†Institut National de l'Environnement Industriel et des Risques (INERIS), Unité Écotoxicologie in vitro et in vivo, F-60550 Verneuil-en-Halatte, France.
‡INRA, UMR1331, Toxalim, Research Centre in Food Toxicology, F-31027 Toulouse, France.
Environ Sci Technol. 2015 Mar 17;49(6):3860-8. doi: 10.1021/es505302c. Epub 2015 Mar 2.
Several human and fish bioassays have been designed to characterize the toxicity and the estrogenic activity of chemicals. However, their biotransformation capability (bioactivation/detoxification processes) is rarely reported, although this can influence the estrogenic potency of test compounds. The fate of two estrogenic chemicals, the UV filter benzophenone-2 (BP2) and the bisphenol A substitute bisphenol S (BPS) was deciphered in eight human and zebrafish in vitro cell models, encompassing hepatic and mammary cellular contexts. BP2 and BPS were metabolized into a variety of gluco- and sulfo-conjugated metabolites. Similar patterns of BP2 and BPS biotransformation were observed among zebrafish models (primary hepatocytes, ZFL and ZELH-zfER cell lines). Interestingly, metabolic patterns in zebrafish models and in the human hepatic cell line HepaRG shared many similarities, while biotransformation rates in cell lines widely used for estrogenicity testing (MELN and T47D-KBLuc) were quantitatively low and qualitatively different. This study provides new data on the comparative metabolism of BP2 and BPS in human and fish cellular models that will help characterize their metabolic capabilities, and underlines the relevance of using in vitro zebrafish-based bioassays when screening for endocrine disrupting chemicals.
已经设计了几种人体和鱼类生物测定法来表征化学物质的毒性和雌激素活性。然而,尽管这可能会影响测试化合物的雌激素效力,但它们的生物转化能力(生物活化/解毒过程)很少被报道。两种雌激素化学物质,紫外线滤光剂二苯甲酮-2(BP2)和双酚 A 替代品双酚 S(BPS)的命运在八种人体和斑马鱼体外细胞模型中被揭开,涵盖了肝脏和乳腺细胞环境。BP2 和 BPS 被代谢成各种葡萄糖和硫酸结合代谢物。在斑马鱼模型(原代肝细胞、ZFL 和 ZELH-zfER 细胞系)中观察到 BP2 和 BPS 生物转化的相似模式。有趣的是,斑马鱼模型和人肝细胞系 HepaRG 中的代谢模式有许多相似之处,而广泛用于雌激素检测的细胞系(MELN 和 T47D-KBLuc)中的生物转化率在数量上较低且质量不同。本研究提供了有关 BP2 和 BPS 在人体和鱼类细胞模型中比较代谢的新数据,这将有助于表征它们的代谢能力,并强调了当筛选内分泌干扰化学物质时使用基于斑马鱼的体外生物测定法的相关性。