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环境相关浓度的双酚A与人细胞系中阿霉素的转录效应相互作用。

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

作者信息

Ribeiro Edna, Delgadinho Mariana, Brito Miguel

机构信息

H&TRC-Health & Technology Research Center, ESTeSL-Escola Superior de Tecnologia da Saúde, Instituto Politécnico de Lisboa, Av. D. João II, lote 4.69.01, Parque das Nações, 1990-096 Lisbon, Portugal.

出版信息

Toxics. 2019 Aug 29;7(3):43. doi: 10.3390/toxics7030043.

Abstract

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 , , and , 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 and endorses an antagonistic non-monotonic response on DOX transcriptional effects. Moreover, the BPA interaction with DOX on and 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.

摘要

在过去二十年中,包括内分泌干扰化学物质(EDC)如双酚A(BPA)在内的合成化学品的全球产量显著增加。人类接触双酚A,尤其是通过摄入,是持续且普遍存在的。尽管双酚A被认为是一种弱环境雌激素,但它可以通过多种信号通路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,尽管肿瘤细胞对多柔比星(DOX)等治疗药物的耐药性持续增加,但关于双酚A与药物相互作用的信息仍然很少,尽管已经有人提出其在化疗耐药性中的潜在作用。本研究旨在评估环境相关水平的双酚A与治疗剂量的多柔比星在Hep-2和MRC-5细胞系转录组上的潜在相互作用。通过qRT-PCR评估癌症生物学关键基因、和的转录效应。在暴露于双酚A、多柔比星或两种化学物质共同暴露后分析细胞反应。转录分析表明,双酚A暴露诱导的上调,并对多柔比星的转录效应产生拮抗非单调反应。此外,双酚A与多柔比星在和表达上的相互作用强调了其细胞特异性和不同效应。总体而言,Hep-2以剂量依赖的方式对双酚A的影响更敏感,而MRC-5的转录水平呈现非单调反应。我们的数据表明,双酚A的环境暴露可能会影响化疗结果,这凸显了在风险评估背景下更好地理解双酚A与化疗药物相互作用的紧迫性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b78/6789468/dda863216d11/toxics-07-00043-g001.jpg

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