首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Mutual interaction of special phytoestrogenic compounds, their synthetic carboxy-derivatives and the less-calcemic vitamin D analog activities in human derived female cultured osteoblasts.
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Mutual interaction of special phytoestrogenic compounds, their synthetic carboxy-derivatives and the less-calcemic vitamin D analog activities in human derived female cultured osteoblasts.

机译:特殊的植物雌激素化合物,其合成的羧基衍生物和人源性女性培养的成骨细胞中钙含量低的维生素D类似物活性之间的相互作用。

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摘要

Cultured female-derived human bone cells (hObs) responded by different parameters to different phytoestrogenic and vitamin D compounds. Pre- and post-menopausal hObs express ERalpha and ERbeta mRNA with higher abundance of ERalpha. Pre-treatment with the less-calcemic vitamin D analog JKF 1624F(2)-2 (JKF) upregulated responsiveness to estrogens via modulation of ERs expression. These estrogenic compounds induce the expression and activity of 25 hydroxy-vitamin D(3)-1alpha hydroxylase (1OHase). We now analyzed the effects of carboxy-genistein (cG), carboxy-biocainin A (cBA) and carboxy-daidzein (cD), of BA, D or G and of licorice derived compounds glabridin (Glb) and glabrene (Gla) and estradiol-17beta (E(2)) on DNA synthesis, creatine kinase specific activity (CK), intracellular and membranal E(2) binding and their modulations by JKF in hObs. We also analyzed modulation by phytoestrogenic compounds of 1OHase mRNA expression and activity. We showed that: (1) all compounds stimulated DNA synthesis and CK. (2) JKF and all estrogenic compounds modulated ERalpha and ERbeta mRNA expression. (3) Pre-treatment with JKF increased DNA synthesis and CK responses only to E(2), D, G and Gla. (4) JKF increased the intracellular competitive binding only of E(2), D and G. (5) JKF abolished the membranal binding of all protein-bound estrogens. (6) JKF and all estrogenic compounds except the protein-bound ones up-regulated 1OHase expression and activity. In conclusion phytoestrogens and their analogs increase DNA synthesis and CK, and lead to increased production of 1,25(OH)(2)D(3) in hObs, while pre-treatment with JKF modulates the effect of estrogenic compounds via regulation of ERs mRNA expression in a yet unclear mechanism.
机译:培养的女性来源的人骨细胞(hOb)通过不同的参数对不同的植物雌激素和维生素D化合物作出响应。绝经前后hObs表达ERalpha和ERbeta mRNA,且ERalpha丰度更高。用钙含量较低的维生素D类似物JKF 1624F(2)-2(JKF)进行预处理可通过调节ERs表达来上调对雌激素的反应性。这些雌激素化合物诱导25羟基维生素D(3)-1α羟化酶(1OHase)的表达和活性。现在,我们分析了羧基染料木黄酮(cG),羧基生物素A(cBA)和羧基黄豆苷元(cD),BA,D或G以及甘草衍生化合物glabridin(Glb)和glabrene(Gla)和雌二醇的作用-17beta(E(2))对DNA合成,肌酸激酶比活性(CK),细胞内和膜E(2)结合及其在hObs中由JKF的调节作用。我们还分析了植物雌激素化合物对1OHase mRNA表达和活性的调节作用。我们证明:(1)所有化合物均刺激DNA合成和CK。 (2)JKF和所有雌激素化合物调节ERalpha和ERbeta mRNA表达。 (3)用JKF预处理仅增加了对E(2),D,G和Gla的DNA合成和CK反应。 (4)JKF仅增加了E(2),D和G的细胞内竞争结合。(5)JKF消除了所有蛋白结合的雌激素的膜结合。 (6)JKF和所有雌激素化合物除蛋白结合化合物外均上调了1OHase的表达和活性。总之,植物雌激素及其类似物可增加hOb中的DNA合成和CK,并导致1,25(OH)(2)D(3)的产量增加,而JKF预处理则通过调节ER来调节雌激素化合物的作用。 mRNA表达的机制尚不清楚。

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