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In vitro assessment of human nuclear hormone receptor activity and cytotoxicity of the flame retardant mixture FM 550 and its triarylphosphate and brominated components

机译:阻燃混合物FM 550及其磷酸三芳基酯和溴化组分的人核激素受体活性和细胞毒性的体外评估

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摘要

Firemaster® 550 (FM 550) is a mixture of brominated and triarylphosphate flame retardants used in polyurethane foam-based products. The primary components are also used in numerous other applications and are thus common household and industrial contaminants. Our previous animal studies suggested that FM 550 exposure may alter metabolism and cause weight gain. Employing human nuclear receptor (NR) luciferase reporter assays, the goal of this study was to evaluate the agonist actions of FM 550 and its constituent compounds at NRs with known roles in establishing or regulating energy balance. FM 550 was found to have significant agonist activity only at the master regulator of adipocyte differentiation PPARγ. As a result, the concentration response relationships and relative activities of FM 550 at PPARγ were investigated in more detail with the contribution of each chemical component defined and compared to the activities of the prototypical PPARγ environmental ligands triphenyltin and tributylytin. The resulting data indicated that the primary metabolic disruptive effects of FM 550 were likely mediated by the activity of the triarylphosphates at PPARγ, and have identified TPP as a candidate metabolic disruptor that also acts as a cytotoxicant.
机译:Firemaster ® 550(FM 550)是用于聚氨酯泡沫基产品的溴化和磷酸三芳基酯阻燃剂的混合物。主要成分还用于许多其他应用,因此是常见的家庭和工业污染物。我们以前的动物研究表明,FM 550暴露可能会改变新陈代谢并导致体重增加。本研究的目的是利用人类核受体(NR)荧光素酶报告基因分析方法,评估FM 550及其组成化合物对NR的激动作用,这些作用在建立或调节能量平衡方面具有已知作用。发现FM 550仅在脂肪细胞分化PPARγ的主调节剂上才具有显着的激动剂活性。结果,更详细地研究了FM 550在PPARγ上的浓度响应关系和相对活性,并定义了每种化学成分的贡献,并将其与典型PPARγ环境配体三苯基锡和三丁基锡的活性进行了比较。所得数据表明,FM 550的主要代谢破坏作用可能是由磷酸三芳基酯在PPARγ处的活性介导的,并且已确定TPP是候选的代谢破坏物,它也可以作为细胞毒物。

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