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首页> 外文期刊>General and comparative endocrinology >Examination of methods for manipulating serum 17 beta-Estradiol (E2) levels by analysis of blood E2 concentration in medaka (Oryzias latipes)
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Examination of methods for manipulating serum 17 beta-Estradiol (E2) levels by analysis of blood E2 concentration in medaka (Oryzias latipes)

机译:通过分析Medaka(Oryzias Lipipes)的血液E2浓度来检查血清17β-雌二醇(E2)水平的方法

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It is widely known that reproduction in vertebrates is regulated by the hypothalamus-pituitary-gonadal (HPG) axis. Although the mechanism of the HPG axis has been well documented in mammals, it cannot be always applied to that in non-mammalian species, which is a great disadvantage in understanding reproduction of vertebrates in general. Recently, transgenic and genome editing tools have rapidly been developed in small teleosts, and thus these species are expected to be useful for the understanding of general mechanism of reproduction in vertebrates. One of the major sex steroid hormones in female vertebrates 1713-Estradiol (E2) plays crucial roles in the formation of sexual dimorphism and the HPG axis regulation. In spite of the importance of E2 in reproductive regulation, only a few studies have analyzed blood E2 levels in small teleosts that are easily amenable to genetic manipulation. In the present study, we analyzed blood E2 concentration in medaka and demonstrated that female medaka show diurnal changes in blood E2 concentration. We then examined the best method for manipulating the circulating E2. First, we found that ovariectomy (OVX) drastically removes endogenous E2 in a day in female medaka. We examined different methods for E2 administration and revealed that feeding administration of E2-containing food is the most convenient and physiological method for mimicking the diurnal E2 changes of female medaka. On the other hand, the medaka exposed to E2 containing water showed high blood E2 concentrations, which exceeds those of environmental water, suggesting that E2 may cause bioconcentration.
机译:众所周知,脊椎动物中的再现由下丘脑 - 垂体 - 垂体(HPG)轴调节。虽然HPG轴的机制在哺乳动物中被充分记录,但它不能总是在非哺乳动物物种中应用,这是一个巨大的缺点,在了解脊椎动物的再现。最近,转基因和基因组编辑工具迅速发展在小极端中,因此这些物种预计可用于了解脊椎动物中繁殖的一般机制。雌性脊椎动物中的主要性类固醇激素之一1713-雌二醇(E2)在形成性二态性和HPG轴调节方面起着至关重要的作用。尽管E2在生殖调节中的重要性,但只有少数研究分析了易于遗传操作的小电源中的血液E2水平。在本研究中,我们分析了Medaka的血液e2浓度,并证明了雌性Medaka显示血液E2浓度的昼夜变化。然后,我们检查了操纵循环E2的最佳方法。首先,我们发现卵巢切除术(OVX)在雌性Medaka的一天内大大移除内源E2。我们检查了E2授权的不同方法,并揭示了含E2食物的喂养给药是模仿雌性Medaka的昼夜E2变化的最方便和生理的方法。另一方面,暴露于含有水的E2水的Medaka显示出高血液E2浓度超过环境水的浓度,表明E2可能导致生物浓缩。

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