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Expression and contribution of the HIF-1 alpha/VEGF signaling pathway to luteal development and function in pregnant rats

机译:HIF-1 alpha / VEGF信号通路在妊娠大鼠黄体发育和功能中的表达及其作用

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Vascular endothelial growth factor (VEGF) is vital in normal and abnormal angiogenesis in the ovary, particularly during the early development of the corpus luteum in the ovary. However, the molecular regulation of the expression VEGF during luteal development in vivo remains to be fully elucidated. As the expression of VEGF is mediated by hypoxia-inducible factor (HIF)-1 alpha in luteal cells cultured in vitro, determined in our previous study, the present study was performed to confirm the hypothesis that HIP-la is induced and then regulates the expression of VEGF and VEGF-dependent luteal development/function in vivo. This was investigated using a pregnant rat model treated with a small-molecule inhibitor of HIF-1 alpha, echinomycin (Ech). The development of the corpus luteum in the pregnant rat ovary was identified via performing assays of the serum progesterone, testosterone and estradiol concentrations by radioimmunoassay, accompanied with determination of the changes in the expression levels of HIF-1 alpha and VEGF by reverse transcription-quantitative polymerase chain reaction at different days of the developmental process. On day 5, serum progesterone levels were markedly increased, whereas serum levels of testosterone and estradiol did not change significantly. On day 17, the highest level of serum progesterone was observed, however, this was not the case for testosterone and estradiol. Further analysis of the expression levels of HIF-1 alpha and VEGF revealed that their changes were consistent with the changes in serum levels of progesterone, which occurred in the development of the corpus luteum in the ovaries of pregnant rats. Further investigation demonstrated that Ech inhibited luteal development through inhibiting the expression of VEGF, mediated by HIP-1 alpha, and subsequent luteal function, which was determined by detecting changes in serum progesterone on days 8 and 14. Taken together, these results demonstrated that HIP-1 alpha-mediated expression of VEGF may be one of the important mechanisms regulating ovarian luteal development in mammals in vivo, which may provide novel strategies in treatment for fertility control and for certain types of ovarian dysfunction, including polycystic ovarian syndrome, ovarian hyperstimulation syndrome and ovarian neoplasia.
机译:血管内皮生长因子(VEGF)在卵巢的正常和异常血管生成中至关重要,尤其是在卵巢黄体的早期发育过程中。然而,在体内黄体发育过程中表达VEGF的分子调控仍有待充分阐明。在我们先前的研究中确定,由于在体外培养的黄体细胞中VEGF的表达是由缺氧诱导因子(HIF)-1α介导的,因此进行本研究以确认HIP-1a被诱导并随后调节HIP-1a的假设。体内VEGF的表达和VEGF依赖性黄体发育/功能。这是通过使用HIF-1α小分子抑制剂棘轮霉素(Ech)处理的怀孕大鼠模型研究的。通过放射免疫法测定血清孕酮,睾丸激素和雌二醇的浓度,并通过逆转录定量测定HIF-1α和VEGF的表达水平的变化,鉴定了妊娠大鼠卵巢中黄体的发育。在发育过程的不同日期发生聚合酶链反应。在第5天,血清孕酮水平显着升高,而血清睾丸激素和雌二醇水平没有明显变化。在第17天,观察到血清孕酮的最高水平,但是对于睾丸激素和雌二醇却并非如此。对HIF-1α和VEGF表达水平的进一步分析表明,它们的变化与孕激素水平在黄体发育过程中发生的血清孕酮水平变化一致。进一步的研究表明,Ech通过抑制HIP-1α介导的VEGF表达和随后的黄体功能来抑制黄体发育,这是通过在第8天和第14天检测血清孕酮的变化来确定的。综上,这些结果表明,HIP -1α介导的VEGF表达可能是体内调节卵巢黄体发育的重要机制之一,这可能为控制生育力和某些类型的卵巢功能障碍(包括多囊卵巢综合征,卵巢过度刺激综合征)提供新的策略。和卵巢肿瘤。

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