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参考水平的双酚A可抵消阿霉素对HT29细胞中癌症相关基因的转录作用。

Bisphenol A at the reference level counteracts doxorubicin transcriptional effects on cancer related genes in HT29 cells.

作者信息

Delgado Margarida, Ribeiro-Varandas Edna

机构信息

Landscape, Environment, Agriculture and Food (LEAF), Instituto Superior de Agronomia, Universidade de Lisboa, Tapada da Ajuda, 1349-017 Lisboa, Portugal; School of Psychology and Life Sciences, Universidade Lusófona de Humanidades e Tecnologias, Campo Grande 376, 1749-024 Lisboa, Portugal.

Landscape, Environment, Agriculture and Food (LEAF), Instituto Superior de Agronomia, Universidade de Lisboa, Tapada da Ajuda, 1349-017 Lisboa, Portugal; Lisbon School of Health Technology, Instituto Politécnico de Lisboa, Av. D. João II, Lote 4.69.01, 1990-096 Lisboa, Portugal.

出版信息

Toxicol In Vitro. 2015 Dec;29(8):2009-14. doi: 10.1016/j.tiv.2015.08.016. Epub 2015 Aug 28.

Abstract

Human exposure to Bisphenol A (BPA) results mainly from ingestion of food and beverages. Information regarding BPA effects on colon cancer, one of the major causes of death in developed countries, is still scarce. Likewise, little is known about BPA drug interactions although its potential role in doxorubicin (DOX) chemoresistance has been suggested. This study aims to assess potential interactions between BPA and DOX on HT29 colon cancer cells. HT29 cell response was evaluated after exposure to BPA, DOX, or co-exposure to both chemicals. Transcriptional analysis of several cancer-associated genes (c-fos, AURKA, p21, bcl-xl and CLU) shows that BPA exposure induces slight up-regulation exclusively of bcl-xl without affecting cell viability. On the other hand, a sub-therapeutic DOX concentration (40 nM) results in highly altered c-fos, bcl-xl, and CLU transcript levels, and this is not affected by co-exposure with BPA. Conversely, DOX at a therapeutic concentration (4 μM) results in distinct and very severe transcriptional alterations of c-fos, AURKA, p21 and CLU that are counteracted by co-exposure with BPA resulting in transcript levels similar to those of control. Co-exposure with BPA slightly decreases apoptosis in relation to DOX 4 μM alone without affecting DOX-induced loss of cell viability. These results suggest that BPA exposure can influence chemotherapy outcomes and therefore emphasize the necessity of a better understanding of BPA interactions with chemotherapeutic agents in the context of risk assessment.

摘要

人类接触双酚A(BPA)主要源于食物和饮料的摄入。关于BPA对结肠癌(发达国家主要死因之一)影响的信息仍然匮乏。同样,尽管有人提出BPA在阿霉素(DOX)化疗耐药中可能发挥作用,但对BPA与药物相互作用的了解也很少。本研究旨在评估BPA与DOX对HT29结肠癌细胞的潜在相互作用。在HT29细胞暴露于BPA、DOX或两种化学物质共同暴露后,评估其细胞反应。对几个癌症相关基因(c-fos、AURKA、p21、bcl-xl和CLU)的转录分析表明,暴露于BPA仅诱导bcl-xl轻微上调,而不影响细胞活力。另一方面,亚治疗浓度的DOX(40 nM)导致c-fos、bcl-xl和CLU转录水平发生高度改变,且这种改变不受与BPA共同暴露的影响。相反,治疗浓度的DOX(4 μM)导致c-fos、AURKA、p21和CLU发生明显且非常严重的转录改变,而与BPA共同暴露可抵消这些改变,使转录水平与对照组相似。与单独使用4 μM DOX相比,与BPA共同暴露可轻微降低细胞凋亡,且不影响DOX诱导的细胞活力丧失。这些结果表明,暴露于BPA可影响化疗结果,因此强调在风险评估背景下更好地了解BPA与化疗药物相互作用的必要性。

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