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用于预测体外发育毒性的分子靶点和早期反应生物标志物。

Molecular targets and early response biomarkers for the prediction of developmental toxicity in vitro.

作者信息

Stigson Michael, Kultima Kim, Jergil Måns, Scholz Birger, Alm Henrik, Gustafson Anne-Lee, Dencker Lennart

机构信息

Department of Pharmaceutical Biosciences, Division of Toxicology, Uppsala University, Uppsala, Sweden.

出版信息

Altern Lab Anim. 2007 Jun;35(3):335-42. doi: 10.1177/026119290703500313.

Abstract

There is an urgent need for new in vitro methods to predict the potential developmental toxicity of candidate drugs in the early lead identification and optimisation process. This would lead to a reduction in the total number of animals required in full-scale developmental toxicology studies, and would improve the efficiency of drug development. However, suitable in vitro systems permitting robust high-throughput screening for this purpose, for the most part, remain to be designed. An understanding of the mechanisms involved in developmental toxicity may be essential for the validation of in vitro tests. Early response biomarkers - even a single one - could contribute to reducing assay time and facilitating automation. The use of toxicogenomics approaches to study in vitro and in vivo models in parallel may be a powerful tool in defining such mechanisms of action and the molecular targets of toxicity, and also for use in finding possible biomarkers of early response. Using valproic acid as a model substance, the use of DNA microarrays to identify teratogen-responsive genes in cell models is discussed. It is concluded that gene expression in P19 mouse embryocarcinoma cells represents a potentially suitable assay system, which could be readily used in a tiered testing system for developmental toxicity testing.

摘要

在早期先导化合物的识别和优化过程中,迫切需要新的体外方法来预测候选药物的潜在发育毒性。这将减少全面发育毒理学研究所需的动物总数,并提高药物开发的效率。然而,目前大部分适用于此目的的、能够进行可靠高通量筛选的体外系统仍有待设计。了解发育毒性所涉及的机制对于体外试验的验证可能至关重要。早期反应生物标志物——哪怕只有一个——都可能有助于缩短检测时间并便于实现自动化。并行使用毒理基因组学方法来研究体外和体内模型,可能是一种强大的工具,可用于确定此类作用机制和毒性分子靶点,也可用于寻找早期反应的可能生物标志物。本文以丙戊酸作为模型物质,讨论了使用DNA微阵列在细胞模型中识别致畸物反应基因的情况。得出的结论是P19小鼠胚胎癌细胞中的基因表达代表了一种潜在合适的检测系统,该系统可很容易地用于发育毒性测试的分级检测系统中。

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