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Mechanism of phytoestrogen action in Leydig cells of ganders (Anser anser domesticus): Interaction with estrogen receptors and steroidogenic enzymes

机译:甘草Leydig细胞中植物雌激素作用的机理:与雌激素受体和类固醇酶的相互作用

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Phytoestrogens (PE) are plant-derived compounds that have an estrogen-like activity and they can influence male and female reproduction. The possible mechanisms of PE action may be including: the binding to estrogen receptors (ER) and the interaction with the key steroidogenic enzymes. The aim of this study was to investigate if PE has effect on steroidogenesis of gander testicular cells by above-described pathways. The Leydig cells were isolated from testes of White Koluda~® ganders at the peak of their reproductive activity (March). These Leydig cells (1 × 10~5per mL) were pre-incubated with the ER inhibitor- ICI 182,780 (100 nM) for 3 h and then these cells were incubated with PE (5 and 50 μM): genistein, daidzein, equol and coumestrol during next 20 h or untreated control and the Leydig cells that were previously treated (20 h) with genistein (5 and 50 μM) were incubated for next 6 h with steroid intermediates (20 μM) as testosterone (T) precursors: hydroxycholesterol, pregnenolone, progesterone and androstenedione. Concentrations of T in the samples of incubation medium were measured using radioimmunoassay. Genistein, daidzein, and equol (5 and 50 μM) decreased (P < 0.05) T secretion by incubated gander Leydig cells and ICI 182, 780 did not eliminate the inhibitory effect of these PE. After genistein (50 μM) treatment, basal and stimulated with 22R-hydroxycholesterol, pregnenolone, progesterone and androstenedione, T production by testicular cells was decreased (P < 0.05). In contrast, genistein at lower dose (5 μM) did not affect the stimulatory effects of testosterone precursors. In conclusion, the inhibition of testosterone secretion by the phytoestrogens in gander Leydig cells did not depend on estrogen receptors. The suppression of steroidogenesis in these cells may be in part conducted by interaction of phytoestrogens with key steroidogenic enzymes. However, further studies are required to elucidate the phytoestrogen mechanism of action in gander testicular cells.
机译:植物雌激素(PE)是植物来源的化合物,具有类似雌激素的活性,它们可以影响雄性和雌性繁殖。 PE作用的可能机制可能包括:与雌激素受体(ER)的结合以及与关键类固醇生成酶的相互作用。这项研究的目的是通过上述途径研究PE是否对雄性睾丸细胞的类固醇生成有影响。 Leydig细胞在生殖活动高峰时(3月)从白g的睾丸中分离出来。将这些Leydig细胞(1×10〜5 / mL)与ER抑制剂ICI 182,780(100 nM)预温育3 h,然后将这些细胞与PE(5和50μM)温育:染料木黄酮,黄豆苷元,雌马酚和在接下来的20小时或未处理的对照中加入香豆雌酚,并将之前用染料木黄酮(5和50μM)处理过的Leydig细胞(20 h)与甾体中间体(20μM)作为睾丸激素(T)前体:羟胆固醇,孕烯醇酮,孕酮和雄烯二酮。使用放射免疫测定法测量孵育培养基样品中的T浓度。金雀异黄素,黄豆苷元和雌马酚(5和50μM)减少了温育的雄性Leydig细胞和ICI 182、780的T分泌(P <0.05)并没有消除这些PE的抑制作用。染料木黄酮(50μM)处理后,基础和22R-羟基胆固醇,孕烯醇酮,孕酮和雄烯二酮刺激,睾丸细胞的T生成减少(P <0.05)。相反,较低剂量(5μM)的染料木黄酮不会影响睾丸激素前体的刺激作用。总之,在雄性Leydig细胞中,植物雌激素对睾丸激素分泌的抑制作用不依赖于雌激素受体。这些细胞中类固醇生成的抑制可以部分通过植物雌激素与关键类固醇生成酶的相互作用来进行。但是,需要进一步的研究来阐明雄性睾丸细胞中植物雌激素的作用机理。

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