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首页> 外文期刊>Environmental Health: A Global Access Science Source >Combinations of physiologic estrogens with xenoestrogens alter calcium and kinase responses, prolactin release, and membrane estrogen receptor trafficking in rat pituitary cells
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Combinations of physiologic estrogens with xenoestrogens alter calcium and kinase responses, prolactin release, and membrane estrogen receptor trafficking in rat pituitary cells

机译:生理性雌激素与异种雌激素的组合会改变大鼠垂体细胞中的钙和激酶反应,催乳素释放和膜雌激素受体运输

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Background Xenoestrogens such as alkylphenols and the structurally related plastic byproduct bisphenol A have recently been shown to act potently via nongenomic signaling pathways and the membrane version of estrogen receptor-α. Though the responses to these compounds are typically measured individually, they usually contaminate organisms that already have endogenous estrogens present. Therefore, we used quantitative medium-throughput screening assays to measure the effects of physiologic estrogens in combination with these xenoestrogens. Methods We studied the effects of low concentrations of endogenous estrogens (estradiol, estriol, and estrone) at 10 pM (representing pre-development levels), and 1 nM (representing higher cycle-dependent and pregnancy levels) in combinations with the same levels of xenoestrogens in GH3/B6/F10 pituitary cells. These levels of xenoestrogens represent extremely low contamination levels. We monitored calcium entry into cells using Fura-2 fluorescence imaging of single cells. Prolactin release was measured by radio-immunoassay. Extracellular-regulated kinase (1 and 2) phospho-activations and the levels of three estrogen receptors in the cell membrane (ERα, ERβ, and GPER) were measured using a quantitative plate immunoassay of fixed cells either permeabilized or nonpermeabilized (respectively). Results All xenoestrogens caused responses at these concentrations, and had disruptive effects on the actions of physiologic estrogens. Xenoestrogens reduced the % of cells that responded to estradiol via calcium channel opening. They also inhibited the activation (phosphorylation) of extracellular-regulated kinases at some concentrations. They either inhibited or enhanced rapid prolactin release, depending upon concentration. These latter two dose-responses were nonmonotonic, a characteristic of nongenomic estrogenic responses. Conclusions Responses mediated by endogenous estrogens representing different life stages are vulnerable to very low concentrations of these structurally related xenoestrogens. Because of their non-classical dose-responses, they must be studied in detail to pinpoint effective concentrations and the directions of response changes.
机译:背景技术近来,已显示异雌激素如烷基酚和与结构相关的塑料副产物双酚A通过非基因组信号传导途径和雌激素受体α的膜形式有效发挥作用。尽管通常单独测量对这些化合物的反应,但它们通常会污染已经存在内源性雌激素的生物。因此,我们使用定量中通量筛选测定法来测量生理雌激素与这些异雌激素的结合。方法我们研究了低浓度的内源性雌激素(雌二醇,雌三醇和雌酮)在10 pM(代表发育前水平)和1 nM(代表较高的周期依赖性和妊娠水平)与相同水平的内啡肽联合作用的影响。 GH3 / B6 / F10垂体细胞中的异雌激素。这些异雌激素水平表示极低的污染水平。我们使用单个细胞的Fura-2荧光成像监控了钙进入细胞的过程。通过放射免疫测定法测定催乳素的释放。使用定量板免疫测定法分别对透化或未透化的固定细胞进行细胞外调节激酶(1和2)磷酸化激活以及细胞膜中三种雌激素受体水平(ERα,ERβ和GPER)的测定。结果所有异雌激素均在这些浓度下引起反应,并对生理性雌激素的作用具有破坏性作用。异雌激素减少了通过钙通道开放对雌二醇作出反应的细胞的百分比。他们还在某些浓度下抑制细胞外调节激酶的活化(磷酸化)。根据浓度,它们抑制或增强了催乳素的快速释放。后两个剂量反应是非单调的,是非基因组雌激素反应的特征。结论由代表不同生命阶段的内源性雌激素介导的反应易受这些结构相关异种雌激素浓度很低的影响。由于它们具有非经典的剂量反应,因此必须对其进行详细研究,以查明有效浓度和反应变化的方向。

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