Environment and Climate Change Canada, National Wildlife Research Centre, Ottawa, ON, K1S 5B6, Canada.
Department of Biology, University of Ottawa, Ottawa, ON, K1N 6N5, Canada.
Environ Sci Pollut Res Int. 2022 Jun;29(29):44769-44778. doi: 10.1007/s11356-022-18812-z. Epub 2022 Feb 9.
Previously, we showed that the chicken LMH cell line cultured as 3D spheroids may be a suitable animal free alternative to primary chicken embryonic hepatocytes (CEH) for avian in vitro chemical screening. In this study, cytotoxicity and mRNA expression were determined in LMH 3D spheroids following exposure to bisphenol A (BPA), five BPA replacement compounds (BPF, TGSH, DD-70, BPAF, BPSIP), and 17β estradiol (E2). Results were compared to an earlier study that evaluated the same endpoints for these chemicals in CEH. BPA and the replacement compounds had LC50 values ranging from 16.6 to 81.8 μM; DD-70 and BPAF were the most cytotoxic replacements (LC50 = 17.23 ± 4.51 and 16.6 ± 4.78 μM). TGSH and DD-70 modulated the greatest number of genes, although fewer than observed in CEH. Based on the expression of apovitellenin and vitellogenin, BPAF was the most estrogenic compound followed by BPF, BPSIP, and BPA. More estrogen-responsive genes were modulated in LMH spheroids compared to CEH. Concentration-dependent gene expression revealed that DD-70 and BPAF altered genes related to lipid and bile acid regulation. Overall, cytotoxicity and clustering of replacements based on gene expression profiles were similar between LMH spheroids and CEH. In addition to generating novel gene expression data for five BPA replacement compounds in an in vitro avian model, this research demonstrates that LMH spheroids may represent a useful animal free alternative for avian toxicity testing.
先前,我们已经表明,培养为 3D 球体的鸡 LMH 细胞系可能是替代原代鸡胚肝细胞(CEH)进行禽类体外化学筛选的合适无动物替代物。在这项研究中,我们测定了 LMH 3D 球体在暴露于双酚 A(BPA)、五种 BPA 替代化合物(BPF、TGSH、DD-70、BPAF、BPSIP)和 17β 雌二醇(E2)后细胞毒性和 mRNA 表达情况。结果与我们早期评估这些化学物质在 CEH 中的相同终点的研究进行了比较。BPA 和替代化合物的 LC50 值范围为 16.6 至 81.8 μM;DD-70 和 BPAF 是最具细胞毒性的替代物(LC50=17.23±4.51 和 16.6±4.78 μM)。尽管 TGSH 和 DD-70 调节的基因数量最多,但与在 CEH 中观察到的相比,它们调节的基因数量较少。根据 apovitellenin 和 vitellogenin 的表达,BPAF 是最具雌激素活性的化合物,其次是 BPF、BPSIP 和 BPA。与 CEH 相比,LMH 球体中调节的雌激素反应基因更多。基于浓度依赖性基因表达,DD-70 和 BPAF 改变了与脂质和胆汁酸调节相关的基因。总体而言,LMH 球体和 CEH 之间细胞毒性和替代物基于基因表达谱的聚类相似。除了在体外禽类模型中产生五种 BPA 替代化合物的新基因表达数据外,这项研究还表明 LMH 球体可能是替代禽类毒性测试的有用无动物替代物。