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Elevated Levels of PDGF Receptor and MDM2 as Potential Biomarkers for Formaldehyde Intoxication

机译:PDGF受体和MDM2的水平升高是潜在的甲醛中毒生物标志物

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摘要

Formaldehyde has been identified as the most prevalent cause of sick building syndrome (SBS), which has become a major social problem, especially in developing urban areas. However, studies on the molecular mechanisms associated with formaldehyde toxicity have been limited, probably because it is difficult to relate the experimental results obtained from studies to human exposure . Using polymerase chain reaction-based suppression subtractive hybridization, we recently identified 27 different formaldehyde-inducible genes including platelet-derived growth factor receptor alpha gene (PDGFRA) and mouse double minute 2 (MDM2) gene which were increased significantly in both formaldehyde-exposed human trachea cells, 680. Tr, and rat tracheas. To establish a possible relationship between induction of these formaldehyde-inducible genes and symptoms of SBS, we examined expression levels of these genes in peripheral lymphocytes of residents of new apartments. Here, we report that the expression of PDGFRA and MDM2 transcripts was significantly higher in peripheral blood lymphocytes obtained from 15 residents in new buildings than in seven control individuals. Our results suggest that the elevated levels of PDGFRA and MDM2 may be associated with the formaldehyde-induced pathophysiology that is closely related with SBS, and that they deserve evaluation as potential biomarkers for formaldehyde intoxication.
机译:甲醛已被确定为最常见的病态建筑综合症(SBS)病因,这已成为一个主要的社会问题,尤其是在发展中的城市地区。但是,与甲醛毒性相关的分子机理的研究受到了限制,这可能是因为很难将研究获得的实验结果与人体暴露联系起来。使用基于聚合酶链反应的抑制消减杂交技术,我们最近鉴定了27种不同的甲醛诱导基因,包括血小板衍生的生长因子受体α基因(PDGFRA)和小鼠双分钟2(MDM2)基因,它们在暴露于甲醛的人体中均显着增加680. Tr和大鼠气管。为了建立这些甲醛可诱导基因的诱导与SBS症状之间的可能关系,我们检查了新公寓居民外周淋巴细胞中这些基因的表达水平。在这里,我们报道从新建筑物的15位居民获得的外周血淋巴细胞中PDGFRA和MDM2转录本的表达明显高于7位对照个体。我们的结果表明,PDGFRA和MDM2的水平升高可能与与SBS密切相关的甲醛诱导的病理生理相关,因此它们值得作为甲醛中毒的潜在生物标记物进行评估。

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