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Environmentally Relevant Concentrations of Bisphenol A Interact with Doxorubicin Transcriptional Effects in Human Cell Lines

机译:与环境有关的双酚A浓度与人细胞系中阿霉素的转录作用相互作用

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摘要

The worldwide production of synthetic chemicals, including endocrine disruptor chemicals (EDCs), such as Bisphenol A (BPA) has increased significantly in the last two decades. Human exposure to BPA, particularly through ingestion, is continuous and ubiquitous. Although, considered a weak environmental estrogen, BPA can induce divergent biological responses through several signaling pathways, including carcinogenesis in hormone-responsive organs. However, and despite the continuous increase of tumor cell-resistance to therapeutic drugs, such as doxorubicin (DOX), information regarding BPA drug interactions is still scarce, although its potential role in chemo-resistance has been suggested. This study aims to assess the potential interactions between environmentally relevant levels of BPA and DOX at a therapeutic dosage on Hep-2 and MRC-5 cell lines transciptome. Transcriptional effects in key-player genes for cancer biology, namely c-fos, p21, and bcl-xl, were evaluated through qRT-PCR. The cellular response was analyzed after exposure to BPA, DOX, or co-exposure to both chemicals. Transcriptional analysis showed that BPA exposure induces upregulation of bcl-xl and endorses an antagonistic non-monotonic response on DOX transcriptional effects. Moreover, the BPA interaction with DOX on c-fos and p21 expression emphasize its cellular specificity and divergent effects. Overall, Hep-2 was more susceptible to BPA effects in a dose-dependent manner while MRC-5 transcriptional levels endorsed a non-monotonic response. Our data indicate that BPA environmental exposure may influence chemotherapy outcomes, which emphasize the urgency for a better understanding of BPA interactions with chemotherapeutic agents, in the context of risk assessment.
机译:在过去的二十年中,包括双酚A(BPA)之类的内分泌干扰化学物质(EDC)在内的合成化学物质在全球范围内的生产量已大大增加。人类对双酚A的暴露是持续不断的,尤其是通过摄入。尽管被认为是弱的环境雌激素,但是BPA可以通过多种信号途径诱导不同的生物学反应,包括激素反应器官中的致癌作用。然而,尽管肿瘤细胞对诸如阿霉素(DOX)之类的治疗药物的抗药性持续增加,但是尽管已提出了有关BPA药物相互作用的信息,但仍缺乏有关BPA药物相互作用的信息。这项研究旨在评估在治疗剂量下,Hep-2和MRC-5细胞株的BPA和DOX在环境相关水平之间的潜在相互作用。通过qRT-PCR评估了癌症生物学关键基因c-fos,p21和bcl-xl的转录作用。接触BPA,DOX或同时接触两种化学物质后,分析细胞反应。转录分析表明,BPA暴露可诱导bcl-xl的上调并支持对DOX转录作用的拮抗性非单调响应。而且,BPA与DOX在c-fos和p21表达上的相互作用强调了其细胞特异性和发散作用。总体而言,Hep-2对BPA的影响更易发生剂量依赖性,而MRC-5转录水平则支持非单调应答。我们的数据表明,BPA环境暴露可能会影响化学疗法的结果,这强调了在风险评估的背景下更好地了解BPA与化学治疗剂相互作用的紧迫性。

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