A screening strategy based on two zebrafish eleuthero-embryo OECD test guidelines for the hazard assessment of chemicals: case of some bisphenol substitutes

Armelle Christophe, Benjamin Piccini, Nathalie Hinfray, Edith Chadili, Emmanuelle Maillot-Marechal,Xavier Cousin,Mélanie Blanc,Thierry Charlier, Pascal Pandard, Selim Aït-Aïssa,François Brion

bioRxiv (Cold Spring Harbor Laboratory)(2023)

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摘要
The use of efficient screening strategies for the hazard assessment of chemicals is a current challenge to support regulatory requirements. Herein, we combined two eleuthero-embryo assays, a refined Fish Embryo Toxicity assay (OECD TG 236) and the EASZY assay (OECD TG 250), both using transgenic ( tg ) ( cyp19a1b :GFP). The simultaneous performance of both assays provides complementary information about the acute toxicity, developmental effects, and estrogenic activity. A refined EASZY assay is however necessary to obtain accurate EC50. In this work we compared bisphenol A (BPA) and ten of its substitutes. In the refined FET, most of the selected bisphenols were more toxic than BPA, induced developmental effects on zebrafish embryos, some being identified as teratogenic compounds (BPF, BPS-MAE, BPC Cl, 4,4’ODP), and ten of them induced GFP intensity. Endocrine activity of the BPs was further investigated in the EASZY assay at concentrations that do not affect the survival and the hatching rates or induce developmental toxicity based on the target concentrations used as previously defined in the refined FET. All bisphenols elicited an estrogenic activity with the notable exception of TCBPA. Most BPs were more estrogenic than BPA, acted as agonist ligands of zfERβ2 as shown in zebrafish-specific in vitro reporter gene assay and functional zfERs were required to induce brain aromatase. Interestingly, BPS-MAE and BPS-MPE behave as pro-estrogens as they were unable to transactivate zebrafish ERβ2 in vitro but induced brain aromatase in vivo . Overall, the implementation of the zebrafish eleuthero embryo-based screening strategy efficiently provided relevant data contributing to their environmental hazard. It also provides further evidence that bisphenols modulate cyp19a1b expression during early brain development whom potential short and long-term adverse effects need to be addressed. SYNOPSIS a zebrafish eleuthero embryo-screening strategy based on OECD TGs was implemented for an efficient hazard assessment of bisphenols revealing that most of them are more toxic and/or estrogenic than BPA ### Competing Interest Statement The authors have declared no competing interest.
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zebrafish,bisphenol substitutes,eleuthero-embryo
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