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Publication : Ex utero mouse embryogenesis from pre-gastrulation to late organogenesis.

First Author  Aguilera-Castrejon A Year  2021
Journal  Nature Volume  593
Issue  7857 Pages  119-124
PubMed ID  33731940 Mgi Jnum  J:334852
Mgi Id  MGI:7287643 Doi  10.1038/s41586-021-03416-3
Citation  Aguilera-Castrejon A, et al. (2021) Ex utero mouse embryogenesis from pre-gastrulation to late organogenesis. Nature 593(7857):119-124
abstractText  The mammalian body plan is established shortly after the embryo implants into the maternal uterus, and our understanding of post-implantation developmental processes remains limited. Although pre- and peri-implantation mouse embryos are routinely cultured in vitro(1,2), approaches for the robust culture of post-implantation embryos from egg cylinder stages until advanced organogenesis remain to be established. Here we present highly effective platforms for the ex utero culture of post-implantation mouse embryos, which enable the appropriate development of embryos from before gastrulation (embryonic day (E) 5.5) until the hindlimb formation stage (E11). Late gastrulating embryos (E7.5) are grown in three-dimensional rotating bottles, whereas extended culture from pre-gastrulation stages (E5.5 or E6.5) requires a combination of static and rotating bottle culture platforms. Histological, molecular and single-cell RNA sequencing analyses confirm that the ex utero cultured embryos recapitulate in utero development precisely. This culture system is amenable to the introduction of a variety of embryonic perturbations and micro-manipulations, the results of which can be followed ex utero for up to six days. The establishment of a system for robustly growing normal mouse embryos ex utero from pre-gastrulation to advanced organogenesis represents a valuable tool for investigating embryogenesis, as it eliminates the uterine barrier and allows researchers to mechanistically interrogate post-implantation morphogenesis and artificial embryogenesis in mammals.
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