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首页> 外文期刊>The Journal of Reproduction and Development >Increased supply from blood vessels promotes the activation of dormant primordial follicles in mouse ovaries
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Increased supply from blood vessels promotes the activation of dormant primordial follicles in mouse ovaries

机译:从血管的增加增加促进小鼠卵巢的休眠原始卵泡的激活

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The controlled activation of dormant primordial follicles is important for the maintenance of periodic ovulation. Previous reports have clearly identified the signaling pathway in granulosa cells and oocytes that controls the activation of primordial follicles; however, the exact cue for the in vivo activation of dormant primordial follicles is yet to be elucidated. In this study, we found that almost all activated primordial follicles made contact with blood vessels. Based on this result, we speculated that the contact between primordial follicles and blood vessels may provide a cue for the activation of dormant primordial follicles. To confirm this hypothesis, we attempted to activate dormant primordial follicles within the ovaries by inducing angiogenesis through the use of biodegradable gels containing recombinant vascular endothelial growth factor and in cultured ovarian tissues by increasing the serum concentration within the culture medium. The activation of dormant primordial follicles was promoted in both experiments, and our results indicated that an increase in the supply of the serum component, from new blood vessels formed via angiogenesis, to the dormant primordial follicles is the cue for their in vivo activation. In the ovaries, angiogenesis often occurs during every estrous cycle, and it is therefore likely that angiogenesis is the crucial event that influences the activation of primordial follicles.
机译:休眠原始卵泡的受控活化对于维持周期性排卵是重要的。先前的报告已经清楚地鉴定了控制原始卵泡的激活的颗粒细胞和卵母细胞中的信号通路;然而,尚不阐明体内激活休眠原始卵泡的精确提示。在这项研究中,我们发现几乎所有活化的原始卵泡都与血管接触。基于此结果,我们推测原始卵泡和血管之间的接触可以提供休眠原始卵泡的激活。为了确认这一假设,我们试图通过使用含有重组血管内皮生长因子和培养的卵巢组织通过增加培养基内的血清浓度来激活血管生成来激活卵巢内的卵巢原始卵泡。在两种实验中促进了休眠原始卵泡的激活,我们的结果表明,从通过血管生成形成的新血管,血清组分的供应增加到休眠原始卵泡是其体内活化的提示。在卵巢中,血管生成通常发生在每个溶解的循环中,因此可能是影响原始卵泡激活的关键事件。

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