Ermakova Olga, Orsini Tiziana, Gambadoro Alessia, Chiani Francesco, Tocchini-Valentini Glauco P
Institute of Cell Biology and Neurobiology (IBCN), via Ramarini, 32, 00015, Monterotondo, Rome, Italy.
European Mouse Mutant Archive (EMMA), Monterotondo Mouse Clinic, via Ramarini, 32, 00015, Monterotondo, Rome, Italy.
Mamm Genome. 2018 Apr;29(3-4):245-259. doi: 10.1007/s00335-017-9723-6. Epub 2017 Nov 23.
In this work, we applied three-dimensional microCT imaging to study murine embryogenesis in the range from immediate post-implantation period (embryonic day 5.5) to mid-gestation (embryonic day 12.5) with the resolution up to 1.4 µm/voxel. Also, we introduce an imaging procedure for non-invasive volumetric estimation of an entire litter of embryos within the maternal uterine structures. This method allows for an accurate, detailed and systematic morphometric analysis of both embryonic and extra-embryonic components during embryogenesis. Three-dimensional imaging of unperturbed embryos was performed to visualize the egg cylinder, primitive streak, gastrulation and early organogenesis stages of murine development in the C57Bl6/N mouse reference strain. Further, we applied our microCT imaging protocol to determine the earliest point when embryonic development is arrested in a mouse line with knockout for tRNA splicing endonuclease subunit Tsen54 gene. Our analysis determined that the embryonic development in Tsen54 null embryos does not proceed beyond implantation. We demonstrated that application of microCT imaging to entire litter of non-perturbed embryos greatly facilitate studies to unravel gene function during early embryogenesis and to determine the precise point at which embryonic development is arrested in mutant animals. The described method is inexpensive, does not require lengthy embryos dissection and can be applicable for detailed analysis of mutant mice at laboratory scale as well as for high-throughput projects.
在本研究中,我们应用三维显微CT成像技术,以高达1.4微米/体素的分辨率,研究了从植入后即刻(胚胎第5.5天)到妊娠中期(胚胎第12.5天)的小鼠胚胎发育过程。此外,我们还介绍了一种成像程序,用于对母体子宫结构内的整窝胚胎进行非侵入性体积估计。该方法能够对胚胎发育过程中的胚胎和胚外成分进行准确、详细且系统的形态计量分析。对未受干扰的胚胎进行三维成像,以可视化C57Bl6/N小鼠参考品系中小鼠发育的卵圆柱、原条、原肠胚形成和早期器官发生阶段。此外,我们应用显微CT成像方案,确定了tRNA剪接内切酶亚基Tsen54基因敲除小鼠品系中胚胎发育停止的最早时间点。我们的分析确定,Tsen54基因缺失胚胎的胚胎发育在植入后就不再继续。我们证明,将显微CT成像应用于整窝未受干扰的胚胎,极大地促进了在早期胚胎发育过程中揭示基因功能以及确定突变动物胚胎发育停止的精确时间点的研究。所描述的方法成本低廉,无需长时间的胚胎解剖,可适用于实验室规模的突变小鼠详细分析以及高通量项目。