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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Morphokinetic Evaluation of Embryo Development in a Mouse Model: Functional and Molecular Correlates
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Morphokinetic Evaluation of Embryo Development in a Mouse Model: Functional and Molecular Correlates

机译:小鼠模型中胚胎发育的流通评估:功能性和分子相关

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摘要

Although time-lapse analysis of early embryo cleavage parameters (morphokinetics) predicts blastocyst development, it has not been definitively linked to establishing pregnancy and live birth. For example, a direct comparison of the developmental potential of embryos with optimal kinetic parameters compared to suboptimal kinetics has not been performed with human embryos. To ascertain whether such a linkage exists, we developed a mouse model of morphokinetic analysis of early embryo cleavage using time-lapse microscopy to predict blastocyst formation and tested whether cleavage parameters predict pregnancy outcome by transferring morphokinetically optimal and suboptimal embryos into a single host. Using classification and regression trees, we established that the timing of the second and third mitotic divisions (division from two to three and three to four cells, respectively) predicts blastocyst development in the mouse. Using this prediction model, we found that the incidence of sustained implantation at midgestation was significantly higher for the optimal compared to suboptimal embryos. In addition, the incidence of resorption among implanted embryos was significantly higher in the suboptimal compared to the optimal group. Transcript profiling of optimal and suboptimal embryos revealed minimal differences between the two groups, suggesting that time-lapse imaging of early embryo cleavage events provides additional information regarding developmental competence apart from gene expression.
机译:虽然早期胚胎切割参数的时间流逝分析(Morphokinetics)预测胚泡发展,但它并没有明确地与建立妊娠和活产。例如,与人类胚胎未进行与次优导体相比具有最佳动力学参数的胚胎发育潜力的直接比较。为了确定是否存在这种联系,我们使用延时显微镜进行早期胚胎切割的小鼠模型,使用延时显微镜预测胚泡形成并测试解理参数是否通过将同种异性最佳和次优胚胎转移到单个宿主中来预测妊娠结果。使用分类和回归树,我们确立了第二和第三种丝分裂分别的时间(分别从两到三到三到四到四个细胞分别)预测了小鼠的胚泡发展。使用这种预测模型,我们发现与次优胚胎相比,最佳持续植入的发生率显着更高。此外,与最佳群体相比,嵌入胚胎中植入胚胎的吸收发生率显着高。最佳和次优胚的转录性分析显示了两组之间的最小差异,表明早期胚胎切割事件的时间延时成像提供了与基因表达外的发育能力的额外信息。

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