首页> 外文期刊>The Journal of Reproduction and Development >Hypoxia is important for establishing vascularization during corpus luteum formation in cattle.
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Hypoxia is important for establishing vascularization during corpus luteum formation in cattle.

机译:低氧对于在牛黄体形成过程中建立血管形成很重要。

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摘要

Hypoxia-inducible factor 1 (HIF1) has been demonstrated to have critical roles in angiogenesis via transcriptional regulation of angiogenic factors, such as vascular endothelial growth factor (VEGF). In the ovary, angiogenesis is known to occur after ovulation in the developing corpus luteum (CL) in mammals. To determine whether HIF1 participates in angiogenesis in bovine CL, the present study investigated the mRNA and protein expressions of the HIF1 alpha subunit (HIF1A) and VEGF in bovine CL during the estrous cycle. The effects of hypoxia on the expressions of HIF1A protein, VEGF mRNA and VEGF protein in bovine luteal cells were also examined by using a cell culture system. HIF1A mRNA expression was less at the regressed stage than at the other stages, whereas protein expression of HIF1A was highest at the early luteal stage and decreased thereafter. VEGF mRNA expression was highest at the developing luteal stage and decreased thereafter. VEGF protein expression was highest at the early luteal stage and decreased significantly at the regressed luteal stage. Hypoxia increased the amounts of HIF1A protein, VEGF mRNA and VEGF protein in cultured bovine luteal cells. Furthermore, we found that hypoxia inhibited progesterone production in the mid luteal cells, but not in the early luteal cells. The overall findings indicate that HIF1 is one of the factors promoting VEGF-induced angiogenesis during luteal development, and suggest that the hypoxic conditions formed after follicle rupture contribute to establishing luteal vascularization in cattle.
机译:缺氧诱导因子1(HIF1)已被证明通过血管生成因子,例如血管内皮生长因子(VEGF)的转录调控在血管生成中具有关键作用。在卵巢中,已知在哺乳动物的发育中的黄体(CL)排卵后发生血管生成。为了确定HIF1是否参与牛CL中的血管生成,本研究调查了动情周期中牛CL中HIF1α亚基(HIF1A)和VEGF的mRNA和蛋白表达。还通过使用细胞培养系统检查了缺氧对牛黄体细胞中HIF1A蛋白,VEGF mRNA和VEGF蛋白表达的影响。 HIF1A mRNA的表达在回归阶段比其他阶段少,而HIF1A的蛋白质表达在黄体早期最高,随后下降。 VEGF mRNA表达在黄体发育阶段最高,此后下降。 VEGF蛋白表达在黄体早期最高,而在黄体退化期则明显降低。低氧增加了培养的牛黄体细胞中HIF1A蛋白,VEGF mRNA和VEGF蛋白的含量。此外,我们发现低氧抑制了黄体中部细胞的孕激素生成,但黄体中的早期细胞却没有。总体研究结果表明,HIF1是在黄体发育过程中促进VEGF诱导的血管生成的因素之一,并表明卵泡破裂后形成的低氧条件有助于建立牛的黄体血管化。

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