Department of Food Science and Biotechnology, Dongguk University, Goyang, 10326, Republic of Korea.
Department of Integrated Biomedical and Life Science, Korea University, Seoul, 02841, Republic of Korea.
Chemosphere. 2022 Mar;290:133267. doi: 10.1016/j.chemosphere.2021.133267. Epub 2021 Dec 14.
The adverse outcome pathway (AOP) has been recently proposed as an effective framework for chemical risk assessment. The AOP framework offers the advantage of effectively integrating individual in vitro studies and in silico prediction models. Thus, the development of an effective testing method to measure key events caused by chemicals is essential for chemical risk assessment through a fully developed AOP framework. We developed a human cell-based estrogen receptor α (ERα) dimerization assay using the bioluminescence resonance energy transfer (BRET) technique and evaluated the ERα dimerization activities of 72 chemicals. Fifty-one chemicals were identified to mediate dimerization of ERα, and the BRET-based ERα dimerization assay could effectively measure the events that mediated dimerization of ERα by the estrogenic chemicals. These results were compared with the results of pre-existing assay to determine whether the BRET-based ERα dimerization assay could be employed as an in vitro test method to provide scientific information for explaining key events as a part of the AOP framework. Consequently, we propose that the BRET-based ERα dimerization assay is suitable for measuring the chemical-mediated dimerization of ERα, a key event in the AOP framework for cellular-level risk assessment of estrogenic chemicals.
最近提出了一种新的方法,即有害效应通路(AOP),作为化学风险评估的有效框架。AOP 框架具有有效整合个体体外研究和计算预测模型的优势。因此,开发一种有效的测试方法来测量化学物质引起的关键事件,对于通过充分发展的 AOP 框架进行化学风险评估至关重要。我们使用生物发光共振能量转移(BRET)技术开发了一种基于人细胞的雌激素受体 α(ERα)二聚化测定法,并评估了 72 种化学物质的 ERα 二聚化活性。鉴定出 51 种化学物质介导 ERα 的二聚化,基于 BRET 的 ERα 二聚化测定法可以有效测量雌激素化学物质介导的 ERα 二聚化的事件。这些结果与现有的测定法进行了比较,以确定基于 BRET 的 ERα 二聚化测定法是否可作为体外测试方法,为 AOP 框架中的关键事件提供科学信息。因此,我们提出基于 BRET 的 ERα 二聚化测定法适用于测量化学物质介导的 ERα 二聚化,这是雌激素化学物质细胞水平风险评估 AOP 框架中的一个关键事件。