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Photolysis of estrone generates estrogenic photoproducts with higher activity than the parent compound

机译:雌酮的光解产生的雌激素光产物的活性高于母体化合物

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In the present study, we aimed to evaluate the effect of UV-visible irradiation on the estrogenicity of an estrone aqueous solution by using chemical analysis associated with an in vitro bioassay and in silico analysis. An estrone aqueous solution was irradiated with an UV-visible high-pressure mercury lamp. By using the MELN in vitro cellular bioassay, based on the induction of a luciferase reporter gene upon the activation of the estrogen receptor by chemicals, we showed that the estrogenic potency of the solution increased after irradiation. High-performance liquid chromatography fractionation of the photolyzed solution followed by in vitro testing of fractions allowed the quantitation of the estrogenic potency of each fraction. Nine photoproducts were detected and characterized by liquid chromatography-mass spectrometry coupling. The observed estrogenic activity is mediated by mono- and multi-hydroxylated photoproducts; it is influenced by the position of hydroxyl groups on the steroidal skeleton. In addition, a structure-activity analysis of the hydroxylated photoproducts confirmed their ability to act as estrogen receptor ligands.
机译:在本研究中,我们旨在通过与体外生物测定和计算机分析相关的化学分析评估紫外线可见辐射对雌酮水溶液雌激素的影响。用紫外线可见的高压汞灯照射雌酮水溶液。通过使用MELN体外细胞生物测定法,基于化学物质激活雌激素受体后荧光素酶报道基因的诱导,我们表明溶液的雌激素作用在照射后会增加。高效液相色谱法对光解溶液进行分级分离,然后进行级分的体外测试,从而可以定量每种级分的雌激素效价。通过液相色谱-质谱联用技术检测并表征了九种光产物。观察到的雌激素活性是由单和多羟基化的光产物介导的。它受甾体骨架上羟基位置的影响。另外,羟基化光产物的结构活性分析证实了它们充当雌激素受体配体的能力。

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