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Proteomic analysis and in vitro developmental toxicity tests for mechanism-based safety evaluation of chemicals.

机译:蛋白质组学分析和体外发育毒性测试,用于基于机理的化学品安全性评估。

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摘要

Mechanism-based safety evaluation and reduction of animal use are important issues in recent developmental toxicology. In vitro developmental toxicity tests with proteomic analysis are the most promising solution to these issues. Groebe et al. systematically applied proteomic analysis to the embryonic stem cell test, a validated in vitro developmental toxicity test, and found protein-expression changes induced by model test chemicals selected from various categories of toxicity. Cluster analysis of all the proteins with expression changes classified the test chemicals into two groups: highly embryotoxic chemicals and non- or weakly embryotoxic chemicals. In addition, some protein biomarker candidates that were known to be involved in normal development were identified. Although further mechanistic investigations are needed, the use of in vitro developmental toxicity tests with proteomic analysis will contribute to mechanism-based safety evaluation with minimal use of animals.
机译:基于机理的安全性评估和减少动物的使用是最近发展毒理学中的重要问题。蛋白质组学分析的体外发育毒性测试是解决这些问题的最有希望的解决方案。 Groebe等。系统地将蛋白质组学分析应用于胚胎干细胞测试,这是经过验证的体外发育毒性测试,并且发现由选自各种毒性类别的模型测试化学物质诱导的蛋白质表达变化。所有具有表达变化的蛋白质的聚类分析将测试化学品分为两类:高度胚胎毒性化学品和非或弱胚胎毒性化学品。另外,鉴定了一些已知参与正常发育的蛋白质生物标志物候选物。尽管需要进行进一步的机理研究,但结合蛋白质组学分析进行体外发育毒性试验将有助于以最少的动物使用量进行基于机制的安全性评估。

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