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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Adrenomedullin2 (ADM2)/Intermedin (IMD) in Rat Ovary: Changes in Estrous Cycle and Pregnancy and Its Role in Ovulation and Steroidogenesis
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Adrenomedullin2 (ADM2)/Intermedin (IMD) in Rat Ovary: Changes in Estrous Cycle and Pregnancy and Its Role in Ovulation and Steroidogenesis

机译:大鼠卵巢中的肾上腺髓质素2(ADM2)/中间蛋白(IMD):发情周期和妊娠的变化及其在排卵和类固醇形成中的作用

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Adrenomedullin2 (ADM2) is reported to facilitate embryo implantation and placental development. Therefore, the current study was undertaken to identify if ADM2 has a functional role in ovary to facilitate its reproductive actions. This study shows that the expression of ADM2 is differentially regulated in rat estrous cycle and that ADM2 increases the synthesis and secretion of 17beta-estradiol accompanied with an increase in the expression of steroidogenic factor 1 (Sf1), estrogen receptor Esr1, and enzymes involved in steroidogenesis in equine chorionic gonadotropin (eCG)-treated rat ovaries. In addition, inhibition of endogenous ADM2 function in eCG-treated immature rats caused impaired ovulation. Furthermore, the mRNA expression of Adm2 and receptor activity modifying protein 3 is higher in the ovary on Day 18 compared to nonpregnant and pregnant rats on Day 22. ADM2-like immunoreactivity is localized in granulosa cells, blood vessels, oocytes, cumulous oophorus, and corpus luteum of pregnant ovaries, suggesting a potential role for ADM2 in the ovary. This is supported by the presence of ADM2-like immunoreactivity in the corpus luteum during pregnancy and a decline in aromatase immunoreactivity in corpus luteum on Day 9 of gestation in rats infused with ADM2 antagonist during implantation and decidualization phase. Taken together, this study suggests a potential involvement of ADM2 in the rat ovary in regulating synthesis of estradiol to support ovulation and facilitate efficient implantation and placental development for a successful pregnancy.
机译:据报道肾上腺髓质素2(ADM2)有助于胚胎植入和胎盘发育。因此,目前的研究是为了确定ADM2在卵巢中是否具有促进其生殖作用的功能性作用。这项研究表明,ADM2的表达在大鼠发情周期中受到差异调节,并且ADM2增加17β-雌二醇的合成和分泌,同时增加类固醇生成因子1(Sf1),雌激素受体Esr1和参与其中的酶的表达马绒毛膜促性腺激素(eCG)处理的大鼠卵巢中的类固醇生成。此外,内源性ADM2功能的抑制在eCG治疗的未成熟大鼠中导致排卵障碍。此外,与第22天的未怀孕和怀孕的大鼠相比,第18天的卵巢中Adm2的mRNA表达和受体活性修饰蛋白3更高。ADM2样免疫反应性位于颗粒细胞,血管,卵母细胞,积卵和怀孕卵巢的黄体,提示ADM2在卵巢中的潜在作用。妊娠期间第9天,在植入和蜕膜化阶段注入ADM2拮抗剂的大鼠中,黄体中ADM2样免疫反应性的存在和黄体中芳香酶免疫反应性的下降都支持了这一点。两者合计,这项研究表明ADM2在大鼠卵巢中可能参与调节雌二醇的合成,以支持排卵并促进成功妊娠的有效植入和胎盘发育。

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