US Environmental Protection Agency, Office of Research and Development, National Center for Computational Toxicology, Research Triangle Park, North Carolina, USA.
J Toxicol Environ Health B Crit Rev. 2010 Feb;13(2-4):329-46. doi: 10.1080/10937404.2010.483949.
Primary human hepatocyte cultures are useful in vitro model systems of human liver because when cultured under appropriate conditions the hepatocytes retain liver-like functionality such as metabolism, transport, and cell signaling. This model system was used to characterize the concentration- and time-response of the 320 ToxCast chemicals for changes in expression of genes regulated by nuclear receptors. Fourteen gene targets were monitored in quantitative nuclease protection assays: six representative cytochromes P-450, four hepatic transporters, three Phase II conjugating enzymes, and one endogenous metabolism gene involved in cholesterol synthesis. These gene targets are sentinels of five major signaling pathways: AhR, CAR, PXR, FXR, and PPARalpha. Besides gene expression, the relative potency and efficacy for these chemicals to modulate cellular health and enzymatic activity were assessed. Results demonstrated that the culture system was an effective model of chemical-induced responses by prototypical inducers such as phenobarbital and rifampicin. Gene expression results identified various ToxCast chemicals that were potent or efficacious inducers of one or more of the 14 genes, and by inference the 5 nuclear receptor signaling pathways. Significant relative risk associations with rodent in vivo chronic toxicity effects are reported for the five major receptor pathways. These gene expression data are being incorporated into the larger ToxCast predictive modeling effort.
原代人肝细胞培养物是研究人类肝脏的有用的体外模型系统,因为在适当的条件下培养时,肝细胞保留了肝脏样的功能,如代谢、转运和细胞信号转导。该模型系统用于研究 320 种 ToxCast 化学物质对核受体调控的基因表达变化的浓度和时间反应。采用定量核酸酶保护分析监测了 14 个基因靶点:6 种代表性细胞色素 P450、4 种肝转运蛋白、3 种 Phase II 结合酶和 1 种参与胆固醇合成的内源性代谢基因。这些基因靶点是 5 种主要信号通路(AhR、CAR、PXR、FXR 和 PPARalpha)的哨兵。除了基因表达外,还评估了这些化学物质对细胞健康和酶活性的相对效力和功效。结果表明,该培养系统是典型诱导剂如苯巴比妥和利福平诱导的化学物质反应的有效模型。基因表达结果确定了各种 ToxCast 化学物质是 14 个基因中的一个或多个基因以及 5 个核受体信号通路的有效或高效诱导剂。报告了与 5 种主要受体途径的啮齿动物体内慢性毒性作用的显著相对风险关联。这些基因表达数据正在被纳入更大的 ToxCast 预测建模工作中。