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Estrogenic Activities of Sesame Lignans and Their Metabolites on Human Breast Cancer Cells

机译:芝麻木质素及其代谢产物对人乳腺癌细胞的雌激素活性

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Sesame lignans (sesamin, sesamolin) and their metabolites (enterodiol, ED; enterolactone, EL; and sesamol) have been evaluated for their estrogenic activities. ED and EL have been indicated to have estrogenic/antiestrogenic properties on human breast cancer cells; however the estrogenic activities of sesamin, sesamolin and sesamol have not been reported. In the present study, estrogenic potencies of sesame lignans and their metabolites were determined by estrogen responsive element (ERE) luciferase reporter assay in T47D cells stably transfected with ERE-luc (T47D-KBIuc cells) and quantifying pS2 and progesterone receptor gene expression in T47D cells. All tested compounds except ED possessed ability of ERE activation with a very low potency compared to estradiol (E2). These effects were abolished by coincubating tested compounds with 1 μM ICI 182 780, suggesting that estrogen receptors were directly involved in their ERE activations. Among tested compounds, sesamol showed the highest ability in ERE induction. The coincubation of increasing concentration of E2 (10~12-10~6 M) with 10 μM of tested compounds resulted in a downward shift of E2-ERE dose-response curves. In contrast, at the low concentration of E2 (10~(-12) M), sesamin and sesamol significantly exhibited additive effects on the E2 responses. The inhibitory effect in a dose-dependent manner was also observed when 1-100 μM sesamol was coincubated with 1 nM E2. Sesamin, sesamol and EL significantly induced pS2 gene expression whereas only sesamol could significantly induce progesterone receptor gene. The data obtained in this study suggested that sesame lignans and their metabolites possess weak estrogenic/antiestrogenic activity.
机译:芝麻木脂素(芝麻素,芝麻素)及其代谢产物(戊二醇,ED;肠内酯,EL和芝麻酚)的雌激素活性已得到评估。 ED和EL已被证明对人乳腺癌细胞具有雌激素/抗雌激素特性。然而,尚未报道芝麻素,芝麻素和芝麻酚的雌激素活性。在本研究中,通过稳定转染ERE-luc(T47D-KBIuc细胞)的T47D细胞中的雌激素反应元件(ERE)荧光素酶报告基因测定,确定了芝麻木脂素及其代谢物的雌激素能力,并定量了T47D中pS2和孕激素受体基因的表达细胞。与雌二醇(E2)相比,除ED以外的所有受试化合物均具有很低的ERE活化能力。通过将测试的化合物与1μMICI 182 780共孵育,可以消除这些影响,表明雌激素受体直接参与其ERE激活。在测试化合物中,芝麻酚显示出最高的ERE诱导能力。随着浓度增加的E2(10〜12-10〜6 M)与10μM受试化合物的共同孵育导致E2-ERE剂量反应曲线下降。相反,在低浓度的E2(10〜(-12)M)下,芝麻素和芝麻酚对E2响应表现出累加作用。当将1-100μM芝麻酚与1 nM E2共孵育时,也观察到了剂量依赖性的抑制作用。芝麻素,芝麻素和EL显着诱导pS2基因表达,而只有芝麻素可显着诱导孕激素受体基因。这项研究获得的数据表明,芝麻木脂素及其代谢产物具有弱的雌激素/抗雌激素活性。

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