ScitoVation, 6 Davis Drive, Research Triangle Park, NC, United States; United States Environmental Protection Agency, Office of Research and Development, National Exposure Research Laboratory, Research Triangle Park, NC, United States.
ScitoVation, 6 Davis Drive, Research Triangle Park, NC, United States.
Toxicol In Vitro. 2019 Feb;54:41-57. doi: 10.1016/j.tiv.2018.09.006. Epub 2018 Sep 12.
The ToxCast program has generated in vitro screening data on over a thousand chemicals to assess potential disruption of important biological processes and assist in hazard identification and chemical testing prioritization. Few results have been reported for complex mixtures. To extend these ToxCast efforts to mixtures, we tested extracts from 30 organically grown fruits and vegetables in concentration-response in the BioMAP® assays. BioMAP systems use human primary cells primed with endogenous pathway activators to identify phenotypic perturbations related to proliferation, inflammation, immunomodulation, and tissue remodeling. Clustering of bioactivity profiles revealed separation of these produce extracts and ToxCast chemicals. Produce extracts elicited 87 assay endpoint responses per item compared to 20 per item for ToxCast chemicals. On a molar basis, the produce extracts were 10 to 50-fold less potent and when constrained to the maximum testing concentration of the ToxCast chemicals, the produce extracts did not show activity in as many assay endpoints. Using intake adjusted measures of dose, the bioactivity potential was higher for produce extracts than for agrichemicals, as expected based on the comparatively small amounts of agrichemical residues present on conventionally grown produce. The evaluation of BioMAP readouts and the dose responses for produce extracts showed qualitative and quantitative differences from results with single chemicals, highlighting challenges in the interpretation of bioactivity data and dose-response from complex mixtures.
ToxCast 计划已经生成了超过 1000 种化学物质的体外筛选数据,以评估其对重要生物过程的潜在干扰,并有助于进行危害识别和化学测试优先级排序。对于复杂混合物,很少有结果被报道。为了将这些 ToxCast 工作扩展到混合物,我们在 BioMAP®测定中以浓度反应的方式测试了 30 种有机生长的水果和蔬菜的提取物。BioMAP 系统使用经过内源性途径激活剂预先处理的人原代细胞,以识别与增殖、炎症、免疫调节和组织重塑相关的表型干扰。生物活性谱的聚类揭示了这些农产品提取物和 ToxCast 化学物质的分离。与 ToxCast 化学物质每个项目 20 个相比,农产品提取物每个项目引发 87 个测定终点反应。基于摩尔基础,农产品提取物的效力要低 10 到 50 倍,而在限制为 ToxCast 化学物质的最大测试浓度时,农产品提取物在如此多的测定终点没有显示出活性。使用摄入量调整后的剂量衡量标准,农产品提取物的生物活性潜力高于农业化学品,这与传统种植的农产品中存在的相对少量农业化学品残留相符。BioMAP 读数和农产品提取物的剂量反应评估显示与单一化学物质的结果存在定性和定量差异,突出了从复杂混合物中解释生物活性数据和剂量反应的挑战。