, the carcinogenic mode of action of arsenicals is unknown. We investigated the effects of inorganic arsenic (iAsIII), monomethylarsonous acid (MMAIII), dimethylarsinous acid (DMAIII) and dimethylthioarsinic acid (DMTA), a sulfur containing dimethyl arsenic metabolite, in human bronchial epithelial (BEAS-2B) cells. Cells were exposed to 3, 15 microM-iAsIII; 0.3, 1 microM-MMAIII; 0.2, 1 microM-DMAIII; 0.2, 0.9 microM-DMTA as non-cytotoxic and minimally cytotoxic ( approximately 20%) concentrations based on Neutral Red uptake assays after 24h of culture. Total RNA was isolated and gene expression analysis conducted using Affymetrix Human Genome 133 Plus 2.0 arrays. Differentially expressed genes (DEGs) were determined using a one-way ANOVA (p < or =0.05) by Rosetta Resolver, a Benjamini-Hochberg FDR (false discovery rate) multiple testing correction (< 0.05) followed by a Scheffe's post hoc test. For all compounds except DMTA, > 90% of DEG altered in the low concentration were also changed at the high concentration. There was a clear dose-response seen in the number of DEGs for all four compounds. iAsIII showed the highest number of DEG at both concentrations (2708 and 123, high and low, respectively). 1749, 420 and 120 DEGs were unique to the high concentrations of iAsIII, MMAIII and DMAIII, respectively. Transferrin receptor is a common DEG in low concentration arsenical treated cells. Ingenuity Pathway Analysis revealed p53 signaling (E2F1 and 2, SERPIN), and cell cycle related genes (cyclin D1) were altered by the high concentrations of DMTA, MMAIII and iAsIII. Oxidative stress (DUSP1, GPX2, NQO1, GCLC) and NF-kappaB signaling (TLR4, NF-kappaB) pathways were changed by the high concentrations of MMAIII and iAsIII. The genes identified in this study can be a valuable tool to determine the mechanism of arsenic toxicity and cancer formation. A number of similarities were observed in the gene expression profiles of DMAIII and DMTA and also iAsIII and MMAIII. These findings reveal some biological effects of arsenicals that will aid in creating a better risk assessment model for arsenical-induced lung cancer.
机译:肺是口服和吸入途径中砷致癌作用的主要靶标。但是,尚不清楚砷的致癌作用方式。我们研究了无机砷(iAsIII),一甲基亚砷酸(MMAIII),二甲基亚砷酸(DMAIII)和二甲基硫代砷酸(DMTA)(一种含硫的二甲基砷代谢产物)在人支气管上皮细胞(BEAS-2B)中的作用。细胞暴露于3、15 microM-iAsIII; 0.3,1 microM-MMAIII; 0.2,1 microM-DMAIII;根据培养24小时后的中性红吸收分析,将0.2、0.9 microM-DMTA作为非细胞毒性和最小细胞毒性(约20%)浓度。分离总RNA,并使用Affymetrix Human Genome 133 Plus 2.0阵列进行基因表达分析。使用Rosetta Resolver,Benjamini-Hochberg FDR(错误发现率)多次测试校正(<0.05)和Scheffe的事后检验,通过单向方差分析(p <或= 0.05)确定差异表达的基因(DEG)。对于除DMTA以外的所有化合物,在低浓度下> 90%的DEG在高浓度下也发生了变化。对于所有四种化合物,DEG数量均存在明显的剂量反应。 iAsIII在两种浓度下均显示出最高的DEG数量(分别为2708和123,分别为高和低)。 1749、420和120度分别是高浓度的iAsIII,MMAIII和DMAIII所特有的。转铁蛋白受体是低浓度砷处理细胞中常见的DEG。独创性途径分析显示p53信号(E2F1和2,SERPIN)和细胞周期相关基因(cyclin D1)被高浓度的DMTA,MMAIII和iAsIII改变。高浓度的MMAIII和iAsIII改变了氧化应激(DUSP1,GPX2,NQO1,GCLC)和NF-κB信号传导(TLR4,NF-κB)途径。这项研究中鉴定的基因可以作为确定砷毒性和癌症形成机制的有价值的工具。在DMAIII和DMTA以及iAsIII和MMAIII的基因表达谱中观察到许多相似之处。这些发现揭示了砷的某些生物学效应,有助于建立更好的砷诱导的肺癌风险评估模型。

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