首页> 外文期刊>European Journal of Obstetrics, Gynecology and Reproductive Biology: An International Journal >The effect of estradiol, progesterone, and melatonin on estrous cycling and ovarian aromatase expression in intact female mice
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The effect of estradiol, progesterone, and melatonin on estrous cycling and ovarian aromatase expression in intact female mice

机译:雌二醇,孕酮和褪黑激素对完整雌性小鼠发情周期和卵巢芳香化酶表达的影响

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Objective Melatonin and progesterone levels decline during the perimenopause. Both hormones inhibit estrogen action and endometrial cancer, but little is known about how they act in combination. Therefore, the interplay of progesterone (P4) and melatonin was investigated in intact female mice. Study design Three P4 doses, low (25 mg), mid (50 mg), and high (100 mg), combined with 0.5 mg 17β-estradiol (E), were administered in the diet (per 1800 kcal) for 30 days. Hormone therapy (HT) with the low P 4 dose (estradiol/low progesterone replacement therapy (EP LRT)) was used to create an excess estrogen environment to mimic perimenopause. Half the mice were treated with melatonin (M) 15 mg/L in the drinking water at night. Results The unbalanced EPLRT treatment increased estrogen-regulated responses. Specifically, mice treated with EP LRT had significantly higher levels of ovarian aromatase mRNA versus control, which was prevented in the presence of higher doses of P4 and/or the addition of melatonin. The number of days in estrus also increased in EPLRT-treated versus control mice with no change in the length or number of complete estrous cycles. Melatonin, combined with all doses of P 4, increased the number of days spent in estrus, but not the length or number of estrous cycles compared to melatonin alone; however, two-way ANOVA revealed a significant interaction between melatonin and P4 dose for days in estrus and for number of cycles. Although none of the E2 and P4 combinations significantly affected uterine weight compared to control, melatonin addition to the low or mid P4 HT resulted in slightly higher uterine weights compared to melatonin-treated mice. Melatonin significantly increased uterine estrogen receptor alpha (ERα) and progesterone receptor A levels compared to control animals. HT, added in combination with melatonin, reduced ERα levels back to control levels, but PR levels remained elevated albeit intermediary to those achieved with melatonin alone. Conclusion The findings that melatonin supplementation inhibits ovarian aromatase expression and increases uterine receptors in mice given an HT that mimics perimenopause may have important clinical applications for the improvement of menopause-related conditions, like menorrhagia, associated with high levels of E2 and low levels of P4.
机译:客观围绝经期褪黑激素和孕酮水平下降。两种激素均能抑制雌激素作用和子宫内膜癌,但对它们如何联合起作用知之甚少。因此,在完整的雌性小鼠中研究了孕酮(P4)和褪黑激素的相互作用。研究设计在饮食中(每1800 kcal)施用低剂量(25 mg),中剂量(50 mg)和高剂量(100 mg)三种剂量的P4,与0.5 mg17β-雌二醇(E)相结合,持续30天。低P 4剂量的激素疗法(HT)(雌二醇/低孕激素替代疗法(EP LRT))用于创造过量的雌激素环境,以模拟更年期。晚上,一半的老鼠在饮用水中用15 mg / L褪黑激素(M)治疗。结果不平衡的EPLRT治疗增加了雌激素调节的反应。具体而言,用EP LRT治疗的小鼠的卵巢芳香化酶mRNA水平明显高于对照组,这在高剂量P4和/或褪黑激素存在下是可以预防的。与对照组相比,EPLRT治疗组小鼠的发情天数也增加,而完整发情周期的长度或数目均无变化。与单独使用褪黑激素相比,褪黑激素与所有剂量的P 4结合使用都增加了发情天数,但并未增加发情周期的长度或次数。然而,双向方差分析显示褪黑激素和P4剂量之间在发情中的天数和周期数之间存在显着的相互作用。尽管与对照组相比,E2和P4组合均未显着影响子宫重量,但与低水平或中度P4 HT相比,褪黑激素导致的子宫重量比经褪黑素治疗的小鼠略高。与对照动物相比,褪黑激素显着​​提高了子宫雌激素受体α(ERα)和孕激素受体A的水平。 HT与褪黑激素联合使用可将ERα水平降低至对照水平,但PR水平仍比单独使用褪黑激素所达到的水平高。结论补充褪黑激素可抑制模拟围绝经期HT的小鼠的卵巢芳香化酶表达并增加子宫受体,这一发现可能对改善与更年期相关的疾病(如月经过多,E2高和P4低)具有重要的临床应用价值。

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