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Publication : 3D biomimetic platform reveals the first interactions of the embryo and the maternal blood vessels.

First Author  Govindasamy N Year  2021
Journal  Dev Cell Volume  56
Issue  23 Pages  3276-3287.e8
PubMed ID  34741805 Mgi Jnum  J:316177
Mgi Id  MGI:6832777 Doi  10.1016/j.devcel.2021.10.014
Citation  Govindasamy N, et al. (2021) 3D biomimetic platform reveals the first interactions of the embryo and the maternal blood vessels. Dev Cell 56(23):3276-3287.e8
abstractText  The process of implantation and the cellular interactions at the embryo-maternal interface are intrinsically difficult to analyze, as the implanting embryo is concealed by the uterine tissues. Therefore, the mechanisms mediating the interconnection of the embryo and the mother are poorly understood. Here, we established a 3D biomimetic culture environment that harbors the key features of the murine implantation niche. This culture system enabled direct analysis of trophoblast invasion and revealed the first embryonic interactions with the maternal vasculature. We found that implantation is mediated by the collective migration of penetrating strands of trophoblast giant cells, which acquire the expression of vascular receptors, ligands, and adhesion molecules, assembling a network for communication with the maternal blood vessels. In particular, Pdgf signaling cues promote the establishment of the heterologous contacts. Together, the biomimetic platform and our findings thereof elucidate the hidden dynamics of the early interactions at the implantation site.
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