Burgoon Lyle D, Zacharewski Timothy R
Toxicogenomic Informatics and Solutions, LLC, Lansing, Michigan 48909, USA.
Toxicol Sci. 2008 Aug;104(2):412-8. doi: 10.1093/toxsci/kfn083. Epub 2008 Apr 25.
Regulatory and homeland security agencies undertake safety and risk assessments to assess the potential hazards of radiation, chemical, biological, and pharmaceutical agents. By law, these assessments must be science-based to ensure public safety and environmental quality. These agencies use dose-response modeling and benchmark dose methods to identify points of departure across single end points elicited by the agent. Regulatory agencies have also begun to examine toxicogenomic data to identify novel biomarkers of exposure and assess potential toxicity. The ToxResponse Modeler streamlines analyses and point of departure (POD) calculations across hundreds of responses (e.g., differential gene expression, changes in metabolite levels) through an automated process capable of large-scale modeling and model selection. The application identifies the best-fit dose-response model utilizing particle swarm optimization and calculates the probabilistic POD. The application analyzed a publicly available 2,3,7,8-tetrachlorodibenzo-p-dioxin dose-response data set of hepatic gene expression data in C57BL/6 mice to identify putative biomarkers. The Gene Ontology mapped these responses to specific functions to differentiate adaptive effects from toxic responses. In principle, safety and risk assessors could use the automated ToxResponse Modeler to analyze any large dose-response data set including outputs from high-throughput screening assays to assist with the ranking and prioritization of compounds that warrant further investigation or development.
监管机构和国土安全机构开展安全与风险评估,以评估辐射、化学、生物和药物制剂的潜在危害。根据法律规定,这些评估必须以科学为依据,以确保公众安全和环境质量。这些机构使用剂量反应模型和基准剂量方法来确定该制剂引发的单个终点的起始点。监管机构也已开始研究毒理基因组数据,以识别新的暴露生物标志物并评估潜在毒性。ToxResponse Modeler通过一个能够进行大规模建模和模型选择的自动化过程,简化了对数百种反应(如差异基因表达、代谢物水平变化)的分析和起始点(POD)计算。该应用程序利用粒子群优化算法识别最佳拟合剂量反应模型,并计算概率性POD。该应用程序分析了一个公开可用的C57BL/6小鼠肝脏基因表达数据的2,3,7,8-四氯二苯并对二恶英剂量反应数据集,以识别推定的生物标志物。基因本体将这些反应映射到特定功能,以区分适应性效应和毒性反应。原则上,安全和风险评估人员可以使用自动化的ToxResponse Modeler来分析任何大型剂量反应数据集,包括高通量筛选分析的输出结果,以协助对值得进一步研究或开发的化合物进行排序和优先级划分。