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Non-invasive imaging of human embryos before embryonic genome activation predicts development to the blastocyst stage

机译:胚胎基因组激活之前的人类胚胎非侵入性成像可预测发育到胚泡阶段

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摘要

We report studies of preimplantation human embryo development that correlate time-lapse image analysis and gene expression profiling. By examining a large set of zygotes from in vitro fertilization (IVF), we find that success in progression to the blastocyst stage can be predicted with >93% sensitivity and specificity by measuring three dynamic, noninvasive imaging parameters by day 2 after fertilization, before embryonic genome activation (EGA). These parameters can be reliably monitored by automated image analysis, confirming that successful development follows a set of carefully orchestrated and predictable events. Moreover, we show that imaging phenotypes reflect molecular programs of the embryo and of individual blastomeres. Single-cell gene expression analysis reveals that blastomeres develop cell autonomously, with some cells advancing to EGA and others arresting. These studies indicate that success and failure in human embryo development is largely determined before EGA. Our methods and algorithms may provide an approach for early diagnosis of embryo potential in assisted reproduction.
机译:我们报告植入前人类胚胎发育的研究,该研究与延时图像分析和基因表达谱相关。通过检查大量来自体外受精(IVF)的受精卵,我们发现可以通过在受精后第2天测量三个动态的非侵入性成像参数,以超过93%的敏感性和特异性来预测进展至胚泡期的成功胚胎基因组激活(EGA)。这些参数可以通过自动图像分析可靠地监视,从而确认成功的开发遵循一系列精心策划和可预测的事件。此外,我们表明成像表型反映了胚胎和单个卵裂球的分子程序。单细胞基因表达分析表明,卵裂球是自主发育的细胞,有些细胞进入EGA,而另一些则停滞。这些研究表明,人类胚胎发育的成败很大程度上取决于EGA。我们的方法和算法可能为早期诊断辅助生殖中的胚胎潜能提供一种方法。

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