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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >A Whole-Mount Approach for Accurate Quantitative and Spatial Assessment of Fetal Oocyte Dynamics in Mice
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A Whole-Mount Approach for Accurate Quantitative and Spatial Assessment of Fetal Oocyte Dynamics in Mice

机译:精确定量和空间评估小鼠胎儿卵母细胞动力学的全安装方法

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Depletion of oocytes from the embryonic ovary is a key feature of mammalian oogenesis; however, the rational and molecular bases for this phenomenon remain poorly understood. Presently in the field, the most systematic analysis used to understand the effect of a given molecular pathway on fetal oocyte attrition is to count the number of oocytes in ovaries at different stages of development. This analysis is commonly done using a sampling method based on sectioning of the ovary, a technique that includes many laborious steps culminating in an inaccurate estimate of oocyte number contained within that ovary. This inability to generate data that are directly comparable between labs hinders the field and raises questions about the timing and rate of oocyte depletion. Therefore, we set out to implement a robust method that can be easily used by most research laboratories to study the dynamics of oogenesis during fetal mouse ovary development in both normal and experimental conditions. Here we describe an approach to accurately count the total number of oocytes in embryonic ovaries. This method is based on whole-mount immunofluorescence, tissue clearing with sucrose and ScaleA2 reagent, and automatic detection and counting of germ cells in intact ovaries using confocal microscopy and three-dimensional software analyses. We demonstrate the power of the method by assessing variation of fetal oocyte numbers between left and right ovaries and between litters of mice. Finally, we anticipate that the method could be adopted to the analysis of substages of meiotic prophase I and ovarian somatic cells.
机译:胚胎卵巢中卵母细胞的耗竭是哺乳动物卵子发生的关键特征。但是,对于这种现象的理性和分子基础仍然知之甚少。目前,在该领域中,用于了解给定分子途径对胎儿卵母细胞损耗的影响的最系统的分析是计算卵巢不同发育阶段卵母细胞的数量。通常使用基于卵巢切片的采样方法进行此分析,该技术包括许多费力的步骤,最终导致对该卵巢中所含卵母细胞数的不准确估算。这种无法生成实验室之间可直接比较的数据的方法阻碍了该领域,并引发了有关卵母细胞耗竭时间和速率的问题。因此,我们着手实施一种可靠的方法,该方法可以被大多数研究实验室轻松地用于研究正常和实验条件下胎儿小鼠卵巢发育过程中卵子发生的动力学。在这里,我们描述了一种方法,可以准确地计算胚胎卵巢中卵母细胞的总数。该方法基于整个安装的免疫荧光,使用蔗糖和ScaleA2试剂进行组织清除以及使用共聚焦显微镜和三维软件分析自动检测和计数完整卵巢中生殖细胞的数量。我们通过评估左右卵巢之间以及小鼠窝之间胎儿卵母细胞数量的变化来证明该方法的功效。最后,我们预期该方法可用于减数分裂前期I和卵巢体细胞亚阶段的分析。

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